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  • Wiley-Blackwell  (4,682)
  • PANGAEA
  • 2010-2014
  • 1980-1984
  • 1960-1964  (4,703)
  • 1963  (4,703)
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  • 2010-2014
  • 1980-1984
  • 1960-1964  (4,703)
Year
  • 1
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    PANGAEA
    In:  Supplement to: Arrhenius, Gustaf (1963): Pelagic sediments. In: Hill, M.N. (Ed.) The Earth Beneath the Sea, History, The Sea - Ideas and Observations on Progress in the Study of the Seas, Wiley J, New York, U.S.A., 3, 655-727, hdl:10013/epic.46253.d001
    Publication Date: 2023-08-28
    Description: Attempts to classify pelagic sediments have been based either on appearance and composition, or on the ultimate origin of the components. In particular it appears feasible to distinguish minerals which crystallized in sea-water from those which formed in magmas, in hydrothermal solution, or by weathering under acidic conditions. It is the case of iron and manganese oxide mineral aggregates which constitute one of the major types of rock encountered on the ocean floor; according to Menard (unpublished) about 10% of the pelagic area of the Pacific is covered by such nodules. The nodules consist of intimately intergrown crystallites of different minerals among those identified, besides detrital minerals and organic matter, are opal, goethite, rutile, anatase, barite, nontronite, and at least three manganese oxide minerals of major importance. Arrhenius and Korkisch (1959) have attempted to separate from each other the different minerals constituting the nodules, in order to establish the details of their structure and the localization of the heavy metal ions. The results demonstrate (Table II) that copper and nickel are concentrated in the manganese oxide phases concentrated in the reducible fraction. Cobalt, part of the nickel and most of the chromium are distributed between these and the acid-soluble group of the non-manganese minerals, dominated by goethite and disordered FeOOH.
    Keywords: Acid soluble, total; ALB-13; ALB-2; Albatross (1882-1921); Albatross1899-1900; Albatross1904-1905; ALBTR-13; ALBTR-2; ALBTR-4711; ALBTR-4721; Barium; Chromium; Cobalt; Copper; DEPTH, sediment/rock; DNWB0ABD; DOWNWIND-B1; DOWNWIND-H; Dredge; DRG; DWBD4; DWHD72; Event label; Horizon; Identification; Iron; Lanthanum; Lead; Manganese; Molybdenum; Nickel; Niobium; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Northern_Holiday; North-West Pacific Ocean; NTHL02HO-010PH; NTHL-10; Optical spectrographic analysis; Pacific Ocean; Reducible total; Residual; Scandium; Spencer F. Baird; Strontium; Thorium; Titanium; Wired profile sonde; WP; Ytterbium; Yttrium; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 386 data points
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  • 2
    Publication Date: 2023-08-28
    Keywords: Atlantic Ocean; Comment; Deposit type; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Description; Dredge, rock; DRG_R; Event label; File name; Identification; Indian Ocean; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Pacific Ocean; PC; Photo/Video; Piston corer; Position; PV; Quantity of deposit; Sediment type; Size; Substrate type; Uniform resource locator/link to image; V19; V19-1; V19-10; V19-100; V19-103; V19-105; V19-106; V19-109; V19-10C; V19-111; V19-112; V19-115; V19-117; V19-118; V19-119C; V19-11RD; V19-12; V19-121; V19-121C; V19-122C; V19-123; V19-124C; V19-125C; V19-126C; V19-128C; V19-13; V19-130; V19-130C; V19-131; V19-134; V19-136; V19-138; V19-14; V19-141C; V19-144C; V19-145C; V19-15; V19-150; V19-151; V19-152; V19-154; V19-155; V19-157; V19-158; V19-159; V19-161; V19-162C; V19-163; V19-164; V19-165; V19-166; V19-166C; V19-167; V19-168; V19-168C; V19-169; V19-170; V19-171; V19-172; V19-172C; V19-179C; V19-18; V19-182; V19-184; V19-186; V19-192C; V19-198C; V19-1C; V19-1RD; V19-20; V19-201C; V19-205; V19-209; V19-21; V19-210; V19-211; V19-213; V19-214; V19-216; V19-217; V19-22; V19-220C; V19-223; V19-224C; V19-226; V19-228; V19-23; V19-230; V19-231; V19-232; V19-239; V19-242; V19-244; V19-247; V19-248C; V19-254C; V19-255C; V19-269; V19-272; V19-276; V19-280; V19-281; V19-282; V19-28C; V19-295; V19-296; V19-29C; V19-2C; V19-2RD; V19-305; V19-307; V19-312; V19-38; V19-3C; V19-4; V19-43; V19-44; V19-45; V19-5; V19-52; V19-53; V19-54; V19-55; V19-58; V19-59C; V19-5C; V19-6; V19-60; V19-61C; V19-64C; V19-66; V19-67; V19-68; V19-68C; V19-69; V19-69C; V19-7; V19-70; V19-71; V19-72; V19-74C; V19-75; V19-75C; V19-76; V19-78; V19-79; V19-8; V19-80; V19-81; V19-82; V19-83; V19-84; V19-85; V19-87; V19-88; V19-8C; V19-9; V19-91; V19-93; V19-94; V19-96; V19-97; V19-99; V19-9C; Vema; Visual description
    Type: Dataset
    Format: text/tab-separated-values, 3057 data points
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  • 3
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    PANGAEA
    In:  Supplement to: Pachadzhanov, D N; Bandurkin, G A; Migdisov, Areg A; Girin, Yury P (1963): Data on the geochemistry of manganese nodules from the Indian Ocean. Geokhimiya, 5, 493-499, hdl:10013/epic.46169.d001
    Publication Date: 2023-08-28
    Description: Analyses are given for the core and outer colliform shell of a manganese nodule collected at a depth of 5000 m in the Indian Ocean, and for the red clay that encloses the nodules. Trace elements determined include rare earths, Nb, Ta, Th, and V. The cores of the nodules were once composed of basaltic rock, but now are phillipsite and nontronite. The outer shell is composed of manganite, with admixed quartz, phillipsite, and some geothite. The correlations established between the redox potentials and the concentration coefficients for 12 elements indicate that Eh plays a greater role in the formation of the manganiferous shells than coprecipitation properties.
