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  • Wiley-Blackwell  (18,723)
  • PANGAEA
  • American Association for the Advancement of Science (AAAS)
  • American Chemical Society (ACS)
  • 1950-1954  (9,911)
  • 1935-1939  (8,865)
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Year
  • 1
    Publication Date: 2023-07-09
    Keywords: Achnanthes brevipes var. intermedia; Achnanthes clevei; Achnanthes delicatula; Achnanthes exigua; Achnanthes exilis; Achnanthes flexella; Achnanthes hauckiana; Achnanthes hungarica; Achnanthes lanceolata; Achnanthes lanceolata var. elliptica; Achnanthes longipes; Achnanthes microcephala; Actinocyclus ehrenbergi; Amphora commutata; Amphora holsatica; Amphora normani; Amphora ovalis; Amphora ovalis var. pediculus; Amphora perpusilla; Amphora robusta; Anomoeoneis sphaerophora; Asterionella formosa; Biddulphia levis; Biddulphia subaequa; Caloneis amphisbaena; Caloneis bacillum; Caloneis ladogensis; Caloneis obtusa; Caloneis permagna; Caloneis schumanniana; Caloneis schumanniana var. biconstricta; Caloneis silicula; Caloneis zachariasi; Campylodiscus bicostatus; Campylodiscus clypeus; Campylodiscus echeneis; Campylodiscus noricus var. hibernica; Chaetoceros spores; Cocconeis clandestina; Cocconeis diminuta; Cocconeis disculus; Cocconeis pediculus; Cocconeis placentula; Cocconeis scutellum; Coscinodiscus asteromphalus; Coscinodiscus commutatus; Coscinodiscus denarius; Coscinodiscus excentricus; Coscinodiscus kuetzingii; Coscinodiscus lacustris; Coscinodiscus radiatus; Coscinodiscus rothi var. subsala; Cyclotella antiqua; Cyclotella comta; Cyclotella kuetzingiana; Cyclotella meneghiniana; Cyclotella ocellata; Cyclotella striata var. ambigua; Cymatopleura elliptica; Cymatopleura solea; Cymbella affinis; Cymbella aspera; Cymbella cistula; Cymbella cuspidata; Cymbella cymbiformis; Cymbella ehrenbergi; Cymbella helvetica; Cymbella lanceolata; Cymbella leptoceros; Cymbella naviculiformis; Cymbella parva; Cymbella prostrata; Cymbella tumida; Cymbella ventricosa; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Diatoma vulgaris; Didymosphenia geminata; Diploneis didyma; Diploneis domblittensis; Diploneis domblittensis var. subconstricta; Diploneis elliptica; Diploneis fusca; Diploneis interrupta; Diploneis oculata; Diploneis ovalis; Diploneis smithii; Epithemia argus; Epithemia hyndmanni; Epithemia intermedia; Epithemia muelleri; Epithemia sorex; Epithemia sorex var. gracilis; Epithemia turgida; Epithemia zebra; Epithemia zebra var. porcellus; Epithemia zebra var. saxonica; Eunotia gracilis; Eunotia lunaris; Eunotia pectinalis; Eunotia praerupta; Event label; FH_III-8; FH_IX-14; FH_VI-10; FH_VII-15; FH_VII-35; FH_VII-9; FH_VIII-11; FH_X-18; FH_X-8; FH_XI-6; FH_XII-12; FH_XII-9; FH_XIII-5; FH_XIV-5; FH_XVI-14; FH_XVII-18; FH_XVII-a1; Fragilaria brevistriata; Fragilaria capucina var. mesolepta; Fragilaria construens; Fragilaria inflata; Fragilaria leptostauron; Fragilaria pinnata; Frustulia rhomboides; Geological sample; GEOS; Gomphocymbella ancyli; Gomphonema acuminatum; Gomphonema angustatum; Gomphonema augur; Gomphonema constrictum; Gomphonema intricatum; Gomphonema longiceps; Gomphonema longiceps var. montana; Gomphonema olivaceum; Grammatophora oceanica; Gyrosigma acuminatum; Gyrosigma attenuatum; Hantzschia amphioxys; Hyalodiscus scoticus; Mastogloia elliptica; Mastogloia elliptica var. dansei; Mastogloia grevillei; Mastogloia smithi; Mastogloia smithi var. amphicephala; Mastogloia smithi var. lacustris; Melosira ambigua; Melosira arenaria; Melosira binderiana; Melosira distans; Melosira granulata; Melosira islandica; Melosira italica; Melosira varians; Meridion circulare; Navicula abrupta; Navicula americana; Navicula amphibola; Navicula anglica; Navicula bacilliformis; Navicula bacillum; Navicula binodis; Navicula cari; Navicula cincta; Navicula costulata; Navicula crucicula; Navicula cryptocephala; Navicula cuspidata; Navicula cuspidata var. ambigua; Navicula dicephala; Navicula digito-radiata; Navicula exigua; Navicula gastrum; Navicula gracilis; Navicula gracilloides; Navicula humerosa; Navicula hungarica; Navicula hungarica var. capitata; Navicula integra; Navicula jentzschi; Navicula lacustris; Navicula lanceolata; Navicula latissima; Navicula menisculus; Navicula oblonga; Navicula peregrina; Navicula perpusilla; Navicula placentula; Navicula platystoma; Navicula protracta; Navicula pupula; Navicula pusilla; Navicula pygmaea; Navicula radiosa; Navicula reinhardtii; Navicula rhynchocephala; Navicula scutelloides; Navicula tuscula; Navicula tuscula var. minor; Navicula viridula; Navicula vulpina; Neidium affine; Neidium affine var. amphirhynchus; Neidium bisulcatum; Neidium hitchcockii; Neidium iridis; Neidium kozlowi; Neidium productum; Nitzschia amphibia; Nitzschia angustata; Nitzschia capitellata; Nitzschia circumsuta; Nitzschia dissipata; Nitzschia gracilis; Nitzschia interrupta; Nitzschia punctata; Nitzschia scalaris; Nitzschia sigmoidea; Nitzschia sinuata var. tabellaria; Nitzschia tryblionella; Number; Opephora martyi; Pinnularia cardinalis; Pinnularia divergens; Pinnularia episcopalis; Pinnularia esox; Pinnularia gibba; Pinnularia globiceps; Pinnularia interrupta; Pinnularia leptosoma; Pinnularia macilenta; Pinnularia major; Pinnularia mesolepta; Pinnularia microstauron; Pinnularia microstauron var. ambigua; Pinnularia microstauron var. brebissoni; Pinnularia nobilis; Pinnularia streptoraphe; Pinnularia viridis; Rhabdonema arcuatum; Rhizosolenia calcar-avis; Rhoicosphenia curvata; Rhopalodia gibba; Rhopalodia gibba var. ventricosa; Rhopalodia gibberula; Rhopalodia musculus; Sample code/label; Stauroneis acuta; Stauroneis anceps; Stauroneis phoenicenteron; Stauroneis smithi; Stephanodiscus astraea; Surirella bifida; Surirella biseriata; Surirella biseriata var. bifrons; Surirella biseriata var. bifrons forma punctata; Surirella biseriata var. rostrata; Surirella caproni; Surirella elegans; Surirella linearis; Surirella linearis var. constricta; Surirella linearis var. helvetica; Surirella ovata; Surirella robusta; Surirella robusta var. splendida; Surirella striatula; Surirella tenera; Surirella tenera var. nervosa; Synedra capitata; Synedra pulchella; Synedra tabulata var. fasciculata; Synedra ulna; Synedra vaucheriae; Tabellaria fenestrata; Tabellaria flocculosa; Terpsinoe americana; Thalassiosira baltica; Vistula Lagoon, Baltic Sea
