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饮用水储存罐沉积物的物理和成分特征

Physical and compositional characteristics of drinking water storage tank sediment.

作者信息

Lytle Darren A, Muhlen Christy, Lippitt Scott H, Crockett Evan, Achtemeier Riley

机构信息

U.S. Environmental Protection Agency, ORD, CESER, DWQB, Cincinnati, Ohio, USA.

College of Engineering and Applied Science, University of Cincinnati, Cincinnati, Ohio, USA.

出版信息

AWWA Water Sci. 2024 May;6(3). doi: 10.1002/aws2.1371.

Abstract

Thirty-one drinking water storage tank sediment samples were collected in 13 states, 17 distribution systems, and 29 tanks over the course of 4 years. Sediment samples were characterized for elemental composition and physical properties, which were found to be inconsistent both between samples of the same distribution system and across geographical regions. Differences between samples from the same tank also indicated spatial differences in sediment composition within storage tanks. Color was found to qualitatively trend toward darker or lighter depending on the concentration of a few elements (iron, aluminum, calcium, and magnesium). Particle shape varied between samples though uniformity increased as the particle size decreased. The average sediment particle density in this study (1.99 g/cm) was lower than the density of a widely used sediment resuspension model silica sand (2.65 g/cm), possibly resulting in underestimation of resuspension in models. This study suggests that sediment properties are highly site and storage tank specific, necessitating individual characterization to achieve greatest accuracy in storage tank suspension and draining model inputs.

摘要

在4年的时间里,从13个州、17个供水系统和29个水箱中采集了31份饮用水储存箱沉积物样本。对沉积物样本的元素组成和物理性质进行了表征,结果发现,同一供水系统的样本之间以及不同地理区域的样本之间这些特征并不一致。来自同一水箱的样本之间的差异也表明储存箱内沉积物组成存在空间差异。根据几种元素(铁、铝、钙和镁)的浓度,颜色在质量上呈现出变深或变浅的趋势。不同样本之间的颗粒形状各不相同,但随着粒径减小,均匀性增加。本研究中沉积物颗粒的平均密度(1.99 g/cm)低于广泛使用的沉积物再悬浮模型中硅砂的密度(2.65 g/cm),这可能导致模型中对再悬浮的低估。这项研究表明,沉积物性质具有高度的地点和储存箱特异性,需要进行单独表征,以便在储存箱悬浮和排水模型输入中获得最高的准确性。

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