    Keywords: GC; Gravity corer; Indian Ocean; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Vityaz (ex-Mars); Vityaz-31; VITYAZ4575
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 4
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    PANGAEA
    In:  Supplement to: Arrhenius, Gustaf; Bonatti, Enrico (1963): Neptunism and vulcanism in the ocean. Progress in Oceanography, 3, 7-22, https://doi.org/10.1016/0079-6611(65)90005-4
    Publication Date: 2023-08-28
    Description: The origin of authigenic minerals on the ocean floor has been extensively discussed in the past with emphasis on two major processes; precipitation from solutions originating from submarine eruptions, and slow precipitation from sea water of dissolved elements, originating from weathering of continental rocks. It is concluded that in several marine authigenic mineral systems these processes overlap. A diagnostic principle is suggested, permitting a qualitative or semiquantitative discrimination between marine authigenic minerals crystallized from dissolved species, which have spent a long time in solution on the one hand, and the same minerals generated from solutions, near their source on the other. Extensive data are available for the manganese and iron oxide minerals forming manganese nodules. It is indicated on the basis of their composition and structure that many of the nodules found in the vicinity of the continents are made up essentially of manganese derived from continental weathering. In contrast to this group, all of the nodules found in the Pacific area of submarine vulcanism display the criteria for rapid precipitation near the source of solution. The distribution of barium minerals over the deep ocean floor is discussed.The same diagnostic principle is suggested for application to these solids, in order to discriminate between baryte and harmotome crystallized near the source of barium- rich, acidic vulcanites, and the same minerals formed from continental solution with passage through the biosphere. In the case of the authigenic aluminosilicates it is found that many of the framework elements (Si and particularly Al) have low passage time through solution, and the major fraction of these elements is consequently removed from solution in the vicinity of the eruptive source materials. Extensive modification of the crystal structures, however, takes place over long periods of time, adding particularly cations from sea water, and probably to some extent silica from siliceous fossils, which on their decay on the ocean floor appear to contribute to the silicate framework of growing zeolites. The marked fractionation of the rare earth ions between coexisting phases is pointed out, with discussion of the potential use of this phenomenon to indicate the processes of formation. The use of the hafnium/zirconium ratio as a tracer for the igneous source type is suggested, and the application of ideally imperfect tracers to establish the varying relative importance of volcanic versus halmeic source of marine minerals is discussed in general.
    Keywords: ALB-13; ALB-2; Albatross (1882-1921); Albatross1899-1900; Albatross1904-1905; ALBTR-13; ALBTR-2; ALBTR-4711; ALBTR-4721; Chromium; Cobalt; DEPTH, sediment/rock; DNWB0ABD; DOWNWIND-B1; DOWNWIND-H; Dredge; DRG; DWBD4; DWHD72; Event label; Horizon; Identification; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Optical spectrographic analysis; Pacific Ocean; Spencer F. Baird
    Type: Dataset
    Format: text/tab-separated-values, 42 data points
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  • 5
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    PANGAEA
    In:  Supplement to: Hewett, DF; Fleischer, Michael; Conklin, Nancy (1963): Deposits of the manganese oxides; supplement. Economic Geology, 58(1), 1-51, https://doi.org/10.2113/gsecongeo.58.1.1
    Publication Date: 2023-08-28
    Description: In an earlier paper by two of the authors the conclusion was reached that the 33 recognized species of oxides of Mn could be separated into 3 groups: 1) those which appeared to be persistently supergene in origin, 2) those which appeared to be persistently hypogene, and 3) those which were supergene in some localities and hypogene in other localities. When that paper was written, there were available about 250 X-ray diffraction analyses of mineral specimens, also 35 complete and about 150 partial chemical analyses. The conclusions of that paper were based upon the interpretation of the geologic conditions under which these specimens occurred. Late in the preparation of that paper, it seemed worthwhile to make numerous semiquantitative analyses of specimens, largely from 9 western [U.S.A] states, selected carefully from 5 groups of geologic environments, in the hope that the frequency and percentages of some elements might be distinctive of the several geologic groups. For this purpose, 95 specimens were selected from the 5 groups, as follows: 19 specimens interpreted as supergene oxides by the geologists who collected them, 35 specimens of hypogene vein oxides, 22 specimens of Mn-bearing hot spring aprons, 9 specimens of stratified oxides, and 10 specimens of deep-sea nodules. The spectrographic analyses here recorded indicate that a group of elements - W, Ba, Sr, Be, As, Sb, Tl, and Ge - are present more commonly, and largely in higher percentages, in the hypogene oxide than in the supergene oxides and thus serve to indicate different sources of the Mn. Also, the frequency and percentages of some of these elements indicate a genetic relation of the manganese oxides in hypogene veins, hot spring aprons, and stratified deposits. The analyses indicate a declining percentage of some elements from depth to the surface in these 3 related groups and increasing percentages of some other elements. It is concluded that some of the elements in deep-sea nodules indicate that sources other than rocks decomposed on the continents, probably vulcanism on the floors of the seas, have contributed to their formation.