    Type: Dataset
    Format: text/tab-separated-values, 17584 data points
    Location Call Number Expected Availability
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  • 2
    Publication Date: 2023-07-09
    Keywords: Achnanthes clevei; Achnanthes dispar; Achnanthes exigua; Achnanthes hauckiana; Achnanthes hungarica; Achnanthes lanceolata; Achnanthes lanceolata var. elliptica; Achnanthes microcephala; Actinocyclus ehrenbergi; Amphora holsatica; Amphora normani; Amphora ovalis; Amphora ovalis var. pediculus; Amphora robusta; Anomoeoneis sphaerophora; Biddulphia levis; Biddulphia subaequa; Caloneis amphisbaena; Caloneis bacillum; Caloneis ladogensis; Caloneis obtusa; Caloneis permagna; Caloneis schumanniana; Caloneis schumanniana var. biconstricta; Caloneis silicula; Caloneis zachariasi; Campylodiscus bicostatus; Campylodiscus clypeus; Campylodiscus echeneis; Campylodiscus noricus var. hibernica; Chaetoceros sp.; Cocconeis diminuta; Cocconeis disculus; Cocconeis pediculus; Cocconeis placentula; Coscinodiscus asteromphalus; Coscinodiscus commutatus; Coscinodiscus excentricus; Coscinodiscus lacustris; Coscinodiscus radiatus; Coscinodiscus rothii var. subsalsa; Cyclotella antiqua; Cyclotella comta; Cyclotella kuetzingiana; Cyclotella meneghiniana; Cyclotella striata var. ambigua; Cymatopleura elliptica; Cymatopleura solea; Cymbella affinis; Cymbella aspera; Cymbella cistula; Cymbella cuspidata; Cymbella cymbiformis; Cymbella ehrenbergi; Cymbella lanceolata; Cymbella leptoceros; Cymbella naviculiformis; Cymbella prostrata; Cymbella tumida; Cymbella ventricosa; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Diatoma elongatum; Diatoma vulgaris; Didymosphenia geminata; Diploneis didyma; Diploneis domblittensis; Diploneis domblittensis var. subconstricta; Diploneis elliptica; Diploneis interrupta; Diploneis marginestriata; Diploneis oculata; Diploneis ovalis; Diploneis puella; Diploneis smithii; Epithemia argus; Epithemia hyndmanni; Epithemia intermedia; Epithemia muelleri; Epithemia sorex; Epithemia sorex var. gracilis; Epithemia turgida; Epithemia zebra; Epithemia zebra var. porcellus; Epithemia zebra var. saxonica; Eucocconeis flexella; Eunotia gracilis; Eunotia pectinalis; Eunotia praerupta; Event label; Fragilaria brevistriata; Fragilaria construens; Fragilaria inflata; Fragilaria intermedia; Fragilaria lapponica; Fragilaria leptostauron; Fragilaria pinnata; Fragilaria virescens; Frustulia rhomboides; Frustulia vulgaris; Geological sample; GEOS; Gomphocymbella ancyli; Gomphonema acuminatum; Gomphonema angustatum; Gomphonema constrictum; Gomphonema intricatum; Gomphonema olivaceum; Gomphonema parvulum; Grammatophora oceanica; Gyrosigma acuminatum; Gyrosigma attenuatum; Hantzschia amphioxys; KH_II-1; KH_II-2; KH_III-12; KH_III-3; KH_III-5; KH_III-8; KH_Memeler-Tief; KH_V-5; KH_VI-3; KH_VII-10; KH_VII-18N; KH_VII-19N; KH_VII-2; KH_X-7a; KH_XIII-13; KH_XIII-19; Mastogloia elliptica; Mastogloia elliptica var. dansei; Mastogloia grevillei; Mastogloia smithi; Mastogloia smithi var. amphicephala; Mastogloia smithi var. lacustris; Melosira ambigua; Melosira arenaria; Melosira binderiana; Melosira distans; Melosira granulata; Melosira italica; Melosira varians; Meridion circulare; Navicula amphibola; Navicula anglica; Navicula bacillum; Navicula binodis; Navicula cari; Navicula costulata; Navicula crucicula; Navicula cryptocephala; Navicula cuspidata; Navicula cuspidata var. ambigua; Navicula dicephala; Navicula exigua; Navicula forcipata; Navicula gastrum; Navicula gracilis; Navicula gracilloides; Navicula humerosa; Navicula hungarica; Navicula hungarica var. capitata; Navicula integra; Navicula jentzschi; Navicula lacustris; Navicula lanceolata; Navicula laterostrata; Navicula latissima; Navicula menisculus; Navicula oblonga; Navicula optima; Navicula peregrina; Navicula placentula; Navicula platystoma; Navicula protracta; Navicula pseudotuscula; Navicula pupula; Navicula pusilla; Navicula pygmaea; Navicula radiosa; Navicula reinhardtii; Navicula rhynchocephala; Navicula schoenfeldii; Navicula scutelloides; Navicula tuscula; Navicula viridula; Navicula vulpina; Neidium affine; Neidium affine var. amphirhynchus; Neidium bisulcatum; Neidium dubium; Neidium dubium var. constricta; Neidium iridis; Neidium kozlowi; Neidium productum; Nitzschia amphibia; Nitzschia angustata; Nitzschia capitellata; Nitzschia circumsuta; Nitzschia denticula var. ancyli; Nitzschia gracilis; Nitzschia scalaris; Nitzschia sigma; Nitzschia sigmoidea; Nitzschia sinuata var. tabellaria; Nitzschia tryblionella; Number; Opephora martyi; Pinnularia cardinalis; Pinnularia divergens; Pinnularia episcopalis; Pinnularia esox; Pinnularia gentilis; Pinnularia gibba; Pinnularia interrupta; Pinnularia major; Pinnularia mesolepta; Pinnularia microstauron; Pinnularia microstauron var. ambigua; Pinnularia microstauron var. brebissoni; Pinnularia nobilis; Pinnularia streptoraphe; Pinnularia subcapitata; Pinnularia viridis; Rhabdonema arcuatum; Rhoicosphenia curvata; Rhopalodia gibba; Sample code/label; Stauroneis acuta; Stauroneis anceps; Stauroneis phoenicenteron; Stauroneis smithi; Stephanodiscus astraea; Surirella bifida; Surirella biseriata; Surirella biseriata var. bifrons; Surirella biseriata var. bifrons forma punctata; Surirella biseriata var. rostrata; Surirella caproni; Surirella elegans; Surirella linearis; Surirella linearis var. constricta; Surirella linearis var. helvetica; Surirella ovata; Surirella robusta; Surirella robusta var. splendida; Surirella striatula; Surirella tenera; Surirella tenera var. nervosa; Synedra capitata; Synedra pulchella; Synedra tabulata; Synedra ulna; Synedra vaucheriae; Tabellaria fenestrata; Tabellaria flocculosa; Terpsinoe americana; Thalassiosira baltica; Vavicula cincta; Vistula Lagoon, Baltic Sea
    Type: Dataset
