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The impact of sediment bioturbation by secondary organisms on metal bioavailability, bioaccumulation and toxicity to target organisms in benthic bioassays: implications for sediment quality assessment

机译:底栖生物测定法中次生生物对生物的沉积物扰动对金属生物利用度,生物累积和对目标生物的毒性的影响:对沉积物质量评估的影响

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摘要

Bioturbation alters the properties of sediments and modifies contaminant bioavailability to benthic organisms. These naturally occurring disturbances are seldom considered during the assessment of sediment quality. We investigated how the presence (High bioturbation) and absence (Low bioturbation) of a strongly bioturbating amphipod within three different sediments influenced metal bioavailability, survival and bioaccumulation of metals to the bivalve Tellina deltoidalis. The concentrations of dissolved copper decreased and manganese increased with increased bioturbation. For copper a strong correlation was observed between increased bivalve survival (53-100%) and dissolved concentrations in the overlying water. Increased bioturbation intensity resulted in greater tissue concentrations for chromium and zinc in some test sediments. Overall, the results highlight the strong influence that the natural bioturbation activities from one organism may have on the risk contaminants pose to other organisms within the local environment. The characterisation of field-based exposure conditions concerning the biotic or abiotic resuspension of sediments and the rate of attenuation of released contaminants through dilution or readsorption may enable laboratory-based bioassay designs to be adapted to better match those of the assessed environment.
机译:生物扰动改变了沉积物的性质,并改变了底栖生物的污染物生物利用度。在评估沉积物质量时,很少考虑这些自然发生的干扰。我们研究了三种不同沉积物中强生物扰动的两栖动物的存在(高生物扰动)和不存在(低生物扰动)如何影响金属的生物利用度,金属的生存和对双壳类碲藻三角藻的生物富集。随着生物扰动的增加,溶解铜的浓度降低,锰增加。对于铜,观察到双壳类存活率的增加(53-100%)与上层水中的溶解浓度之间存在很强的相关性。生物扰动强度的增加导致某些测试沉积物中铬和锌的组织浓度更高。总体而言,结果突出了一种生物体的自然生物扰动活动可能会对污染物对当地环境内其他生物体构成风险的强烈影响。与沉积物的生物或非生物再悬浮有关的基于野外的暴露条件的表征以及通过稀释或再吸收而释放的污染物的衰减速率可以使基于实验室的生物测定设计适应于更好地与评估环境相匹配。

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