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  • Inorganic Chemistry  (3,763)
  • Life and Medical Sciences  (1,859)
  • Biochemistry and Biotechnology
  • Fisheries
  • 1975-1979  (6,509)
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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Environmental management 3 (1979), S. 133-144 
    ISSN: 1432-1009
    Keywords: Coastal zone Management ; Fisheries ; Marshes ; Wetlands ; Louisiana
    Source: Springer Online Journal Archives 1860-2000
    Topics: Energy, Environment Protection, Nuclear Power Engineering
    Notes: Abstract This paper examines causes and consequences of wetland losses in coastal Louisiana. Land loss is a cumulative impact, the result of many impacts both natural and artificial. Natural losses are caused by subsidence, decay of abandoned river deltas, waves, and storms. Artificial losses result from flood-control practices, impoundments, and dredging and subsequent erosion of artificial channels. Wetland loss also results from spoil disposal upon wetlands and land reclamation projects. Total land loss in Louisiana's coastal zone is at least 4,300 ha/year. Some wetlands are converted to spoil banks and other eco-systems so that wetland losses are probably two to three times higher. Annual wetland losses in the Barataria Bay basin are 2.6% of the wetland area. Human activities are the principal determinants of land loss. The present total wetland area directly lost because of canals may be close to 10% if spoil area is included. The interrelationship between hydrology, land, vegetation, substrate, subsidence, and sediment supply are complicated; however, hydrologic units with high canal density are generally associated with higher rates of land loss and the rate may be accelerating. Some cumulative impacts of land loss are increased saltwater intrusion, loss of capacity to buffer the impact of storms, and large additions of nutrients. One measure of the impact is that roughly $8–17 × 106 (U.S.A.) of fisheries products and services are lost annually in Louisiana. Viewed at the level of the hydrologic unit, land loss transcends differences in local vegetation, substrate, geology, and hydrology. Land management should therefore focus at that level of organization. Proper guideline recommendations require an appreciation of the long-term interrelations of the wetland estuarine system.
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Environmental biology of fishes 2 (1977), S. 241-259 
    ISSN: 1573-5133
    Keywords: Production ; Fisheries ; Population dynamics ; Energetics ; Fishes ; Competition
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Synopsis Production rates of seven species of fishes were determined for one year in a 0.95 ha pond. Total annual production of all fishes in the pond was 209 g m−2y−1 (after the subtraction of 16.2 g m−2y−1 of negative production). Over 90% of the production occurred in the months of June through September, with young-of-the-year fishes contributing 84% of the total. When Y of Y fishes shifted to benthic diets in the spring, the small biomass of benthos available could not sustain the large biomas of fish. Severe competition for the available food then resulted in decreased production rates for the entire fish taxocene.
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  • 3
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 108 (1975) 
    ISSN: 0009-2940
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
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  • 4
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 108 (1975), S. 445-463 
    ISSN: 0009-2940
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Chemistry of NariciclasineFrom narciclasine (2a), the acetonide 8a and its oxidation product 10 are prepared. 10 isomerizes easily to give 11. Catalytic hydrogenation of 2a yields a mixture of dihydronarci-clasines from which the pure cis- and trans-isomers 14a and 15a can be obtained via the tetraacetates. As a by-product of the hydrogenation, isonarciclasine (16a) is isolated. The relative configuration of narciclasine (as represented by formula 2a) is established by the n. m. r. spectra of 15b and 16b. Lycoricidine and margetine are shown to be identical; their configuration is as shown in formula 2b. Some biological tests are reported.
    Notes: Aus Narciclasin (2a) wird das Acetonid 8a und dessen Oxidationsprodukt 10 dargestellt. 10 wird leicht zu 11 isomerisiert. Das bei der katalytischen Hydrierung von 2a anfallende Gemisch der Dihydronarciclasine wird über die Tetraacetate in die cis- und trans-Verbindungen 14a und 15a aufgetrennt. Als Nebenprodukt der katalytischen Hydrierung entsteht Isonarciclasin (16a). Mit Hilfe der NMR-Spektren von 15b und 16b läßt sich die relative Konfiguration des Narciclasins entsprechend 2a beweisen. Lycoricidin und Margetin sind identisch und haben die Konfiguration 2b. Über einige biologische Teste wird berichtet.