    Keywords: ALB-13; ALB-173; Albatross (1882-1921); Albatross1899-1900; Albatross1904-1905; ALBTR-13; ALBTR-173; ALBTR-4662; Aluminium; Barium; Beryllium; Bismuth; Boron; Calcium; Cerium; Chromium; Cobalt; Copper; DEPTH, sediment/rock; DNWB0ABD; DOWNWIND-B1; DOWNWIND-H; Dredge; Dredge, chain bag; Dredge, rock; DRG; DRG_C; DRG_R; DWBD1; DWHD47; Elevation of event; Event label; FANB01BD; FANBD-25D; FANFARE-B; Horizon; Indian Ocean; Iron; Lanthanum; Latitude of event; Lead; LGO-BT-57 or VM14 SBT57 (SIO); Longitude of event; Magnesium; MDPC02HO-MP-025F-2; MDPC02HO-MP-033K; MIDPAC; Molybdenum; MPC-25F-2; MPC-33K; NAGA; NAGA10C; Neodymium; Nickel; Niobium; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Pacific Ocean; Photo/Video; Potassium; PV; Sample ID; Scandium; Silicon; Sodium; Spectrographic analysis; Spencer F. Baird; Stranger; Strontium; Thallium; Titanium; V14; V14-57RD; Vanadium; Vema; Ytterbium; Yttrium; Zinc; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 296 data points
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  • 6
    Publication Date: 2023-08-28
    Description: The cores described in this report were taken during the R/V Robert Conrad Cruise 02 from 26 until 28 January 1963 by the Lamont Geological Observatory, Columbia University. A total of 5 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; RC02; RC0201; RC02-1; RC02-2; RC02-4; RC02-5; Robert Conrad; Sample ID; Sediment type; Size
    Type: Dataset
    Format: text/tab-separated-values, 75 data points
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  • 7
    Publication Date: 2023-08-28
    Description: The cores described in this report were taken during the R/V Robert Conrad Cruise 05 from March until April 1963 by the Lamont Geological Observatory, Columbia University. A total of 13 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; Dredge, rock; DRG_R; 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; RC05; RC05-1; RC05-10; RC05-11; RC05-12; RC05-13; RC05-14; RC05-1RD; RC05-7; RC05-8; RC05-9; Robert Conrad; Sample ID; Sediment type; Size; Substrate type
    Type: Dataset
    Format: text/tab-separated-values, 306 data points
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  • 8
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    PANGAEA
    In:  Supplement to: Burckle, Lloyd H; Hekinian, Roger; Lair, C (1963): Robert Conrad Cruise 04 - Preliminary Megascopic Descriptions of Split Cores. Lamont Geological Observatory, Columbia University, New York, unpublished, 13 pp
    Publication Date: 2023-08-28
    Description: The cores described in this report were taken during the R/V Robert Conrad Cruise 04 in March 1963 by the Lamont Geological Observatory, Columbia University. A total of 9 cores were recovered and are available at Lamont-Doherty Earth Observatory for sampling and study.
