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Effect of Microbes on Contaminant Transfer in the Lake Superior Food Web

机译:微生物对苏必利尔湖食物网中污染物迁移的影响

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摘要

The partitioning of PCBs to natural populations of aquatic heterotrophic bacteria from Lake Superior was measured in both field and laboratory studies to better understand the role of bacteria and the microbial food web in persistent,bioaccumulative,toxic organic contaminant (PBT) transfer. A filtration method that separated material >1 mum from that <1 mum was used to collect and measure PCB concentrations in the bacterial fraction. We used bacterial biovolume and a conversion factor to calculate bacterial carbon,which was used to normalize PCB concentrations. The range of total PCB concentrations in the bacterial fraction (61-337 ng/g organic carbon;OC) was similar,but generally higher than that of the total paniculate fraction (36-324 ng/g OC). Measured log bioaccumulation factors (BAF_(OC),bacterial fraction;K_(oc),total particulate) were significantly greater in the bacterial fraction than in the total particulate fraction (bacterial range 6.7-7.3,total particulate range 5.8-7.0). Laboratory experiments demonstrated that a hexachlorobiphenyl reached steady state with a natural community of Lake Superior bacteria within 48 h and had a mean log BAF_(OC) of 7.5 +- 1.9. The octanol/ water partition coefficient (K_(ow)) consistently under-predicted BAF_(oc),however,the magnitude of the under-prediction was still within the range of uncertainty in food web modeling (factors of 3-9). Food web modeling and risk assessment of PBT bioaccumulation in aquatic systems could be improved by considering the microbial food web (bacteria and its protozoan grazers) as a previously unaccounted for pathway of contaminant transfer.
机译:在田间和实验室研究中都测量了多氯联苯对来自苏必利尔湖的水生异养细菌自然种群的分配,以更好地了解细菌和微生物食物网在持久性,生物累积性,有毒有机污染物(PBT)转移中的作用。使用过滤方法将大于1毫米的材料与小于1毫米的材料分开,用于收集和测量细菌级分中的PCB浓度。我们使用细菌生物量和转换因子来计算细菌碳,以标准化PCB浓度。细菌级分(61-337 ng / g有机碳; OC)中总PCB浓度的范围相似,但通常高于总颗粒级分(36-324 ng / g OC)。细菌级分中测得的对数生物富集因子(BAF_(OC),细菌级分; K_(oc),总微粒)显着大于总微粒级分(细菌范围6.7-7.3,总微粒范围5.8-7.0)。实验室实验表明,六氯联苯在48小时内达到了苏必利尔湖细菌自然群落的稳定状态,平均log BAF_(OC)为7.5±1.9。辛醇/水分配系数(K_(ow))始终低估了BAF_(oc),但是,低估的幅度仍在食物网建模的不确定性范围内(3-9的系数)。通过将微生物食物网(细菌及其原生动物放牧者)视为先前无法解释的污染物转移途径,可以改善食物网的建模和水生系统中PBT生物积累的风险评估。

著录项

  • 来源
    《Environmental Science & Technology》 |2005年第24期|p.9500-9508|共9页
  • 作者单位

    Environmental Health Sciences and Water Resources Sciences Program,Mayo Mail Code 807,University of Minnesota, Minneapolis,Minnesota,55455,and Department of Ecology and Evolutionary Biology,University of Minnesota, St. Paul,Minnesota,55108;

    Environmental Health Sciences and Water Resources Sciences Program,Mayo Mail Code 807,University of Minnesota, Minneapolis,Minnesota,55455,and Department of Ecology and Evolutionary Biology,University of Minnesota, St. Paul,Minnesota,55108;

    Environmental Health Sciences and Water Resources Sciences Program,Mayo Mail Code 807,University of Minnesota, Minneapolis,Minnesota,55455,and Department of Ecology and Evolutionary Biology,University of Minnesota, St. Paul,Minnesota,55108;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:08:12

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