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Biogeochemical processes governing exposure and uptake of organic pollutant compounds in aquatic organisms.

机译:控制水生生物中有机污染物化合物的暴露和吸收的生物地球化学过程。

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摘要

This paper reviews current knowledge of biogeochemical cycles of pollutant organic chemicals in aquatic ecosystems with a focus on coastal ecosystems. There is a bias toward discussing chemical and geochemical aspects of biogeochemical cycles and an emphasis on hydrophobic organic compounds such as polynuclear aromatic hydrocarbons, polychlorinated biphenyls, and chlorinated organic compounds used as pesticides. The complexity of mixtures of pollutant organic compounds, their various modes of entering ecosystems, and their physical chemical forms are discussed. Important factors that influence bioavailability and disposition (e.g., organism-water partitioning, uptake via food, food web transfer) are reviewed. These factors include solubilities of chemicals; partitioning of chemicals between solid surfaces, colloids, and soluble phases; variables rates of sorption, desorption; and physiological status of organism. It appears that more emphasis on considering food as a source of uptake and bioaccumulation is important in benthic and epibenthic ecosystems when sediment-associated pollutants are a significant source of input to an aquatic ecosystem. Progress with mathematical models for exposure and uptake of contaminant chemicals is discussed briefly.
机译:本文回顾了目前有关水生生态系统中污染物有机化学物质的生物地球化学循环的知识,重点是沿海生态系统。人们倾向于讨论生物地球化学循环的化学和地球化学方面,并且偏重于疏水性有机化合物,例如多核芳香烃,多氯联苯和用作农药的氯化有机化合物。讨论了污染物有机化合物混合物的复杂性,它们进入生态系统的各种方式以及它们的物理化学形式。审查了影响生物利用度和处置的重要因素(例如,生物体水分配,食物摄取,食物网转移)。这些因素包括化学物质的溶解度;在固体表面,胶体和可溶性相之间分配化学物质;可变的吸附率,解吸率;和生物的生理状态。当底栖和表皮生态系统中与沉积物相关的污染物是水生生态系统重要的投入来源时,似乎更多地强调将食物视为摄取和生物蓄积的来源很重要。简要讨论了污染物化学物质接触和吸收的数学模型的进展。

著录项

  • 作者

    Farrington, J W;

  • 作者单位
  • 年度 1991
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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