    Keywords: Atlantic Ocean; Comment; Core; CORE; 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; RC04; RC04-1; RC04-2; RC04-3; RC04-4; RC04-7CC; RC04-8; Robert Conrad; Sample ID; Sediment type
    Type: Dataset
    Format: text/tab-separated-values, 114 data points
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  • 9
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    PANGAEA
    In:  Supplement to: Lamont-Doherty Earth Observatory (1963): Robert Conrad Cruise 06 - Preliminary Megascopic Descriptions of Split Cores. Lamont Geological Observatory, Columbia University, New York, unpublished, 9 pp
    Publication Date: 2023-08-28
    Description: The cores described in this report were taken during the R/V Robert Conrad Cruise 06 from May until June 1963 by the Lamont Geological Observatory, Columbia University. A total of 5 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; RC06; RC06-1; RC06-2; RC06-3; Robert Conrad; Sample ID; Sediment type; Size
    Type: Dataset
    Format: text/tab-separated-values, 55 data points
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  • 10
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    PANGAEA
    In:  Supplement to: Anderson, N D; Burckle, Lloyd H; Baker, R (1963): R/V Robert Conrad Cruise 7 - Preliminary Megascopic Descriptions of Split Cores. Lamont Geological Observatory, Columbia University, New York, unpublished, 48 pp
    Publication Date: 2023-08-28
    Description: The cores and dredges described in this report were taken during the Robert Conrad Cruise 7 from July until October 1963 by the Lamont Geological Observatory, Columbia University from the R/V Robert Conrad . A total of 29 cores and dredges 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; Dredge, rock; DRG_R; 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; RC07; RC0701-RC0708; RC07-1; RC07-10; RC07-12; RC07-13; RC07-15; RC07-16; RC07-17; RC07-1RD; RC07-20; RC07-21; RC07-25; RC07-26; RC07-28; RC07-29; RC07-3; RC07-30; RC07-4; RC07-5; RC07-6; RC07-7; Robert Conrad; Sample ID; Sediment type; Size; Substrate type
    Type: Dataset
    Format: text/tab-separated-values, 353 data points
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  • 11
    Publication Date: 2023-08-28
    Keywords: Deposit type; DEPTH, sediment/rock; Description; Event label; Identification; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Northwestern Basin, Pacific Ocean; Position; Quantity of deposit; Size; Substrate type; TRAWL; Trawl net; Visual description; VITYAZ; Vityaz (ex-Mars); VITYAZ3782-TR; VITYAZ3996-TR
    Type: Dataset
    Format: text/tab-separated-values, 13 data points
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  • 12
    Publication Date: 2023-08-28
    Keywords: Calcium; DEPTH, sediment/rock; Description; Emanescence radiometry; Event label; Gas chromatography; Identification; Insoluble residue; Iron; Loss on ignition; Luminescent analysis; Manganese; Nickel; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Northwestern Basin, Pacific Ocean; Phosphorus; Radium; Silicon; Thorium; Thorium-230; TRAWL; Trawl net; Uranium; VITYAZ; Vityaz (ex-Mars); VITYAZ3782-TR; VITYAZ3996-TR; Wet chemistry; X-ray radiometry
    Type: Dataset
    Format: text/tab-separated-values, 142 data points
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  • 13
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    PANGAEA
    In:  Supplement to: Nikolayev, D S; Yefimova, E I (1963): On the age of iron-manganese concretions from the Indian and Pacific Oceans. Geochemistry, 7, 703-714, hdl:10013/epic.47397.d001
    Publication Date: 2023-08-28
    Description: Uranium, radium, thorium and ionium were determined directly on seven concretions from three stations in the Indian Ocean, and on two concretions and a manganese-rich crust from two stations in the Pacific Ocean. The uranium content averages 3 to 5 gamma/g and the thorium content varies only slightly, but the Th/U ratio in the concretions is typically 2 to 5 in the Indian Ocean and 5 to 15.5 in the Pacific. The ionium content ranges from 1.0 x 10-9 to 3.6 10**-9 g/g in concretions from both oceans. Radium is more abundant in specimens from the Pacific Ocean (Ra = 3 - 12.7 x 10**-11 g/g) than from the Indian Ocean (1.5 - 5.2 x 10**-11 g/g). Analyses for Ca, Mn, Fe, Si, Ni, P, and ignition loss are also given. Radioactive equilibria between uranium, ionium, and radium are strongly disturbed throughout the concretions, and the RA/U and lo/U ratios generally exceed equilibrium ratios. Migration of radium from interior layers was established, so that neither determination of the ages of the concretions nor of their rates of growth can be considered reliable. The age of the concretions cannot exceed 800,000 years, and all grew within relatively short periods of time; there may have been "dormant" periods during growth. Estimates of growth rates are calculated from the radium and ionium contents; they show marked discordance.
    Keywords: NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Northwestern Basin, Pacific Ocean; TRAWL; Trawl net; VITYAZ; Vityaz (ex-Mars); VITYAZ3782-TR; VITYAZ3996-TR
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 14
    Publication Date: 2023-08-28
    Keywords: Deposit type; DEPTH, sediment/rock; Description; Elevation of event; GC; Gravity corer; Indian Ocean; Latitude of event; Longitude of event; Method/Device of event; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Position; Quantity of deposit; Sample ID; Sediment type; Size; Substrate type; Vityaz (ex-Mars); Vityaz-31; VITYAZ4575
    Type: Dataset
    Format: text/tab-separated-values, 8 data points
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  • 15
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    PANGAEA
    In:  Supplement to: SCRIPPS Institution of Oceanography (1963): LUSIAD Expedition, May 1962-August 1963, List of sediment cores and dredge hawls, R/V Argo and R/V Horizon. Scripps Institution of Oceanography, UC San Diego, unpublished, 29 pp, https://www.ngdc.noaa.gov/mgg/curator/data/argo/lusiad/lusiad_expedition_report.pdf
    Publication Date: 2023-08-28
    Description: The cores and dredges described in this report were taken on the LUSIAD Expedition from May 1962 until August 1963 by the Scripps Institution of Oceanography from both the R/V Argo and the R/V Horizon. A total of 310 cores and dredges were recovered and are available at Scripps for sampling and study.