    Format: text/tab-separated-values, 2555 data points
    Location Call Number Expected Availability
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  • 3
    Publication Date: 2023-07-09
    Keywords: Achnanthes brevipes var. intermedia; Achnanthes clevei; Achnanthes delicatula; Achnanthes hungarica; Achnanthes lanceolata; Achnanthes longipes; Actinocyclus ehrenbergi; Amphora ovalis; Amphora ovalis var. pediculus; Anomoeoneis sphaerophora; Biddulphia aurita; Biddulphia levis; Caloneis amphisbaena var. subsalina; Caloneis bacillum; Caloneis silicula; Campylodiscus bicostatus; Campylodiscus clypeus; Campylodiscus echeneis; Campylodiscus noricus var. hibern; Chaetoceros sp.; Cocconeis diminuta; Cocconeis disculus; Cocconeis pediculus; Cocconeis placentula; Cocconeis scutellum; Coscinodiscus asteromphalus; Coscinodiscus commutatus; Coscinodiscus excentricus; Coscinodiscus lacustris; Coscinodiscus oculus-iridis; Coscinodiscus radiatus; Cyclotella comta; Cyclotella meneghiniana; Cyclotella striata var. ambigua; Cymatopleura elliptica; Cymatopleura solea; Cymbella aspera; Cymbella cistula; Cymbella cuspidata; Cymbella cymbiformis; Cymbella ehrenbergi; Cymbella lanceolata; Cymbella prostrata; Cymbella tumida; Cymbella ventricosa; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Diatoma elongatum; Diatoma vulgaris; Diploneis didyma; Diploneis domblittensis; Diploneis elliptica; Diploneis fusca; Diploneis interrupta; Diploneis ovalis; Diploneis smithii var. rhombica; Epithemia argus; Epithemia intermedia; Epithemia sorex; Epithemia turgida; Epithemia zebra; Eucocconeis flexella; Eunotia lunaris; Eunotia pectinalis; Eunotia praerupta; Event label; FN_III; FN_IV-0; FN_IX; FN_IX-a1; FN_V; FN_V-100; FN_V-300; FN_VIII-2a; FN_X-20; FN_XII-300; FN_XIII-14a; FN_XIV-18; FN_XVI-22; Fragilaria capucina; Fragilaria construens; Fragilaria inflata; Fragilaria intermedia; Fragilaria leptostauron; Fragilaria pinnata; Fragilaria schulzi; Fragilaria virescens; Frustulia vulgaris; Geological sample; GEOS; Gomphonema acuminatum; Gomphonema angustatum; Gomphonema constrictum; Grammatophora oceanica; Gyrosigma acuminatum; Gyrosigma attenuatum; Hantzschia amphioxys; Hyalodiscus scoticus; Melosira ambigua; Melosira arenaria; Melosira granulata; Melosira italica; Melosira juergensi; Melosira moniliformis; Melosira varians; Meridion circulare; Navicula bacillum; Navicula cincta; Navicula costulata; Navicula cryptocephala; Navicula cuspidata; Navicula dicephala; Navicula elegans; Navicula gastrum; Navicula humerosa; Navicula hungarica; Navicula laterostrata; Navicula latissima; Navicula menisculus; Navicula oblonga; Navicula peregrina; Navicula platystoma; Navicula pseudotuscula; Navicula pupula; Navicula pusilla; Navicula pygmaea; Navicula radiosa; Navicula reinhardtii; Navicula rhynchocephala; Navicula schoenfeldii; Navicula scutelloides; Navicula tuscula; Navicula viridula; Neidium affine; Neidium bisulcatum; Neidium iridis; Nitzschia amphibia; Nitzschia angustata; Nitzschia apiculata; Nitzschia circumsuta; Nitzschia denticula var. ancyli; Nitzschia hungarica; Nitzschia scalaris; Nitzschia sigma; Nitzschia spectabilis; Nitzschia tryblionella; Opephora martyi; Pinnularia cardinalis; Pinnularia gentilis; Pinnularia interrupta; Pinnularia maior; Pinnularia nobilis; Pinnularia subcapitata; Pinnularia viridis; Rhabdonema arcuatum; Rhabdonema minutum; Rhizosolenia calcar-avis; Rhoicosphenia curvata; Rhopalodia gibba; Rhopalodia gibba var. ventricosa; Rhopalodia gibberula; Sample code/label; Stauroneis acuta; Stauroneis anceps; Stauroneis phoenicenteron; Stephanodiscus astraea; Surirella biseriata; Surirella caproni; Surirella elegans; Surirella linearis; Surirella ovata; Surirella robusta var. splendida; Surirella striatula; Surirella tenera; Surirella tenera var. nervosa; Synedra capitata; Synedra pulchella; Synedra tabulata; Synedra ulna; Synedra vaucheriae; Tabellaria fenestrata; Tabellaria flocculosa; Terpsinoe americana; Thalassiosira baltica; Vistula Lagoon, Baltic Sea
    Type: Dataset
    Format: text/tab-separated-values, 1541 data points
    Location Call Number Expected Availability
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  • 4
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    PANGAEA
    In:  Supplement to: Lamont-Doherty Earth Observatory (1954): Expedition VEMA 3. Lamont Geological Observatory, Columbia University, New York, unpublished, 11 pp, https://www.ngdc.noaa.gov/mgg/geology/data/vema/vm03/vm03_summary.pdf
    Publication Date: 2023-08-28
    Description: The cores and dredges described in this report were taken during the VEMA 3 Expedition from January 1957 until June 1954 by the Lamont Geological Observatory, Columbia University from the R/V Vema. A total of 160 cores were recovered and are available at Lamont-Doherty Earth Observatory for sampling and study.
    Keywords: Comment; Date/Time of event; Deposit type; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Description; Elevation of event; Event label; Latitude of event; Longitude of event; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; PC; Piston corer; Position; Quantity of deposit; Sample ID; Sediment type; Size; Substrate type; V03; V03-137; V03-140; V03-157; V03-21; V03-27; V03-29; V03-3; Vema
    Type: Dataset
    Format: text/tab-separated-values, 83 data points
    Location Call Number Expected Availability
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  • 5
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    PANGAEA
    In:  Supplement to: Lamont-Doherty Earth Observatory (1954): Expedition VEMA 4. Lamont Geological Observatory, Columbia University, New York, unpublished, 8 pp, https://www.ngdc.noaa.gov/mgg/geology/data/vema/vm04/vm04_summary.pdf
    Publication Date: 2023-08-28
    Description: The cores and dredges described in this report were taken during the VEMA 4 Expedition from July until September 1954 by the Lamont Geological Observatory, Columbia University from the R/V Vema. A total of 54 cores were recovered and are available at Lamont-Doherty Earth Observatory for sampling and study.