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  • 5
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 108 (1975), S. 486-499 
    ISSN: 0009-2940
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Complex Chemistry of Reactive Organic Compounds, V. Reaction of Aliphatic Diazo Compound with Thermolabile Manganese ComplexesAliphatic diazo compounds react with the manganese- tetrahydrofurane complexes 1 and 2, respectively, to yield olefine, ketimine or carbene complexes: 3-diazo-2- butanone (3b) reacts with 2 under intramolecular hydride transfer to give the buten-2- one complex 7, while 3-diazocamphor (3c) leads to the 3-iminocamphor complex 8. Benzolyphenyldiazomethane (3a), diphenyldiazomethane (9a), and its p-substituted derivatives 9b-f are shown to be preliminary stages for the stable carbene complexes 4, 10, and 11, the spectra of which are discussed. The diphenylcarbene ligand can be split off by triphenylphosphine, carbon monoxide, ammonium cerium(IV) nitrate, and by thermolysis.
    Notes: Aliphatische Diazoverbindungen reagieren mit den Mangan-THF- Komplexen 1 bzw. 2 zu Olefin-, Ketimin- oder Carben-Komplexen: Während 3-Diazo-2-butanon (3b) mit 2 unter intramolekularer Hydridverschiebung den Buten-2- on-Komplex 7 ergibt, bildet 3-Diazo-campher (3c) bei Umsetzung mit 2 den 3-Iminocampher-Komplex 8. Benzoylphenyldiazomethan (3a) sowie Diphenyldiazomethan (9a) und seine p- substituierten Derivate 9b-f verhalten sich gegenüber 1 und 2 als Vorstufen für die stabilen Carben-Komplexe 4, 10 und 11, deren Spektren diskutiert werden. Der Diphenylcarben-Ligand in 11a kann mit Triphenylphosphin, Kohlenmonoxid und Ammoniumcer(IV)-nitrat sowie durch Thermolyse abgespalten werden.
    Additional Material: 7 Tab.
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  • 6
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 108 (1975), S. 528-537 
    ISSN: 0009-2940
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Photochemical Dimerisation dof 1,4-DialkynylbenzenesOn irradiation with ultraviolet light 1,4-diethynylbenzene (4a) forms blue unstable 6-ethynyl-1-(4- ethynylphenyl)azulene (5) and 6-ethynyl-2-(4-ethynylphenyl)azulene (6) besides polymers. The photolysis of 1,4-bis(phenylethynyl)benzene (4b) yields stable green 2,3-diphenyl-6-phenylethynyl-1-[4- (phenylethynyl)phenyl]azulene (9) and the isomeric naphthalene 11. Products of catalytic reduction of 5, 9, and 11 are described.
    Notes: Aus 1,4-Diäthinylbenzol (4a) entstehen bei Bestrahlung mit ultraviolettem Licht das wenig beständige, blaue 6-Äthinyl-1-(4-äthinylphenyl)azulen (5) und 6-Äthinyl-2-(4-äthinylphenyl)-azulen (6) neben polymeren Produkten. Dagegen führt die Photolyse von 1,4-Bis(phenyl-äthinyl)benzol (4b) zu dem beständigen grünen 2,3-Diphenyl-6-phenyläthinyl-1-[4-(phenyl-äthinyl)phenyl]azulen (9) und dem isomeren Naphthalin-Derivat 11. Reduktionsprodukte von 5, 9 und 11 werden beschrieben.
    Additional Material: 2 Ill.
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  • 7
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 108 (1975), S. 561-568 
    ISSN: 0009-2940
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Derivatives of Methylendioxybenzene, 40. the Synthesis of Ferrugone and PseudoferrugoneThe isoflavones ferrugone (1a) and pseudoferrugone (1a) as well as their dihydro derivatives 2a and b are prepared from the apione derivatives 5f of 6f and the chromene or chroman derivatives 4d and 3p.
    Notes: Die Isoflavone Ferrugon (1a) und Pseudoferrugon (1b) sowie die Dihydroverbindungen 2a und b werden durch Reaktion der Apionderivate5f und 6f mit den Chromen- bzw. Chroman-derivaten 4d bzw. 36p dargestellt.
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  • 8
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 108 (1975), S. 569-575 
    ISSN: 0009-2940
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Methylenedioxyhetarenes, 1. On the Preparation of 3, 4- Methylenedioxythiophene-, furan- and -pyrrole DerivativesMethylenation experiments with 3, 4-dihydroxy compounds of diethyl thiophene-, furan-, 1-phenyl-, and 1- (ethoxycarbonylmethyl)-2, 5-pyrroledicarboxylate are reported. Methylenations lead only with diethyl 3, 4-dihydroxy-2, 5- thiophenedicarboxylate (1) to the 3, 4- methylenedioxythiophene derivatives 2 and 3 with formation of diethyl dithieno[3, 4-b: 3′, 4′- g]tetroxecin-1, 3, 7, 9-tetracarboxylate (4) as by- product. The furan- (5a) and pyrrole derivatives 7a and b give the tetraethyl difuro- (6) and dipyrrolo[3, 4-b: 3′, 4′-g]tetroxecin- 1, 3, 7, 9-tetracarboxylates 8a and b, respectively.
