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The role of in situ unit operation/process infiltration treatment on partitioning and speciation of rainfall-runoff

机译:原位单元操作/过程入渗处理在降雨径流分配和形态形成中的作用

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Management decisions regarding the potential fate and toxicity of anthropogenic metal elements requires a knowledge of metal partitioning and speciation as mediated by in situ control systems (ICS). This study focussed on Cd, Zn, Cu and Pb, common anthropogenic metal elements generated in the built environment and examined the influence of variable event-based hydrology and passive ICS by an engineered partial exfiltration reactor (PER) system on partitioning and speciation. The feasibility and efficiency of the PER as an in situ stormwater runoff control strategy to attenuate levels of metal elements was evaluated. Results indicate that higher rainfall intensity resulted in higher dissolved fraction (f(d)) values for influent Zn, Cu and Cd, but did not have a significant influence on partitioning of Pb. Speciation indicated that divalent fractions of Cd, Zn, Cu and Pb were changed marginally by the PER. Cu and Pb mainly complexed with organic matter in the influent, while carbonate complexes of these metals in the effluent significantly increased. The PER consistently and statistically reduced all loadings of Cd, Cu, Pb and Zn for all examined events, whether on a mass or concentration basis. As an unsaturated flow unit operation/process the PER can efficiently remove ionic or complexed forms of metal elements. Such UOPs are a potential quality and quantity ICS strategy for rainfall-runoff.
机译:关于人为金属元素的潜在命运和毒性的管理决策,需要掌握原位控制系统(ICS)介导的金属分配和物种形成的知识。这项研究集中于Cd,Zn,Cu和Pb,即在建筑环境中产生的常见人为金属元素,并研究了基于工程的部分渗滤反应器(PER)系统对基于事件的水文变化和被动ICS的影响,对分区和形态形成了影响。评价了PER作为降低金属元素含量的原位雨水径流控制策略的可行性和效率。结果表明,较高的降雨强度导致进水Zn,Cu和Cd的溶解分数(f(d))值较高,但对Pb的分配没有显着影响。形态表明,Cd,Zn,Cu和Pb的二价分数受PER的影响很小。铜和铅主要与进水中的有机物络合,而污水中这些金属的碳酸盐络合物显着增加。无论是质量还是浓度,PER都可以统计地减少所有事件中Cd,Cu,Pb和Zn的所有负载。作为不饱和流动单元的操作/过程,PER可以有效去除金属元素的离子形式或络合物形式。这样的UOP是用于降雨径流的潜在质和量ICS策略。

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