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在垃圾渗滤液收集池评估痕量金属生物利用度和迁移过程中,用被禁锢的摇蚊幼虫作为模式生物。

Encaged Chironomus riparius larvae in assessment of trace metal bioavailability and transfer in a landfill leachate collection pond.

机构信息

UMR CNRS 6249 Chrono-Environnement, University of Bourgogne Franche-Comté, Route de Gray, 25030, Besançon Cedex, France.

Thi Qar University, Al Nasiriyah, IQ-64001, Iraq.

出版信息

Environ Sci Pollut Res Int. 2018 Apr;25(12):11303-11312. doi: 10.1007/s11356-016-8261-1. Epub 2017 Jan 9.

Abstract

Household wastes may constitute a vector of environmental contamination when buried, in particular through degradation and production of leachates containing significant trace metal (TM) concentrations that may constitute a serious risk to biota. The objectives of this study were to assess the bioavailability and transfer potential of various TMs present in water and sediments in a reservoir receiving landfill leachates. An active biomonitoring approach was adopted consisting of exposing naive laboratory organisms in cages deployed in the field. Aquatic insects such as Chironomus riparius larvae are good candidates since they represent key organisms in the trophic functioning of aquatic ecosystems. The results show that water, suspended particles, and sediments were significantly contaminated by various TMs (As, Cd, Cu, Ni, Pb, and Zn). Their contribution to the transfer of TMs depends, however, on the specific element considered, e.g., Cd in sediments or Pb in both suspended particles and sediments. The internal fate of TMs was investigated according to their fractionation between an insoluble and a cytosolic fraction. This approach revealed different detoxification strategies capable of preventing the induction of deleterious effects at the individual scale. However, the accumulation of several TMs in C. riparius larvae tissues may also represent a significant load potentially transferable to higher trophic levels.

摘要

当生活垃圾被掩埋时,可能会成为环境污染的一个载体,特别是通过降解和产生含有大量痕量金属 (TM) 的浸出液,这可能对生物群构成严重威胁。本研究的目的是评估接收垃圾渗滤液的水库中水中和沉积物中各种 TM 的生物可利用性和迁移潜力。采用了一种主动生物监测方法,即将在野外部署的笼子中的无经验实验室生物暴露在其中。水栖昆虫,如摇蚊幼虫,是很好的候选生物,因为它们是水生生态系统营养功能的关键生物。结果表明,水、悬浮颗粒和沉积物受到各种 TM(As、Cd、Cu、Ni、Pb 和 Zn)的严重污染。然而,它们对 TM 迁移的贡献取决于所考虑的特定元素,例如,Cd 在沉积物中或 Pb 在悬浮颗粒和沉积物中。根据 TM 在不溶性和胞质部分之间的分馏,研究了 TM 的内部命运。这种方法揭示了不同的解毒策略,能够防止个体尺度上有害影响的诱导。然而,几种 TM 在摇蚊幼虫组织中的积累也可能代表一种潜在的大量负荷,可能会转移到更高的营养级。

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