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生物扰动对污染沉积物中金属释放的影响取决于金属。

Bioturbation effects on metal release from contaminated sediments are metal-dependent.

机构信息

Shenzhen Research Institute, Shenzhen and Department of Ocean Science, Kowloon, The Hong Kong University of Science and Technology (HKUST), Clear Water Bay, Hong Kong, PR China.

Centre for Environmental Contaminants Research, CSIRO Land and Water, Locked Bag 2007, Kirrawee, NSW2232, Australia.

出版信息

Environ Pollut. 2019 Jul;250:87-96. doi: 10.1016/j.envpol.2019.04.003. Epub 2019 Apr 5.

Abstract

Metal flux measurements inform the mobility, potential bioavailability and risk of toxicity for metals in contaminated sediments and therefore is an important approach for sediment quality assessment. The binding and release of metals that contribute to the net flux is strongly influenced by the presence and behaviors of benthic organisms. Here we studied the effects of bioturbation on the mobility and efflux of metals from multi-metal contaminated sediments that inhabited by oligochaete worms or both worms and bivalves. Presence of bivalves enhanced the release of Mn, Co, Ni and Zn but not for copper and chromium, which is likely due to the high affinities of copper and chromium for the solid phase. Metals in the overlying water were primarily associated with fractions smaller than 10 kDa, and the fractionation of all metals were not affected by the presence of the bivalve. Metal fluxes attributed to different processes were also distinguished, and the bioturbation induced effluxes were substantially higher than the diffusive effluxes. Temporal variabilities in the total net effluxes of Mn, Co, Ni and Zn were also observed and were attributed to the biological activities of the bivalves. Overall, the present study demonstrated that the response of different metals to the same bioturbation behavior was different, resulting in distinct mobility and fate of the metal contaminants.

摘要

金属通量测量可以提供有关污染沉积物中金属的迁移性、潜在生物可利用性和毒性风险的信息,因此是沉积物质量评估的重要方法。结合和释放金属的净通量强烈受到底栖生物的存在和行为的影响。在这里,我们研究了生物扰动对多金属污染沉积物中金属迁移性和流出的影响,这些沉积物中栖息着寡毛类蠕虫或蠕虫和双壳类动物。双壳类动物的存在增强了 Mn、Co、Ni 和 Zn 的释放,但对铜和铬没有影响,这可能是由于铜和铬对固相的高亲和力。上覆水中的金属主要与小于 10 kDa 的分数相关,并且所有金属的分馏不受双壳类动物的影响。还区分了归因于不同过程的金属通量,生物扰动引起的流出明显高于扩散流出。Mn、Co、Ni 和 Zn 的总净流出的时间变化也被观察到,并归因于双壳类动物的生物活性。总体而言,本研究表明,不同金属对相同生物扰动行为的反应不同,导致金属污染物的迁移性和归宿明显不同。

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