    Keywords: Argo; Atlantic Ocean; Comment; Coral Sea; D2; D3; D4; D5; Date/Time of event; Deposit type; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Description; Dredge; DRG; Elevation of event; Event label; GC; Gravity corer; Horizon; Indian Ocean; Java Sea; Latitude of event; Longitude of event; LSDA; LSDA-013D; LSDA-102G; LSDA-119G; LSDA-121G; LSDA-122G; LSDA-123G; LSDA-124G; LSDA-125G; LSDA-126G; LSDA-131G; LSDA-132P; LSDA-132PG; LSDA-134P; LSDA-138G; LSDA-138V; LSDA-139GB; LSDA-140G; LSDA-145PB; LSDA-145PGA; LSDA-145PGB; LSDA-147PG; LSDA-148G; LSDA-155V; LSDA-157V; LSDA-162G; LSDA-179D; LSDA-194G; LSDA-199D; LSDA-219D; LSDA-222D; LSDH; LSDH-022G; LSDH-022V; LSDH-023G; LSDH-034V; LSDH-035V; LSDH-036V; LSDH-038G; LSDH-042V; LSDH-045G; LSDH-046V; LSDH-053G; LSDH-054G; LSDH-055V; LSDH-063G; LSDH-078P; LSDH-085G; LSDH-086G; LSDH-087P; LSDH-089PG; LSDH-089V; LSDH-090P; LSDH-090PG; LSDH-093P; LSDH-093PG; LSDH-093V; LSDH-095G; LSDH-099G; LSDH-100G; LSDH-100V; LSDH-102G; LUSIAD-A; LUSIAD-H; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Pacific Ocean; PC; Piston corer; Position; Quantity of deposit; Sample ID; Sediment type; Size; Substrate type; Uniform resource locator/link to image
    Type: Dataset
    Format: text/tab-separated-values, 633 data points
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  • 16
    Publication Date: 2023-08-28
    Keywords: Aluminium oxide; Calcium oxide; Carbon, organic, total; DEPTH, sediment/rock; Description; GC; Gravity corer; Indian Ocean; Iron oxide, Fe2O3; Iron oxide, FeO; Magnesium oxide; Manganese oxide; Niobium (V) oxide; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Phosphorus pentoxide; Potassium oxide; Sample ID; Silicon dioxide; Sodium oxide; Tantalum (V) oxide; Thorium; Titanium dioxide; Vanadium; Vityaz (ex-Mars); Vityaz-31; VITYAZ4575; Wet chemistry
    Type: Dataset
    Format: text/tab-separated-values, 34 data points
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  • 17
    Publication Date: 2023-07-10
    Keywords: Aptenodytes forsteri; Catharacta skua; Chionis alba; Comment; Daption capensis; DATE/TIME; Diomedea exulans exulans; Eudyptes chrysolophus; Fulmarus glacialoides; Halobaena caerulea; Larus dominicanus; LATITUDE; LONGITUDE; Macronectes giganteus; Oceanites oceanicus; Pachyptila desolata; Pagodroma nivea; Phalacrocorax atriceps; Pygoscelis adeliae; Pygoscelis antarctica; Pygoscelis papua; Sterna vittata; Thalassoica antarctica; Visual observation; Weddell_Sea_Region; Weddell Sea
    Type: Dataset
    Format: text/tab-separated-values, 859 data points
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  • 18
    Publication Date: 2023-07-10
    Keywords: Aptenodytes forsteri; Catharacta skua; Chionis alba; Daption capensis; DATE/TIME; Diomedea chrysostoma; Diomedea exulans exulans; Diomedea melanophris; Fulmarus glacialoides; Halobaena caerulea; LATITUDE; LONGITUDE; Macronectes giganteus; Oceanites oceanicus; Pachyptila desolata; Pagodroma nivea; Phoebetria fusca; Phoebetria palpebrata; Pterodroma macroptera macroptera; Pygoscelis adeliae; Pygoscelis antarctica; Thalassoica antarctica; Visual observation; Weddell_Sea_Region; Weddell Sea
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  • 19
    Publication Date: 2015-10-29
    Repository Name: EPIC Alfred Wegener Institut
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    In:  EPIC3ACTA SOCIETATIS BOTANICORUM POLONTAE Vol. XXXII Nr 1., Bremerhaven, PANGAEA
    Publication Date: 2019-07-17
    Repository Name: EPIC Alfred Wegener Institut
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    In:  EPIC3Bremerhaven, PANGAEA
    Publication Date: 2015-11-13
    Repository Name: EPIC Alfred Wegener Institut
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  • 22
    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: Examination of the hardening of filled duroplastics through non - destructive testing of the dynamo-elastic properties in the fatigue testThe examination of the dynamo-elastic properties of filled duroplastics as a function of frequency and temperature, subjecting bar-shaped specimens to the bending fatigue test, has shown that this method is well suited for measuring the hardening process due to progressive crosslinking until the material has finally hardened. The method yields data which not only corroborate but also greatly expand the results obtained with other methods. With the aid of this method, it becomes possible to assess the suitability of such resins for specific technical applications, e.g. for acid-resistant apparatus. In the present contribution, this is exemplified by investigating the suitability of a filled phenol resin and a filled furan resin as bonding agents for the brick-lining of steel vessels. By means of the fatigue test, it is possible to obviate the need for lengthy investigations during the development of new products so that the experimental period can be curtailed.
