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水力压裂回注水和产出水中复杂的生物累积故事:有机化合物在颤蚓无机累积中的作用。

A complex bioaccumulation story in flowback and produced water from hydraulic fracturing: The role of organic compounds in inorganic accumulation in Lumbriculus variegatus.

机构信息

Department of Biological Sciences, University of Alberta, Edmonton T6G 2E9, Alberta, Canada.

Department of Earth and Atmospheric Sciences, University of Alberta, Edmonton T6G 2E3, Alberta, Canada.

出版信息

J Hazard Mater. 2021 Jul 15;414:125525. doi: 10.1016/j.jhazmat.2021.125525. Epub 2021 Feb 25.

DOI:10.1016/j.jhazmat.2021.125525
PMID:33677315
Abstract

Hydraulic fracturing creates large volumes of flowback and produced water (FPW). The waste is a complex mixture of organic and inorganic constituents. Although the acute toxicity of FPW to freshwater organisms has been studied, few have attempted to discern the interaction between organic and inorganic constituents within this matrix and its role in toxicity. In the present study, bioaccumulation assays (7-d uptake and 7-d elimination period) with FPW (1% dilution) were conducted with the freshwater oligochaete, Lumbriculus variegatus, to evaluate the toxicokinetics of inorganic elements. To evaluate the interacting role of organics, bioaccumulation of elements in unmodified FPW was compared to activated carbon treated FPW (AC-modified). Differences in uptake and elimination rates as well as elimination steady state concentrations between unmodified and AC-modified treatments indicated that the organics play an important role in the uptake and depuration of inorganic elements in FPW. These differences in toxicokinetics between treatments aligned with observed growth rates in the worms which were higher in the AC-modified treatment. Whether growth differences resulted from increased accumulation and changes in toxicokinetic rates of inorganics or caused by direct toxicity from the organic fraction of FPW itself is still unknown and requires further research.

摘要

水力压裂会产生大量的返排液和产出水(FPW)。这些废物是有机和无机成分的复杂混合物。尽管已经研究了 FPW 对淡水生物的急性毒性,但很少有人试图辨别这种基质中有机和无机成分之间的相互作用及其在毒性中的作用。在本研究中,使用淡水寡毛类动物(Lumbriculus variegatus)进行了 FPW(1%稀释)的生物累积测定(7 天摄取和 7 天消除期),以评估无机元素的毒代动力学。为了评估有机物的相互作用作用,将元素在未经修饰的 FPW 中的生物累积与经过活性炭处理的 FPW(AC 修饰)进行了比较。未修饰和 AC 修饰处理之间的摄取和消除率以及消除稳态浓度的差异表明,有机物在 FPW 中无机元素的摄取和净化中起着重要作用。这些处理之间毒代动力学的差异与蠕虫的观察生长率一致,AC 修饰处理中的生长率更高。生长差异是由于无机物质的积累增加和毒代动力学速率的变化引起的,还是由于 FPW 有机部分的直接毒性引起的,目前尚不清楚,需要进一步研究。

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