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研究现状:环境途径与食物链转移

State of research: environmental pathways and food chain transfer.

作者信息

Vaughan B E

出版信息

Environ Health Perspect. 1984 Mar;54:353-71. doi: 10.1289/ehp.8454353.

Abstract

Data on the chemistry of biologically active components of petroleum, synthetic fuel oils, certain metal elements and pesticides provide valuable generic information needed for predicting the long-term fate of buried waste constituents and their likelihood of entering food chains. Components of such complex mixtures partition between solid and solution phases, influencing their mobility, volatility and susceptibility to microbial transformation. Estimating health hazards from indirect exposures to organic chemicals involves an ecosystem's approach to understanding the unique behavior of complex mixtures. Metabolism by microbial organisms fundamentally alters these complex mixtures as they move through food chains. Pathway modeling of organic chemicals must consider the nature and magnitude of food chain transfers to predict biological risk where metabolites may become more toxic than the parent compound. To obtain predictions, major areas are identified where data acquisition is essential to extend our radiological modeling experience to the field of organic chemical contamination.

摘要

关于石油、合成燃料油、某些金属元素和农药的生物活性成分的化学数据,为预测埋藏废物成分的长期归宿及其进入食物链的可能性提供了有价值的一般信息。这类复杂混合物的成分在固相和溶液相之间分配,影响其迁移性、挥发性和微生物转化的敏感性。评估间接接触有机化学品对健康的危害需要采用生态系统方法来理解复杂混合物的独特行为。微生物的代谢在有机化学品通过食物链移动时从根本上改变了这些复杂混合物。有机化学品的路径建模必须考虑食物链转移的性质和规模,以预测代谢物可能比母体化合物毒性更大时的生物风险。为了获得预测结果,确定了主要领域,在这些领域中,数据采集对于将我们的放射学建模经验扩展到有机化学污染领域至关重要。

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