    Keywords: Comment; Date/Time of event; Deposit type; DEPTH, sediment/rock; Description; Elevation of event; Event label; Latitude of event; Longitude of event; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; PC; Piston corer; Position; Quantity of deposit; Sample ID; Sediment type; Size; Substrate type; V04; V04-20; V04-35; V04-51; V04-53; Vema
    Type: Dataset
    Format: text/tab-separated-values, 45 data points
    Location Call Number Expected Availability
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  • 6
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    PANGAEA
    In:  Supplement to: Lamont-Doherty Earth Observatory (1954): Expedition VEMA 5. Lamont Geological Observatory, Columbia University, New York, unpublished, 7 pp, https://www.ngdc.noaa.gov/mgg/curator/data/vema/vm05/vm05_summary.pdf
    Publication Date: 2023-08-28
    Description: The cores and dredges described in this report were taken during the VEMA 5 Expedition from November until December 1954 by the Lamont Geological Observatory, Columbia University from the R/V Vema. A total of 48 cores were recovered and are available at Lamont-Doherty Earth Observatory for sampling and study.
    Keywords: Atlantic Ocean; Comment; Date/Time of event; Deposit type; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Description; Elevation of event; Event label; Latitude of event; Longitude of event; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; PC; Piston corer; Position; Quantity of deposit; Sample ID; Sediment type; Size; Substrate type; TC; Trigger corer; V05; V05-11; V05-24; V05-27; V05-40; V05-42; V05-7; V05-7TW; Vema
    Type: Dataset
    Format: text/tab-separated-values, 83 data points
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  • 7
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    PANGAEA
    In:  Supplement to: Goldberg, Edward D (1954): Marine Geochemistry 1. Chemical Scavengers of the Sea. The Journal of Geology, 62(3), 249-265, http://www.jstor.org/stable/30080120
    Publication Date: 2023-08-28
    Description: The ability of the hydrated oxides of manganese and iron to adsorb ions from solution (scavenging) is considered in relation to some problems in marine geology, chemistry, and biology. In the ferruginous sediments of the Pacific Ocean, iron oxides are accompanied by titanium, cobalt, and zirconium in amounts proportional to the iron content. Similarly, copper and nickel are linearly related to the manganese content. These observations are explained on the basis of scavenging. An electrochemical theory for the formation of manganese nodules is presented. Marine sediments are classified on the basis of the geosphere in which the solid phases originate. The distribution of certain ionic species in sea water between the solid and aqueous phases is considered on the basis of scavenging and co-ordination compound theory. The concentration of minor elements by members of the marine biosphere is explained either by the direct uptake of the element or by the uptake of iron or manganese oxides with the accompanying scavenged element.
    Keywords: Aluminium; CHA-160; Challenger1872; Cobalt; Copper; Deposit type; DEPTH, sediment/rock; Dredge; Dredge, rock; DRG; DRG_R; Event label; GC; GOLDHW1; Grab; GRAB; Gravity corer; H.M.S. Challenger (1872); Henderson Seamount, Pacific Ocean; Horizon; Identification; Iron; Manganese; MDPC02HO-MP-026A-3; MDPC02HO-MP-037A; MDPC03HO-043K; MIDPAC; MPC-26A-3; MPC-37A; MPC-43J; MPC-43K; NEL-HEND; Nickel; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Northern_Holiday; North Pacific Ocean; North-West Pacific Ocean; NTHL02HO-010PH; NTHL-10; NTHL-D1; NTHL-D7; Pacific Ocean; PAS-19121; Phosphorus; Spectrophotometer, Beckmann DU; Titanium; Wired profile sonde; WP; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 118 data points
    Location Call Number Expected Availability
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  • 8
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    PANGAEA
    In:  Supplement to: Young, Edward J (1954): Studies of trace elements in sediments. Massachusetts Intitute of Technology, Boston, Massachusetts, U.S.A., Dissertation, 137 pp, hdl:1721.1/58047
    Publication Date: 2023-08-28
    Description: By means of spectrographic analysis 96 samples of marine sediments were analyzed quantitatively for V, Ti, Zr, Co, Ni, Sc, Cr, and La, and semi-quantitatively for Ba and Sr. Ca has been estimated by visual comparison of spectrographic plates, and several Fe values have also been determined in the same way. Geographically 40 of these samples are from the Pacific Ocean basin, one of which is a manganese nodule, 21 from the Gulf of Mexico, 11 from Atchafalaya Bay, 8 from American Devonian to Miocene sedimentary rocks, 4 from the Mississippi Delta, 3 from the San Diego trough, 3 from off Grand Isle, 3 from Lake Pontchartrain, from Bay Rambour, 1 from Laguna Madre off the Texas coast, and 1 from the Guadalupe River, Texas. The afore-mentioned elements were sought using PdCl2 as an internal standard, after the method developed by Ahrens (1950) and his co-workers. Samples were run in duplicate, and standard deviations varied from 5 to 14 percent. Working curves, from which final values were obtained, were constructed with the use of standard granite, G1, and the standard diabase, W1, as standards. See Fairbairn and others (1951). An experiment was carried out to determine the effect of matrix change, involving CaCO3, on the spectral line intensities of the quantitatively analyzed elements. The distribution of each of the elements is discussed separately, and particular emphasis is given to oceanic "red clay", in which many elements are enriched. A general discussion is given to mineralogy of the sediments, cation exchange in its bearing on this thesis, and a brief recount of the two hypotheses of origin of oceanic "red clay". An application of the findings of this thesis to aid in the choice of the more likely hypothesis is made.