    Notes: Es wird über Methylenierungsversuche an 3,4-Dihydroxy- Verbindungen der Thiophen-Furan-, 1-Phenyl- und 1- (Äthoxycarbonylmethyl)-2,5-pyrroldicarbonsäure- diäthylester berichtet. Die Methylenierungen führen nur beim 3,4-Dihydroxy-2,5-thiophendicarbonsäure-diäthylester (1) zu den 3,4-Methylendioxythiophen-Derivaten 2 und 3, wobei als Nebenprodukt der Dithieno[3,4-b: 3′,4′-g]tetroxecin-1,3,7,0-tetracarbonsäure- tetraäthylester (4) gebildet wird. Bei dem Furan- (5a) und den Pyrrol-Derivaten 7a und b entstehen die Difuro- (6) bzw. die Dipyrrolo[3,4- b: 3′,4′-g]tetroxecin-1,3,7,9- tetracarbonsäure-tetraäthylester 8a, b.
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  • 9
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 108 (1975), S. 618-622 
    ISSN: 0009-2940
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Reaction of N, N-Dialkyl- and N, N-Diarylsullfamides with Chlorosulfonyl IsocyanateChlorosulfonyl isocyanate reacts with N, N-dialkyl- or N, N-diarylsulfamides to give the so far unknown N-chlorosulfonyl-N′-(dialkyl- and -diarylsulfamoyl)ureas (3a-e), which may be hydrolysed to the corresponding N-(dialkyl- and -diarylsulfamoyl)ureas (4a-e). The pyrolysis of 3a-e leads to the formation of the known sulfamoyl chlorides.
    Notes: Durch Umsetzung von Chlorsulfonylisocyanat mit N, N-Dialkyl- oder N, N-Diarylsulfamiden erhält man die bisher unbekannten N-Chlorsulfonyl-N′-(dialkyl- und -diarylsulfamoyl)harnstoffe (3a-e), die sich zu N-(Dialkyl- und-Diarylsulfamoyl)harnstoffen (4a-e) hydrolysieren lassen. Die Pyrolyse von 3a-e liefert die bekannten Sulfamidsäurechloride.
    Additional Material: 1 Tab.
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  • 10
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 108 (1975), S. 657-663 
    ISSN: 0009-2940
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: On the Photochemistry of AlleneAcetophenone-sensitized irradiation of allene yields a complex mixture of products, from which the allene dimer 1, the trimers 2 and 3, and the ketones 4 and 5 have been isolated. This is in contrast to the reported thermal di- and trimerization of allene, which lead to products such as 1, 8-12. The planar allene triplet 13, derived by way of a nonvertical triplet-triplet energy transfer, presumably plays a key role in the photosensitized oligomerization of allene. Also, the formation of the ketone 5 is easily explained in terms of an attack of 13, through its central C-atom to the o-position of the acetophenone, to give 16, which cyclizes ultimately to yield 5. At 240°C, 5 undergoes fragmentation to the starting materials. The α,β-unsaturated ketone 4 arises through a [2 + 2]-photocycloaddition reaction of the 3(n,π*) state of acetophenone to methylacetylene via the oxetene intermediate 6, followed by ring-opening.
    Notes: Die acetophenon-sensibilisierte Belichtung von Allen liefert eine komplexe Produktmischung, aus der sich das Allendimere 1, die Trimeren 2 und 3 sowie die Ketone 4 und 5 isolieren lassen. Dieser Befund steht im Gegensatz zur beschriebenen thermischen Di- und Trimerisierung des Allens, die zu 1, 8-12 führt. Eine Schlüsselrolle bei der photosensibilisierten Allen-Oligomerisierung spielt vermutlich das durch nichtvertikale Triplett-Triplett-Energieübertragung gebildete planare Allen-Triplett 13. Auch die Entstehung des Bicyclo[4.2.0]octadien-Ketons 5 erklärt sich zwanglos durch einen Angriff von 13 mit seinem mittleren C-Atom in der o-Position des Acetophenons unter Bildung der Zwischenstufe 16, die Ringschluß zu 5 erfährt. Bei 240°C erleidet 5 Rückspaltung in die Ausgangskomponenten. Das α,β-ungesättigte Keton 4 ist dagegen Ergebnis einer [2 + 2]-Photocycloaddition des Acetophenons im 3(n,π*)-Zustand an Methylacetylen zum Oxeten 6 mit anschließender Ringöffnung.
    Additional Material: 1 Ill.
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