    Notes: Die Untersuchung der dynamisch-elastischen Eigenschaften gefüllter Duroplaste in Abhängigkeit von der Frequenz und der Temperatur an stabförmigen Proben im Biegeschwingungsversuch hat gezeigt, daß diese Methode gut geeignet ist, den Verlauf der Härtung infolge fortschreitender Vernetzung bis zur endgültigen Aushärtung meßtechnisch zu erfassen. Das Verfahren ergibt Informationen, die die mit anderen Methoden gewonnenen Erkenntnisse nicht nur bestätigen, sondern auch wesentlich erweitern. Mit seiner Hilfe können Aussagen über die Eignung solcher Harze für spezielle technische Anwendungen erzielt werden, z. B. im Säurebau. In der vorliegenden Arbeit wird im besonderen die Eignung eines gefüllten Phenolharzes und eines gefüllten Furanharzes als Kitt für die Ausmauerung stählerner Gefäße untersucht. Der Schwingungsversuch ermöglicht es, langwierige Untersuchungen bei der Entwicklung neuer Produkte einzusparen und damit Versuchszeiten abzukürzen.
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 33-35 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 37-41 
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    Keywords: Chemistry ; Polymer and Materials Science
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 42-55 
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    Keywords: Chemistry ; Polymer and Materials Science
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 55-55 
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    Keywords: Chemistry ; Polymer and Materials Science
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 55-55 
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    Keywords: Chemistry ; Polymer and Materials Science
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    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 55-56 
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    Keywords: Chemistry ; Polymer and Materials Science
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 7-10 
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    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: Watch out for bacterial corrosion in refineriesCorrosion in underground structures, cooling systems and storage facilities of the petroleum industry is often due to microorganisms which may destroy organic coatings, form  -  by metabolism  -  aggressive acids and  -  by oxidation of iron  -  produce slimy deposits under which there are favorable conditions for the growth of anaerobic bacteria; such deposits may further give rise to aeration cells which, too enhance corrosion. Growth conditions in the soil are often improved by digging operations. For combatting this type of corrosion bactericides should be used first (chlorine, chlorphenols ets.) however, care should be taken because of the possible agressivity of such products. For preventing bacterial corrosion, porefree coatings are most suitable (in addition to the purification of the medium) as regards cathodic protection, a direct effect on bacterial corrosion has not been established so far.
    Notes: Korrosion an unterirdischen Anlagen, in Kühlsystemen und an Lagereinrichtungen der Ölindustrie ist off durch Mikroorganismen bedingt, die organische Schultzschichten zerstören, durch ihren Stoffwechsel aggressive Säuren bilden und  -  durch Oxydation von Eisen  -  schleimige Ablagerungen verursachen, unter denen gute Wachstumsbedingungen für anaerobe Bakterien herrschen und die auch korrosionsfördernde Belüftungselemente entstehen lassen. Im Boden werden die Wachstumsbedingungen durch Erdarbeiten häufig verbessert. Zur Bekämpfung dieser Korrosionsart kommen vor allem Baktericide in Frage (Chlor, Chlorphenole u. v. a.), deren eigene Aggressivität jedoch zu berücksichtigen ist. Zur Verhütung eignen sich  -  neben guter Reinigung der jeweiligen Medien  -  vor allem porenfreie Schutzüberzüge, während eine direkte Wirksamkeit des kathodischen Schutzes noch nicht bewiesen ist.
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 19-32 
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    Keywords: Chemistry ; Polymer and Materials Science
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 11-14 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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    Description / Table of Contents: Inhibiting the corrosion of copper and bronze in ammonium chloride solutions by colloidsInspired by tests carried out by F. D. Talati, M. N. Desai and A. M. Trivedi, the author has carried out solubility tests with pure copper and with bronzes Ms 60 and Ms 70 in 0.1 n-NH4Cl with and without inhibitor content (the latter consisting of the colloids agar and/or gelatine). In the solution free from inhibitor, copper shows the highest corrosion rate, and Ms 60 has a clearly higher rate than Ms 70. As a result of admixtures of agar or gelatine, the copper corrosion caused by the NH4Cl solution is greatly reduced, whilst on the other hand, admixtures consisting of agar and gelatine greatly activate the corrosion attack. Moreover, whilst both types of bronze are protected against NH4Cl corrosion by agar or gelatine admixtures to roughly the same extent, a different proportion of both agar and gelatine added together will result in an inhibition effect which differs in principle, and which may be either positive or negative.
    Notes: Angeregt durch Versuche von F. D. Talati, M.N. Desai and A. M. Trivedi wurden mit Reinkupfer und den Messingen Ms 60 und Ms 70 Löslichkeitsversuche in inhibitorfreier und in inhibitorhaltiger (Zusätze der Kolloide Agar oder/und Gelatine) O, 1n-NH4Cl durchgeführt. In der inhibitorfreien Lösung wird Kupfer am Stärksten angegriffen. Messing Ms 60 wird deutlich stärker angegriffen als Ms 70. Agar- oder Gelatine-Zusätze setzen den Angriff der NH4Cl-Lösung auf Kupfer stark herab, während Agar- und Gelatine-Zusätze den Angriff stark aktivieren. Während weiter beide Messing-Sorten durch Agar- Oder Gelatine-Zusätze etwa in dem gleichen Ausmaße vor dem Angriff der NH4Cl-Lösung geschützt werden, ergibt der unterschiedlich hohe Zusatz der Inhibitorgemische (Agar und Gelatine) grundsätzlich unterschiedliche Hemmstoff-Wirkungen, und zwar positive oder negative Hemmstoff effekte.
