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浮游植物中疏水性有机化学物质生物浓缩的有限可逆性。

Limited reversibility of bioconcentration of hydrophobic organic chemicals in phytoplankton.

机构信息

Aquatic Ecology and Water Quality Management Group, Department of Environmental Sciences, Wageningen University, P.O. Box 47, 6700 AA Wageningen, The Netherlands.

出版信息

Environ Sci Technol. 2014 Jul 1;48(13):7341-8. doi: 10.1021/es5003549. Epub 2014 Jun 18.

Abstract

Aging, reversibility, and desorption rates for the binding of hydrophobic chemicals (HOC) to phytoplankton cells have not been directly measured. Here the effect of bioconcentration time on subsequent desorption of hexachlorobenzene (HCB) and polychlorinated biphenyls (PCBs) was studied for the alga Monoraphidium minutum. Cell suspensions were exposed to HCB and PCBs spanning a range of log Kow values of 5.7 to 8.2, for 0.13 to 14 d. Subsequently, reversibility and desorption rates were assessed by extracting the chemicals from the cells using infinite sink extractions with Tenax beads or Empore disks employed in the cell suspension. Uptake was biphasic with constant relative contributions of fast surface sorption. Desorption was biphasic too and well fitted to a first order two compartment model. Increasing exposure times resulted in increasing slowly desorbing chemical fractions and decreased desorption rates from these fractions. For the most hydrophobic PCBs, slowly desorbing fractions were >80-90%, whereas desorption half-lives from these fractions ranged up to 120 days. The slow desorption rates directly prove that bioconcentration to algae can be rate limited and imply that already after a few hours of exposure, HOCs may become practically unavailable for repartitioning.

摘要

老化、可逆性以及疏水性化学物质(HOC)与浮游植物细胞结合的解吸速率尚未被直接测量。本研究以单枝藻(Monoraphidium minutum)为模型,考察了生物浓缩时间对随后解吸六氯苯(HCB)和多氯联苯(PCBs)的影响。细胞悬浮液暴露于 HCB 和 PCBs 中,这些化合物的 log Kow 值范围为 5.7 至 8.2,暴露时间为 0.13 至 14 天。随后,通过使用 Tenax 珠或 Empore 盘进行无限吸收提取,从细胞中提取化学物质,评估了化学物质的可逆性和解吸速率。吸收呈双相,快速表面吸附的相对贡献恒定。解吸也呈双相,很好地符合一级两室模型。增加暴露时间会导致缓慢解吸的化学物质分数增加,并且这些分数的解吸速率降低。对于疏水性最强的 PCBs,缓慢解吸的分数>80-90%,而这些分数的解吸半衰期高达 120 天。缓慢的解吸速率直接证明了藻类的生物浓缩可能受到速率限制,这意味着在暴露几个小时后,HOC 可能实际上无法再进行分配。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44a7/6863620/b892104d2602/es5003549_0002.jpg

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