    Keywords: Barium oxide; Calcium oxide; Chromium(III) oxide; Cobalt(III) oxide; Deposit type; DEPTH, sediment/rock; Description; Dredge, rock; DRG_R; Horizon; Iron oxide, Fe2O3; Lanthanum oxide; MDPC02HO-MP-026A-3; MIDPAC; MPC-26A-3; Nickel oxide; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Pacific Ocean; Sample ID; Scandium oxide; Size; Spectrographic analysis; Strontium oxide; Titanium dioxide; Vanadium oxide; X-ray fluorescence (XRF)
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    PANGAEA
    In:  Scripps Institution of Oceanography, UC San Diego
    Publication Date: 2023-09-25
    Keywords: Core; CORE; CUSP15P; CUSP1954; CUSP8P; Deposit type; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Description; Event label; Feature; Identification; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Pacific Ocean; Position; Quantity of deposit; Sediment type; Size; Spencer F. Baird; Visual description
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    Journal of Morphology 94 (1954) 
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    Journal of Morphology 94 (1954), S. 409-437 
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    Journal of Morphology 94 (1954), S. 283-351 
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    Journal of Morphology 95 (1954), S. 237-261 
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    Journal of Morphology 95 (1954), S. 263-287 
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    Journal of Morphology 95 (1954), S. 415-450 
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    Journal of Morphology 95 (1954), S. 523-555 
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    Journal of Morphology 94 (1954), S. 587-615 
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    Journal of Morphology 94 (1954), S. 1-19 
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    Journal of Morphology 94 (1954), S. 199-219 
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    Journal of Morphology 94 (1954), S. 71-123 
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    Journal of Morphology 94 (1954), S. 353-365 
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    Journal of Morphology 95 (1954), S. 189-211 
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    Journal of Morphology 95 (1954), S. 289-349 
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    Journal of Morphology 95 (1954), S. 471-499 
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    Journal of Morphology 95 (1954), S. 557-619 
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    Zeitschrift für anorganische Chemie 275 (1954) 
    ISSN: 0044-2313
    Keywords: Chemistry ; Inorganic Chemistry
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    Zeitschrift für anorganische Chemie 275 (1954), S. 289-296 
    ISSN: 0044-2313
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Vorversuche mit den reinen Pentoxyden Nb2O5 und Ta2O5 lieferten die bereit von BRAUER gefundenen Modifikationen T—Nb2O5, M—Nb2O5, H—Nb2O5 und T—Ta2O5 Außerdem ergab sich, daß Ta2O5 aus dem Schmelzfluß in einer weiteren  -  vermutlich in der von LAGERGREN und MAGNÉLI schon beobachteten  -  Modifikation kristallisiert.Die Pentoxyde Nb2O5 und Ta2O5 sind im festen Zustand miteinander mischbar. Die tantalreiche Mischphase besitzt das T-Gitter; die niobreiche Mischphase liegt in der MH-Form vor. Die Grenzzusammensetzung, bei der die T—MH-Umwandlung eintritt wurde für 900, 1050 und 1200°C bei 84, 67 und 61 Mol-% Nb2O5 gefunden. Ein heterogenes Gebiet, in dem beide Phasen nebeneinander vorliegen, kann nur klein sein. Die T—MH-Umwandlung ist bei entsprechender Variation der Zusammensetzung der Pentoxydphase reversibel durchführbar. Die Existenz einer instabilen, tantalreichen MH-Phase wurde nachgewiesen. Zwischen den Phasen T—Nb2O5, T—Ta2O5, MH—Nb2O und MH—Ta2O5 besteht Isodimorphie.
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    Zeitschrift für anorganische Chemie 275 (1954), S. 301-319 
    ISSN: 0044-2313
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Nach umfangreichen Untersuchungen über die Reproduzierbarkeit von Metallpotentialen gegenüber fremdionigen(2) Lösungen und die zu deren Erzielung erforderlichen Voraussetzungen wurden die Potentiale von Pt, Ag, Au, Hg, Cu und Graphit gegenüber wäßrigen Lösungen von HClO4 bzw. NaOH verschiedener Konzentrationen gemessen. Die Ergebnisse werden durch eine Potentialtheorie gedeutet, die als Primärvorgang die Adsorption von Lösungsmittelmolekeln an der Elektrodenoberfläche zugrunde legt, die dann weitere potentialbildende Sekundärvorgänge auslösen kann. Bei Vorliegen mehrerer potentialbildender Systeme entscheidet die Potentialstabilität über die Potentialbestimmung.
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    Zeitschrift für anorganische Chemie 275 (1954) 
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    Keywords: Chemistry ; Inorganic Chemistry
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    Zeitschrift für anorganische Chemie 275 (1954), S. 327-330 
    ISSN: 0044-2313
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Hydroxylamin wird durch Kaliumnitrosodisulfonat unter Bildung von Distickstoffmonoxyd, Kaliumhydroxylamindisulfonat und Wasser glatt dehydriert.Kaliumhydroxylamindisulfonat läßt sich bromatometrisch bequem und genau bestimmen.
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    Zeitschrift für anorganische Chemie 275 (1954), S. 1-20 
    ISSN: 0044-2313
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Durch thermische Spaltung von Germaniumtetrachlorid im Abschreckrohr gelang es, ein Germaniummonochlorid der Formel (GeCl)x darzustellen. Sein Existenzbereich wurde ermittelt. Thermische Zersetzung dieses Monochlorids führt je nach Art der Reaktionsbedingungen neben Germaniumtetrachlorid zu kristallinem Germaniumdichlorid, höheren Germaniumchloriden und metallischem Germanium.  -  Es konnte ein Digermaniumhexachlorid der Formel Ge2Cl6 dargestellt werden.
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    Zeitschrift für anorganische Chemie 275 (1954), S. 297-300 
    ISSN: 0044-2313
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Es werden die vorläufigen Strukturuntersuchungsergebnisse der von uns aufgefundenen 2. Modifikation des Claudetits mitgeteilt. Der Claudetit II kristallisiert in den Raumgruppen C2(2) oder Cs(2). Die Gitterabmessungen sind: a1 = 7,99 Å; a2 = 4,57 Å; a3 = 9,11 Å; α2 = 78°19′; Z = 4 Formeleinheiten As2O3; ϱr = 4,02 g/cm3. An Hand von PATTERSON-, gemischten PATTERSON- und Fourier-Synthesen kann gezeigt werden, daß die Verknüpfung der Atome in beiden Claudetitmodifikationen ähnlich ist.
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    Zeitschrift für anorganische Chemie 275 (1954), S. 320-326 
    ISSN: 0044-2313
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Es wurden Darstellungsmethode und Eigenschaften der Selenide und Telluride des Urans untersucht. USe (a = 5,739 kX) und UTe (a = 6,151 kX) besitzen NaCl-Struktur.Die Möglichkeit von Bildung von festen Lösungen der Uranmonochalkogenide mit Uranmonoverbindungen der Elemente der V. Gruppe wurde untersucht; die Gitterkonstanten der Mischkristallreihen U(As, Se) und U(Sb, Te) wurden festgestellt.U3Te4 ist kubisch, (Th3P4-Typ a0 = 9,378 kX), UTe2 tetragonal (a = 3,998 kX, c/a = 1,865), UOSe tetragonal (PbFCl-Typ, a = 3,893 kX, c/a = 1,789). Einige Synthesen des UOSe werden beschrieben.
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    Zeitschrift für anorganische Chemie 275 (1954), S. 331-337 
    ISSN: 0044-2313
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Es wurden Versuche zur Ermittlung der Konstitution des gelben Komplexes durchgeführt, der beim Zusammengießen von sauren Titansalzlösungen mit Wasserstoffperoxyd entsteht. Die Konzentration der TiO2--Ionen betrug stets 0,0005 Mole/1, die der Säure variierte von 0,1 bis 1,0 Mole/l. Das Molverhältnis [H2O2]/[TiO2+] wurde zwischen 0,1 und 8,0 geändert. Es wurden Extinktionsmessungen in verd. H2SO4, HCl, HNO3 und HClO4 ausgeführt und gefunden, daß Anionen an dem Aufbau des Komplexes in Lösung nicht beteiligt sind. Der Komplex ist positiv geladen, sein molarer Extinktionskoeffizient ist 594 für Licht von der Wellenlänge 436 mμ, die Komplexdissoziationskonstante wurde zu 5,4 · 10-5 bestimmt.
