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Environmental quality and safety最新文献

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Methods for routine mutagenicity screening in mammals and man. 哺乳动物和人的常规诱变性筛查方法。
Pub Date : 1975-01-01
G Röhrborn
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引用次数: 0
Identification of carcinogenic, mutagenic and teratogenic substances in the environment. 环境中致癌、致突变和致畸物质的鉴定。
Pub Date : 1975-01-01
L Fishbein
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引用次数: 0
Significance of mutagenicity testing on pesticides. 农药致突变性试验的意义。
Pub Date : 1975-01-01
Y Shirasu

Our mutagenicity screening studies on pesticides totalling 165 have newly revealed microbial mutagenic activity in the following four compounds: 2,4-dinitrophenyl thiocyanate (NBT), sodium p-dimethylamino-azobenzene diazosulfonate (DAPA), 5-nitro-1-napthonitrile (NNN) and N-(1,1,2,2-tetrachloroethylthio)-4-cyclohexene-1, 2-dicarboximide (Captafol). Significance of mutagenicity testing on pesticides is discussed from the toxicological point of view. No definite relationship has been proven among mutagenicity, carcinogenicity and teratogenicity of pesticides although there are some correlations in these activities of several pesticides. Further studies are needed to clarify the significance of mutagenicity testing in toxicological areas.

我们对165种农药进行了诱变性筛选,新发现以下4种化合物具有致微生物诱变活性:2,4-二硝基苯硫氰酸酯(NBT)、对二甲氨基偶氮苯重氮磺酸钠(DAPA)、5-硝基-1-萘腈(NNN)和N-(1,1,2,2-四氯乙基硫)-4-环己烯- 1,2 -二碳酰亚胺(Captafol)。从毒理学的角度论述了农药致突变性试验的意义。虽然几种农药的致突变性、致癌性和致畸性之间存在一定的相关性,但尚未证实它们之间存在明确的关系。需要进一步的研究来阐明致突变性试验在毒理学领域的意义。
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引用次数: 0
Assessing toxicological properties of organotin Compounds. 评估有机锡化合物的毒理学特性。
Pub Date : 1975-01-01
D D McCollister, A E Schober
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引用次数: 0
Transformations of environmental contaminants by light. 光对环境污染物的转化。
Pub Date : 1975-01-01
D G Crosby, J T Leffingwell, K W Moilanen
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引用次数: 0
The fate of PCB's in the environment. PCB在环境中的命运。
Pub Date : 1975-01-01
R Tatsukawa, T Wakimoto
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引用次数: 0
Technology assessment for environmental contamination of pesticides. 农药环境污染技术评价。
Pub Date : 1975-01-01
E M Mrak
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引用次数: 0
Impact of chemicals on the environment. 化学品对环境的影响。
Pub Date : 1975-01-01
H Gysin
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引用次数: 0
Degradation of organophosphorus pesticides in soils with special reference to unaerobic soil conditions. 有机磷农药在土壤中的降解,特别是在非需氧土壤条件下。
Pub Date : 1975-01-01
C Tomizawa

Organophosphorus pesticides are generally transformed by the reactions including oxidation, reduction, hydrolysis, hydroxylation, dehydrochlorination, dealkylation, methylation, isomerization, and conjugate formation. Although the degradation process of pesticides in soils is complicated, main factors may be soil constituents, soil microflora, and chemical structures of pesticides. Chemical structures are especially important for soil metabolism of organophosphorus pesticides, because the priority of the reactions mentioned above is decided. Although organophosphorus pesticides are generally hydrolyzable, the order of hydrolysis varies with chemical structures. It might be said that the slower the hydrolysis rate of the molecule, the more the possibility to be attacked by reactions other than hydrolysis. In such cases, oxidation and reduction are primarily important for the degradation of organophosphorus pesticides. Flooded soils in paddy fields give a favourable environment for the reduction of organophosphorus pesticides having labile substituents such as nitro groups. The threshold of reduction in-flooded soil is expressed as redox potential. Eh, the Eh of paddy soil fluctuates to a great extent, depending on seasons and soil types, especially organic matter content. The result of laboratory experiments with fenthion, disulfoton, Kitazin P (0,0-diisopropyl S-benzyl phosphorothiolate), edifenphos (0-ethyl S,S-diphenyl phosphorodithiolate) and amiprophos (0-ethyl 0-(2-nitro-p-tolyl) N-isopropyl phosphoramidothionate) suggested the participation of several factors mentioned above in the degradation of organophosphorus pesticides.

有机磷农药通常通过氧化、还原、水解、羟基化、脱氯化氢、脱烷基、甲基化、异构化和共轭形成等反应转化。虽然农药在土壤中的降解过程是复杂的,但主要因素可能是土壤成分、土壤微生物区系和农药的化学结构。化学结构对有机磷农药的土壤代谢尤为重要,因为上述反应的优先级是决定的。虽然有机磷农药通常是可水解的,但水解的顺序因化学结构而异。可以说,分子的水解速率越慢,受到非水解反应攻击的可能性就越大。在这种情况下,氧化和还原对有机磷农药的降解至关重要。水田淹水土壤为硝基等不稳定取代基有机磷农药的减少提供了有利的环境。淹水土壤的还原阈值表示为氧化还原电位。水稻土的Eh随季节和土壤类型,特别是有机质含量的不同,有较大的波动。通过对倍硫磷、二硫磷、Kitazin P(0,0-二异丙基S-苄基磷硫代盐)、edifenphos(0-乙基S-二苯基磷硫代盐)和amprophos(0-乙基0-(2-硝基对甲苯基)n -异丙基磷硫代盐)的室内实验表明,上述几种因素参与了有机磷农药的降解。
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引用次数: 0
Transformation of carbamate insecticides in the environment. 氨基甲酸酯类杀虫剂在环境中的转化。
Pub Date : 1975-01-01
J Miyamoto
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引用次数: 0
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Environmental quality and safety
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