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 80-88 
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    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
    Notes: Von einer Aluminiumbronze mit 7% Al und 2,5% Fe wurde die Korrosionsbeständigkeit in den wichtigsten Mineralsäuren und in Essigsäure bei verschiedenen Konzentrationen und Temperaturen bestimmt. Die Aluminiumbronze kommt nach diesen Versuchen vor allem unter reduzierenden Bedingungen, z. B. in Schwefelsäure bis zu Konzentrationen von 70% und Temperaturen bis 80% C, aber auch in Salzsäure als vollwertige Ergänzung hochlegierter, chemisch beständiger Chrom-Nickel-Stähle in Betracht. In Essigsäure ist die Beständigkeit der Aluminiumbronze den chemisch beständigen Stählen unterlegen, während ein Einsatz in oxydierenden Säuren wie Salpetersäure nicht möglich ist.
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 106-112 
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 115-122 
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 122-126 
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 143-154 
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963) 
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 269-273 
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    Description / Table of Contents: Influence of external factors on the properties of Nylon 6 productsThe mechanical behaviour of PLASKON Nylon 6, produced by the Allied Chemic Corporation, is described. The external factors having the greatest influence on the mechanical strength are temperature and moisture. The increase in one of these factors has the effect of reducing the yield limit and the modulus of elasticity, and or increasing the ductility. If both factors increase simultaneously, the effect is not additive but is considerably smaller than the effect of either of them separately.
    Notes: Das mechanische Verhalten von „PLASKON“ Nylon 6, einem Produkt der Allied Chemical Corporation, wird beschrieben. Die Umgebungsfaktoren, die hauptsächlich diese Festigkeit beeinflussen, sind Temperatur und Feuchtigkeit. Bei Erhöhung eines dieser Faktoren wird die Streckgrenze und der Elastizitätsmodul herabgesetzt, die Duktilität erhöht. Bei Einwirkung beider Faktoren wird die Wirkung nicht addiert, sondern die Gesamtwirkung ist erheblich geringer als wenn beide getrennt einwirken.
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 295-298 
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 273-279 
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    Description / Table of Contents: The essential characteristics and differencies of layer-forming and non-layer-forming bonderizing solutions, and the reaction mechanism of the latterThe author discusses the most essential properties and characteristics of the bonderizing solutions of the layer-forming mono-phosphates of the heavy metals as well as the reactions encountered in the process. Similar treatment is accorded to the coating phenomena and to the phenomena encountered in the solutions of alkaline phosphates of the non-layer-forming type.The last-named solutions of the alkali ortho-phosphates and alkali pyrophosphates differ from the layer-forming bonderizing systems in that, due to the high solubility of all alkali phosphates in water, their solutions do not entail a hydrolytic equilibrium.The reactions encountered during the formation of a coating, on iron, of the aqueous solutions of the alkali orthophosphates and pyro-phosphates are discussed in detail, and the reaction mechanism of these phenomens is clarified. The article is concluded with a discussion of the leading properties of iron phosphate coating, their technical applications, and their advantages and disadvantages.
    Notes: Es werden die wesentlichsten Eigenschaften und Merkmale der Phosphatierungslösungen der schichtbildenden Monophosphate der Schwermetalle und die sich dabei abspielenden Reaktionen besprochen. In gleicher Weise werden auch die Vorgänge bei der Überzugsbildung und in den Lösungen der nichtschichtbildenden Alkaliphosphate behandelt.Von den schichtbildenden Phosphatierungssystemen unterscheiden sich die nichtschichtbildenden Lösungen der Alkali-orthophosphate und Alkalipyrophosphate dadurch, daß wegen der guten Löslichkeit aller Alkaliphosphatverbindungen in Wasser bei diesen Lösungen kein Hydrolysengleichgewicht existiert.Es werden auch die bei der Bildung eines Überzuges auf Eisen aus den wäßrigen Lösungen der Alkaliortho- und -pyrophosphate vor sich gehenden Reaktionen eingehend besprochen und der Reaktions-mechanismus dieser Vorgänge aufgeklärt, Anschließend werden die wesentlichsten Eigenschaften der Eisenphosphatüberzüge, ihre technischen Anwendungsmöglichkeiten sowie Vor- und Nachteile besprochen.
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 329-336 
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    Keywords: Chemistry ; Polymer and Materials Science
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 342-343 
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    Keywords: Chemistry ; Polymer and Materials Science
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 173-176 
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 177-180 
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 181-186 
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    Notes: Die Methode der Einstellung bestimmter relativer Feuchten mit Hilfe von gesättigten Salzlösungen liefert nur dann genügend genaue Ergebnisse, wenn folgendes beachtet wird: 1.1Die Lösungsoberfläche soll so groß wie möglich sein.1.2Die Luft innerhalb des Hygrostaten soll mit Hilfe eines dicht über der Flüssigkeitsoberfläche angebrachten Lüfters zeitweise ungewälzt werden.1.3Die Temperatur innerhalb des Hygrostaten soll so konstant wie möglich gehalten werden (Änderung um höchstens 1°/h).1.4Siliconöle dürfen auch in geringsten Mengen nicht anwesend sein.1.5Der Hygrostat muß so weit luftdicht verschließbar sein, daß durch mäßige Luftumwältzung keine wesentlichen Mengen Wasserdampf aus dem Hygrostaten gedrückt oder gezogen werden, daß aber bei Erwärmung oder Abkühlung Druckausgleich stattfinden kann.1.6Die Gleichgewichtseinstellung erfordert unter Umständen Stunden bis Tage, besonders, wenn von 40° auf 20°übergegangen wird.1.7Hygrostaten sollten so selten und kurz als möglich geöffnet werden, um das Gleichgewicht im Dampfraum nicht zu stören.