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    Zeitschrift für anorganische Chemie 275 (1954), S. 338-348 
    ISSN: 0044-2313
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Die Umsetzung zwischen SO3 und NH3 in nichtwäßrigem und in wäßrigem Medium wurde studiert. Es zeigte sich, daß der primäre Schritt der Reaktion nicht die Bildung der Amidosulfonsäure sein kann. Primär entsteht vielmehr Sulfimid, O2SNH. Sulfimid polymerisiert sich leicht zu einem Trimeren, einem Tetrameren oder einem kettenförmig gebauten höheren Polymeren; letzteres reagiert mit SO3 und H2SO4 zu Polysulfimidsulfonsäuren. Die Hydrolyse dieser Sulfonsäuren führt zu den gleichen Produkten, die man direkt bei der Reaktion von SO3 und NH3 in wäßriger Lösung erhält.
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    Zeitschrift für anorganische Chemie 275 (1954), S. 59-64 
    ISSN: 0044-2313
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Es wurden Elektrolytchrom-Präparate hergestellt. Von den in der Achatmühle gemahlenen Präparaten wurden die Suszeptibilitäten nach Gouy bestimmt. Die achatpulverkorrigierten Suszeptibilitäten, gegen den Oxydgehalt der Präparate aufgetragen, liegen auf einer Geraden. Die Extrapolation auf den Oxydgehalt Null ergibt den Wert \documentclass{article}\pagestyle{empty}\begin{document}$$ \chi _\infty = + 2,65 \cdot 10^{ - 6}\; {\rm bzw}{\rm .}\chi _{{\rm Atom}} = + 138 \cdot 10^{ - 8} $$\end{document}.
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    Zeitschrift für anorganische Chemie 275 (1954), S. 21-31 
    ISSN: 0044-2313
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Es wurden die bei der Einwirkung von wäßrigem KF auf MoO3 und WO3 entstehenden Bodenkörper isoliert und untersucht. Im System MoO3—KF—H2O konnte die Existenz von fünf verschiedenen Verbindungen nachgewiesen werden: K3MoO3F3 (I), K2MoO3F2 · H2O (II), K3Mo4O13F · 3 H2O (III), K2MoO2F4 · H2O (IV) und K2Mo4O13 (V). Die durch Entwässern von (III) erhaltene Verbindung K3Mo4O13F ist instabil und nicht mit der im System K2Mo4O13/KF vorkommenden inkongruent schmelzenden Verbindung K3Mo4O13F identisch. (II) läßt sich entwässern; die wasserfreie Verbindung K2MoO3F2 ist instabil und zerfällt beim Schmelzen in (I) und MoO3. Im System WO3—KF—H2O konnte die Existenz nur einer Verbindung K2WO3F2 · H2O nachgewiesen werden.
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    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 64-67 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
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    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 118-118 
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    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 79-80 
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    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954) 
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    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 151-155 
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    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 139-140 
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    Description / Table of Contents: Protective Lead Coating by PaintThe number of metallic pigments capable of being used as a rust preventative is small. Ultra-finely pulverised lead has proved to be far superior to all other metals. However, the addition of a binder in all respects suitable to the pigment is an absolute necessity when lead is used. Chlorinated rubber has been proved to be of particular value in this respect. The use of “Plumbol” paint also applies a coating of lead on the surface of iron, one coat of which has the same protective value as three or four coats of oil-bound paints. Weathering tests have also substantiated the protective value of lead coating paints as compared with the usual oil-bound paints. A maximum of protection is obtained against the action of certain chemical agents (soda lye, potash lye, sulphurous acid, sulphuric acid, acetic acid and other cold dilute acids), but no protection against the effect of nitrose (a solution of nitrosyl sulphuric acid in sulphuric acid, formed in the lead-chamber process) fumes and nitric acid results. Generally speaking, a coating of „Plumbol“ paint affords the same protection as a coating of metallic lead the same thickness.
    Notes: Die Zahl der verwendungsfähigen metallischen Pigmente in Rostschutzfarben ist gering. Feinstgepulvertes Blei zeigt sich allen übrigen Metallen überlegen. Erforderlich ist bei Bleiverwendung ein dem Pigment vollkommen angepaßter Bindemittelzusatz. Chlorkautschuk hat sich hier besonders bewährt. Man erzielt durch den „Plumbol“-Pinselaufstrich gleichsam eine „Verbleiung„ des Eisens. Im Effekt ist ein einmaliger Aufstrich einer 3-4 - fachen Ölfarbauflage ebenbürtig.  -  Bewitterungsversuche zeigen vergleichsweise die wesentlich bessere Schutzwirkung der „Pinselverbleiung“ gegenüber den üblichen Ölanstrichen. Der Schutz erweist sich gegen chemische Agentien (Natronlauge, Kalilauge, schweflige Säure, Schwefelsäure, Essigsäure und andere verdünnte kalte Säure, Schwefelsäure, Essigsäure und andere verdünnte kalte Säure, Essigsäure und andere verdünnte kalte Säuren) als äußerst widerstandsfähig. Nicht jedoch gegen nitrose Gase und Salpetersäure.  -  eine „Plumbol“- Anstrich-Folie bietet im im allgemeinen den gleichen Schutz wie eine Schicht von metallischem Blei gleicher Dicke.
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    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 237-237 
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    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. I 
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    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 178-182 
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    Description / Table of Contents: Temporary Anti-corrosive MeasuresThe article opens with a survey of the various methods employed for ensuring temporary protection against rust. The following points are then discussed:  -  creation of a non-corrosive ambient atmosphere, use of special removable protective coatings (having an oil, wax or patty base). Particular attention is paid to the use of Dicyclorhexylammonium nitrite (VPI) and to modern anticorrosion compounds having a mineral oil base. Some practical examples of the application of these protective coatings for interior and exterior surfaces are included. The removal of such coatings is then discussed. The article closes with a brief discussion on tests suitable for testing temporary anti-corrosive compounds. A compendious bibliography on the subject is appended.
    Notes: Es wird eine Übersicht über die verschiedenen Methoden des temporären Rostschutzes gegeben. Behandelt werden: Schaffung einer nicht angreifenden Atmosphäre  -  Verwendung geeigneter Schutzüberzüge (abziehbar und auf der Basis von Ölen, Wachsen und Fetten). Besonders eingegangen wird auf den Schutz durch Dicyclohexylammoniumnitrit (VPI) und auf moderne Rostschutzmittel auf der Mineralölbasis. Praktische Beispiele für die Anwendung dieser Rostschutzmittel für innere und äußere Oberflächen werden angegeben. Dann wird die Entfernung der Überzüge besprochen. Zum Schluß werden verschiedene Kurzprüfungen für temporäre Rostschutzmittel diskutiert und das ziemlich umfangreiche Schrifttum angegeben.
