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基于活性炭的薄层层盖在受 PCB 污染的北方湖泊中的现场和实验室联合研究。

A Combined Field and Laboratory Study on Activated Carbon-Based Thin Layer Capping in a PCB-Contaminated Boreal Lake.

机构信息

Department of Environmental and Biological Sciences , University of Eastern Finland , P.O. Box 111, FI-80101 Joensuu , Finland.

出版信息

Environ Sci Technol. 2018 Apr 17;52(8):4702-4710. doi: 10.1021/acs.est.7b05114. Epub 2018 Apr 6.

Abstract

The in situ remediation of aquatic sediments with activated carbon (AC)-based thin layer capping is a promising alternative to traditional methods, such as sediment dredging. Applying a strong sorbent like AC directly to the sediment can greatly reduce the bioavailability of organic pollutants. To evaluate the method under realistic field conditions, a 300 m plot in the PCB-contaminated Lake Kernaalanjärvi, Finland, was amended with an AC cap (1.6 kgAC/m). The study lake showed highly dynamic sediment movements over the monitoring period of 14 months. This led to poor retention and rapid burial of the AC cap under a layer of contaminated sediment from adjacent sites. As a result, the measured impact of the AC amendment was low: Both the benthic community structure and PCB bioaccumulation were similar on the plot and in surrounding reference sites. Corresponding follow-up laboratory studies using Lumbriculus variegatus and Chironomus riparius showed that long-term remediation success is possible, even when an AC cap is covered with contaminated sediment. To retain a measurable effectiveness (reduction in contaminant bioaccumulation), a sufficient intensity and depth of bioturbation is required. On the other hand, the magnitude of the adverse effect induced by AC correlated positively with the measured remediation success.

摘要

用基于活性炭 (AC) 的薄层覆盖物原位修复水下水体沉积物是传统方法(如沉积物疏浚)的一种很有前途的替代方法。直接将强吸附剂如 AC 应用于沉积物中,可以大大降低有机污染物的生物可利用性。为了在实际现场条件下评估该方法,在芬兰受 PCB 污染的 Kernaalanjärvi 湖中对 300 米的试验区进行了 AC 覆盖物(1.6kgAC/m)的添加。研究湖在 14 个月的监测期间表现出高度动态的沉积物运动。这导致 AC 覆盖物在受污染沉积物的一层下的保留和快速埋藏效果不佳,而来自相邻地点的受污染沉积物。因此,测量到的 AC 改良的影响较低:在试验区和周围的参考点上,底栖生物群落结构和 PCB 生物累积都相似。相应的后续实验室研究使用了斑驳多乳突蚯蚓和摇蚊幼虫,表明即使 AC 覆盖物被污染的沉积物覆盖,长期修复也是可能成功的。为了保持可测量的效果(减少污染物生物累积),需要足够的强度和深度的生物搅动。另一方面,AC 引起的不利影响的程度与测量的修复效果呈正相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1e6/6150667/a5bcd1cf2497/es-2017-05114g_0001.jpg

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