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Metal Element and Particulate Relationships at the Upper End of an Urban Watershed: Investigations of Disproportionate Delivery and Control

机译:城市流域上端的金属元素和微粒关系:对不成比例的交付和控制的调查

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While there is little debate regarding the generation of anthropogenic metal elements and particulates in urban rainfall-runoff, there is significant debate regarding the delivery and solidphase distribution of metal elements. Debates regarding delivery concepts such as mass or concentration first-flush and regarding the distribution of metal elements mass and concentration across the particle gradation continue. Beyond these debates are the larger issues of nonstructural vs. structural controls vs. source controls, the fate and management of such constituents and emerging concepts such mass trading and offsetting. This paper reviews concepts regarding the delivery of metal element and particulate mass; and distribution of both, since these issues are fundamental to control, fate, management and trading/offsetting. Urban storm water mobilizes a wide gradation of entrained anthropogenic solids that are capable mediating the equilibrium partitioning of metal elements resulting in a distribution of metal element mass across the gradation. For residence times, flow characteristics, infrastructure interactions, particle granulometry and rainfall-runoff chemistry that result in partitioning equilibration (1 - 12 hours), metals have the potential to partition across the particle gradation. In general results indicate that particle specific surface area (SSA) increased (by measurement and definition) with decreasing particle size for all gradations. In contrast, total particle surface area (SA) decreased with decreasing particle size. Particulate-bound concentrations (μg/g) of Zn, Cu, Cd and Pb increased (by measurement and definition) with decreasing particle size. Although the gradation of particles ranged from less than 1 μm to greater than 10,000 μm, most of the metal mass is associated with the sand-size fraction of particles. Results are useful inputs when considering structural treatment design as a function of design particle size, non-structural control, fate, TMDL development, stormwater management and trading/offsetting. With respect to delivery, this study investigates the phase-specific temporal delivery of Cd, Cu, Pb and Zn at a paved transportation land use site in Baton Rouge, LA as a function of hydrology. Events were characterized as either mass or flow-limited. Results indicate that mass-limited events generally exhibited similar but temporally disproportionate mass deliveries for Cd, Cu, Pb and Zn and an initial rapidly declining concentration profile. In contrast, flow-limited events produced mass deliveries that were strongly proportional to the hydrograph. In contrast to other sites of similar land use and, despite a site mean rainfall pH of 4.3, partitioning of Cd, Cu, Pb and Zn in runoff was predominately to the particulate fraction.
机译:虽然有关城市降雨径流的人为金属元素和颗粒的产生几乎没有争论,但有关金属元素的输送和固相分布存在重大争论。关于传递概念的争论,如质量或浓度的第一冲洗并关于金属元素质量的分布和颗粒渐变的浓度继续。除了这些辩论之外,是非结构控制的较大问题与结构控制,这些成员的命运和管理,以及新兴概念此类大众交易和抵消。本文评论了关于金属元素和颗粒物质的概念;并分配两者,因为这些问题是控制,命运,管理和交易/抵消的基础。城市灾害水动力较宽的夹带的人为固体,能够介导金属元素的平衡分配,从而导致渐变的金属元素质量的分布。对于停留时间,流动特性,基础设施相互作用,粒子粒度计和降雨 - 径流化学,导致分配平衡(1 - 12小时),金属有可能跨越颗粒灰度分配。一般结果表明,颗粒特异性表面积(SSA)增加(通过测量和定义),其逐渐降低了所有灰度的粒度。相反,随着粒度的降低而降低,总粒子面积(SA)降低。 Zn,Cu,Cd和Pb的颗粒状浓度(μg/ g)增加(通过测量和定义),粒度降低。尽管颗粒的灰度范围范围为小于1μm至大于10,000μm,但大多数金属质量与颗粒的砂尺寸部分相关。结果在考虑结构粒度,非结构控制,命运,TMDL开发,雨水管理和交易/抵消时,在考虑结构处理设计时是有用的输入。关于递送,本研究研究了在巴顿胭脂,LA的铺设的运输土地使用现场CD,Cu,Pb和Zn的相相时间递送作为水文的功能。事件的特征是质量或流量限制。结果表明,质量有限的事件通常表现出类似但时间不成比例的CD,Cu,Pb和Zn的质量递送以及初始迅速下降的浓度谱。相反,流动限制事件产生了与水文编程强烈成比例的质量递送。与类似土地使用的其他网站相比,尽管存在4.3的场地平均降雨pH,但径流中的CD,Cu,Pb和Zn的分配主要是颗粒部分。

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