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    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 192-194 
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    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 418-420 
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    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 422-424 
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    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 425-430 
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    Description / Table of Contents: Reactions in the Intermediate Stratum between Iron and Coating Systems and the Effect of InhibitorsCorrect surface pre-treatment of iron and steel is regarded as irremissible for good performance and maximum service life of a coating system in corrosion control. The peculiar features of surface texture are characterized by a mosaic of anodic and cathodic ranges. Industry's tendency to speed up every process to the utmost calls for quick drying paints. Their wetting properties and their water permeability determine adhesion characteristics and electrochemical attack. Therefore, the paint chosen has to correspond with the pre-treatement applied to the surface or vice versa. The addition of suitable inhibitors contributes to the efficiency and performance of the coating. Combinations of inhibitors with ionadsorbing film-forming materials create an active intermediate stratum between metal and paint, improving adhesion and preventing corrosion. The development of a special surface-technology is necessary for pursuing the aim of prolonging the life of steel structures and/ or reducing maintenance costs, even under the most severe service conditions.
    Notes: Eine fachgemäße Vorbehandlung der Oberfläche von Eisen und Stahl, die als Mosaik anodischer und kathodischer Bereiche aufgefaßt werden kann, ist für dauerhafte Rostschutzanstriche eine unerlässliche Vorbedingung. Das moderne Fertigungstempo zwingt die Industrie zur Verwendung rasch trocknender Anstriche; deren Benetzungsvermögen bedingt die Haftung und deren Wasserdurchlässigkeit die elektrochemischen Vorgänge in der Grenzschicht. Die Anstriche müssen also der Vorbehandlung des Eisens entsprechen, oder diese Vorbehandlung hat sich nach den gewählten Anstrichmitteln zu richten. Zusatz geeigneter Hemmstoffe verbessert die Rostschutzwirkung erheblich. Kombinationen von Hemmstoffen mit ionenabsorbierenden Filmbildern führen zu aktiven Zwischenschichten, die zur Erhöhung der Haftfestigkeit und zur Verhütung von Unterrostungen beitragen. Schließlich wird eine Oberflächen-Technologie postuliert, die sich die Verlängerung der Lebensdauer von Stahlkonstruktionen und/oder eine Verminderung ihrer Unterhaltskosten, auch unter schwierigsten äußeren Bedingungen, zum Ziel setzt.
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    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 244-246 
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    Description / Table of Contents: The Influence of Soil Dampness on the Velocity of Corrosion of Iron and lead in the EarthThe rate of corrosion of Iron and Lead was examined with respect to the element Pt/dam soil/base metal. It was found that, in sandy and clay sols, there are two varieties of corrosion, namely active behaviour of Iron and passive behaviour of Lead.
    Notes: Die Korrosionsgeschwindigkeit von Eisen und Blei wurde an dem Element Pt/feuchter Boden/unedleres Metall untersucht. Dabei ergab sich, daß in sand- und tonhaltigem Boden zwei Korrosionsarten zu unterscheiden sind, nämlich ein aktives Verhalten des Eisens und ein passives Verhalten des Blei.
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    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 251-257 
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    Keywords: Chemistry ; Polymer and Materials Science
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    Description / Table of Contents: The Roof and its problems, with Special Reference to Flat RoofsThe demands of Builders and Users that a roof is required to meet, have changed decisively during the last decades. The disappearance of garrets, the use of flat roofs and present-day sawtoothed roofs required that a number of additional precautions be observed, which are supplemented by recognition of thier constructional and utilisation limitations. Some of the most important demands of to-day, such as minimum constructional requirements, heat retention, limitations of roof characteristics, properties of materials and desirable developments are indicated. Special emphasis is laid on the various effects of dampness and their prevention. The importance of the structure of the roof and ventilation are also emphasised.
    Notes: Die baulichen und benutzungsmäßigen Anforderungen an das Dach haben sich in den letzten Jahrzehnten in entscheidenden Teilen gewandelt. Wegfall des Dachraumes, Flachdächer und neuzeitlich Sägedachformen (Sheds) bedingen eine Reihe zusätzlicher Vorkehrungen, die ergänzt werden durch neue Erkenntnisse über konstruktive und benutzungsmäßige Bedingtheiten. Einige der wichtigsten neuen Forderungen, wie Konstruktions-Mindestforderungen, Wärmedämmung, Wärmestau, Abgrenzung der Dacheigenschaften, Material-Eigenschaften und erwünschte Entwicklungen werden aufgezeigt. Besonderer Nachdruck wird auf die unterschiedlichen Formen der Feuchtigkeitseinwirkungen und ihrer Abwehr gelegt und die Bedeutung ausreichender Dachaufgliederung und Lüftung nachgewiesen.
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    Weinheim [u.a.] : Wiley-Blackwell
    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 56-56 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
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    Weinheim [u.a.] : Wiley-Blackwell
    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 72-74 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Type of Medium: Electronic Resource
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  • 94
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    Weinheim [u.a.] : Wiley-Blackwell
    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 84-87 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Description / Table of Contents: Cathodic corrosion PreventionThe article opens with a short definition of the term „Cathodic Corrosion Prevention“ and then describes the possibilities and limits of the application of cathodic protection by the use of outside current supplies in conjunction with an auxiliary insoluble anode. The appearance of cathodic corrosion, which limits the possibilities of this method of corrosion prevention, is described in detail.The results of tests made with iron and aluminum which was subjected to various representative forms of corrosion are given. The current required per sq. metre and per annum, as determined from these tests, forms a criterion for the cost of cathodic corrosion protection.
    Notes: Nach einer kurzen Definition des Begriffes „kathodischer Korrosionsschutz“ wird auf die Möglichkeiten und Grenzen der Anwendung des kathodischen Schutzes mit einer äußeren Stromquelle und einer unlöslichen Hilfsanode hingewiesen. Die Erscheinung der „kathodischen Korrosion“, die die Möglichkeiten der Anwendung des kathodischen Schutzes begrenzt, wird eingehend besprochen.Versuche mit Eisen und Aluminum in einigen typischen Korrosionsmitteln werden mitgeteilt, wobei der Bedarf an elektrischer Energie je m2 und Jahr einen Anhaltspunkt für die Kosten des kathodischen Schutzes gibt.
    Additional Material: 4 Tab.