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 187-205 
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 236-240 
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 241-251 
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 256-256 
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 257-260 
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    Description / Table of Contents: Organic chromates as corrosion inhibitors in primersResearch has been carried out on the corrosion protection afforded by primers based on alkyd resins or zinc chromates with and without inhibitors (organic chromic acid derivates), using as criteria the solubility of the passivating CrO42- ion, the change in the electro-chemical potential, and direct corrosion tests. The best results were obtained with coatings containing 1.8% chromate anion in the form of 1-methylcyclohexanol-1-chromate.
    Notes: Verfolgt wurde der Korrosionsschutzwert von Alkydharz-Grundanstrichen bzw. Grundanstrichen auf Zinkchromatbasis ohne/mit Inhibitoren (organische Derivate der Chromsäure) an Hand des Inlösunggehens des passierenden CrO42--Ions, der Änderung des elektrochemischen Potentials und von direkten Korrosionsversuchen. Beste Ergebnisse zeigten Anstriche, die 1,8% Chromatanion in Form von 1-Methylcyclohexanol-1-Chromat enthalten.
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 261-269 
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    Description / Table of Contents: Potentiostatic differential etching of the structural constituents in 18/8 Cr Ni steelsThe conditions for differential etchings are investigated with the aid of potentiostatically recorded current density/potentiostatically recorded current density/potential characteristics of an 1818 Cr Ni steel in sulphuric acid, oxalic acid and phosphoric acid. The curves show three maxima whose origin is discussed. It is thus possible to distinguish, for the etching, four typical ranges. In the active range, a general etching of all structural constituents takes place. In the primary passivity range, the a phase is the only one to be affected. In the transpassivity range, the grain faces become etched. Where there is a secondary passivity range, this gives rise to an etching of the special carbides at the grain boundaries. The oxygen development range occasions, like the active range, a general etching process. The σ phase is effected in all ranges. The relationships between the potential and the corrosion intensity are discussed with the aid of a number of photographs of polished specimens.
    Notes: An Hand potentiostatisch aufgenommener Stromdichte-Potentialkurven eines 18/8 Cr-Ni-Stahles in Schwefel-, Oxal- und Phosphorsäure sowie in Natronlauge werden die Bedingungen fü differentielle Ätzungen gewonnen. Die Kurven weisen drei Maxima auf, deren Entstehung erläutert wird. Dadurch können fü die Ätzung vier typische Gebiete unterschieden werden. Im aktiven Zustand erfolgt eine allgemeine Ätzung aller Gefügebestandteile. Im Gebiet der primären Passivität wird nur die σ-Phase angegriffen. Im Gebiet der Transpassivität erfolgt Kornflächenätzung. Beim Vorliegen der sekundären Passivität ergibt sich eine Ätzung der Korngrenzen mit den Sondercarbiden. Im Gebiet der Sauerstoffentwicklung erfolgt wieder wie im aktiven Zustand eine allgemeine Ätzung. Die σ-Phase wird in allen Gebieten angegriffen. Der Zusammenhang zwischen Potential und Angriff wird durch eine Reihe von Schliffbildern erläutert.
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 280-295 
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 298-313 
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 313-328 
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 336-342 
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 342-343 
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 419-422 
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    Description / Table of Contents: The initial process of the electrolytic formation of non-metallic corrosion protection layersThe formation of electrolytic corrosion protection layers takes place through unstable nucleations which are in the character of trigger reactions. The initial process of layer formation is therefore not evenly spread over the metal surface but is localised on a grid of dispersed seeding centres. This fact has a decisive influence on the way in which the layer is formed, and on its texture.The initial process has been investigated for different top layer systems by means of current/time and potential/time recordings, and the results have been interpreted in the light of the layer formation conditions referred to above.
    Notes: Die Ausbildung elektrolytischer Korrosionsschutzschichten verläuft über instabile Keimbildungen, die ihrer Natur nach „Auslösevorgängge“ sind. Der Initialvorgang der Schichtbildung ist deshalb kein über die Metalloberfläche gleichmäßig verbreiteter Prozeß, sondern ist auf ein Raster diskreter Keimpunkte lokalisiert. Dies hat fü den Ablauf der Schichtbildung und fü die entstehende Schichttextur entscheidende Konsequenzen.Der Initialvorgang wurde für verschiedene Deckschichtsyteme mittels Strom-Zeit bzw. Spannungs-Zeit-Registrierungen untersucht und die Ergebnisse auf Grund der oben erwähnten Schichtbildungskinetik gedeutet.
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 468-473 
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    Materials and Corrosion/Werkstoffe und Korrosion 14 (1963), S. 540-543 
    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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