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  • 95
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    Weinheim [u.a.] : Wiley-Blackwell
    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 81-83 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Description / Table of Contents: The Influence of the condition of the Surface of Iron upon the Rapidity of Corrosion when buried in SoilExperiments were made to determine the action of various soils sand, clay and loam upon elements Ferough (damp soil) Fe smooth and Ferough (soils I/II) Fesmooth. Current measurements made with element Ferough (damp soil) Fesmooth demonstrated that the reversal of direction of the current, which is dependent on the dampness of the soil, only takes place between very narrow limits. These limits are correlated to the point at which the soil saturated with water goes over to the unsaturated state.The period of time in which the potential difference between two electrodes of varying surface condition (Ferough Fesmooth) placed in soil, disappears after a definite quantity of electrolyte has been added, could be plotted as characteristic curves. Such curves could give information upon the increased soil activity.
    Notes: Messungen über die unterschiedliche Bodenaggressivität (Sand, Ton und Lehm) wurden mit den Elementen Ferauh (feuchter Boden) Feglatt durchgeführt. Stromstärkemessungen mit dem Element Ferauh (feuchter Boden) Feglatt ergaben, daß Umkehr der Stromrichtung, die von der Feuchtigkeit des Bodens abhängt, nur in einem sehr engen Feuchtigkeitsbereich stattfindet, der dem Übergang von mit Wasser gesättigtem in den ungesättigten Boden zugeordnet ist.Die Zeit, in welcher das Potential zwischen zwei Elektroden verschiedener Oberflächenbeschaffenheit (Ferauh, Feglatt) in einem Boden nach Zufügen einer bestimmten Elektrolytmenge verschwindet, dürfte charakteristische Kurven ergeben, die Aufschluß über eine vergrößerte Bodenaggressivität liefern.
    Additional Material: 5 Ill.
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  • 96
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    Weinheim [u.a.] : Wiley-Blackwell
    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 92-94 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Description / Table of Contents: The Basic Causes of “Short” Fractures in MetalsThis article forms a report on various lectures delivered at a Meeting which was held to determine the present extent of knowledge of “short” fractures. The lectures were published in Nos. 415 (1953) of the “Raeder Rundschau”, and dealt exhaustively with the phenomena of “short” fractures of various metals in use in industry, as well as of welded and non-welded components. The lectures also included a survey of the causes of “short” fractures as far as present-day knowledge and the various theories on fractures permitted. In addition, various important questions regarding the various methods of testing metals for their liability to short fracture “are discussed”.
    Notes: Referat über Vorträge anläßlich einer Tagung über den heutigen Stand des Sprödbruchproblems.  -  Die in Heft 4/5 (1953) der „Radex-Rundschau“ veröffentlichten Vorträge behandelten das grundsätzliche Erscheinungsbild des spröden Bruches bei verschiedenen metallischen Werkstoffen, ungeschweißten und geschweißten Konstruktionsteilen und gaben eine Uebersicht über die Entstehung von spröden Brüchen, soweit sie nach unseren heutigen Kenntnissen und Anschauungen über den Aufbau der metallischen Werkstoffe und auf Grund der Bruchtheorien abgeleitet werden könne. Ferner wurde auch eingehend die technisch wichtige Frage der Prüfverfahren zur Feststellung der Sprödbruchempfindlichkeit eines Werkstoffes erörtert.
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  • 97
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    Weinheim [u.a.] : Wiley-Blackwell
    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 104-106 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
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  • 98
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    Weinheim [u.a.] : Wiley-Blackwell
    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 98-104 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Additional Material: 1 Tab.
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  • 99
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    Weinheim [u.a.] : Wiley-Blackwell
    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 87-92 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Description / Table of Contents: Contributions to the Theory of Chemical Polarisation during Solution, Separation and Overstressing of MetalsIt was shown that the appearance of surface layers is an essential factor in the chemical polarisation which occurs during the solution, separation, overstressing, inhibitory action, polishing and passivity of metals. The surface layers exercise a restraining effect on the adjustment of the equilibrium of association. These layers are to be found on practically all metals and even in solutions which are capable of dissolving the material of which the layers are composed. They are created by a slowing down in the speed of the diffusion of the ions necessary for the dissolving of the metal in relation to the more rapid formation of layers on the surface of the metal. Such surface layers differ from the usual macromolecular surface layers, such as oxides or scale, rust, salts, etc., in their solubility. Their formation continues at a very high reproductive rate, even though the top layers are removed, and they form an indication of the behaviour of the metal in solutions after it has been subjected to suitable preliminary treatment. In contra-distinction to the irreversible macro-molecular surface layers, the afore-mentioned layers can be regarded as being reversible micro-molecular coverings.
    Notes: Es wird gezeigt, daß das Auftreten von Deckschichten ein wesentlicher Faktor bei der chemischen Polarisation, bei der Auflösung oder Abscheidung von Metallen, bei der Überspannung, Inhibitorwirkung, Glanzwirkung und Passivität ist. Die Deckschichten bewirken eine Hemmung der Gleichgewichtseinstellung. Sie sind auf praktisch allen Metallen und selbst in solchen Lösungen vorhanden, die an sich befähigt wären, die Deckschichtsubstanz aufzulösen. Sie entstehen durch eine geringere Geschwindigkeit des Diffusionsvorgangs, der für die Metallauflösung erforderlichen Ionen im Vergleich zur schnelleren Deckschichtenbildung unmittelbar auf der Metalloberfläche. Derartige Deckschichten unterscheiden sich wesentlich von den bekannten makromolekularen Deckschichten wie Oxyd- oder Zunderschichten, Rost, Salzschichten usw. durch ihre verschiedene Löslichkeit. Sie bilden sich selbst nach ihrer Entfernung immer wieder und zwar sehr gut reproduzierbar nach und sind ein Kennzeichen für das Metall hinsichtlich seines Verhaltens bei einer bestimmten Vorbehandlung in einer bestimmten Lösung. Sie können im Gegensatz zu den irreversiblen makromolekularen Deckschichten als reversible, mikromolekulare Bedeckungen angesehen werden.
    Additional Material: 3 Ill.
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    Weinheim [u.a.] : Wiley-Blackwell
    Materials and Corrosion/Werkstoffe und Korrosion 5 (1954), S. 94-98 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Description / Table of Contents: Preparation and Passivation of light metals for paintingAluminum and magnesium alloys are forming natural oxide films, the strengthening of which is performed by several methods of chemical and electrolytic oxidation. Light metals are also protected by insoluble films of metal salts (phosphate films) in a similar manner as the iron metals. In recent years a new method was developed whereby metal organic protective films are produced by using so-called reaction primers (wash primers). All these protective films are functioning likewise as anticorrosive coatings and as adhesive substrates for paint and lacquer coatings.
    Notes: Aluminium- und Magnesium-Legierungen bilden an der Luft natürliche Oxydhäute, deren Verstärkung durch die verschiedenen Verfahren der chemischen und elektrolytischen Oxydation der Leichtmetalle angestrebt wird. Außer durch die unlöslichen Oxydschichten werden Leichtmetalle ebenso wie Eisenmetalle auh durch unlösliche Metallsalzschichten (Phosphatfilme etc.) geschützt. Auch die durch die sog. Reaktionsprimer oder Metallwandler erzeugten metallorganischen Deckschichten werden als antikorrosive Überzüge und Haftgründe für die nachfolgende Lackierung angewendet.
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