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用于地表水净化的受污染悬浮固体过滤处理

Filtration of contaminated suspended solids for the treatment of surface water.

作者信息

Mulligan Catherine N, Davarpanah Neginmalak, Fukue Masaharu, Inoue Tomohiro

机构信息

Department of Building, Civil and Environmental Engineering, Concordia University, 1455 de Maisonneuve Blvd. W, Montreal, Canada H3G 1M8.

出版信息

Chemosphere. 2009 Feb;74(6):779-86. doi: 10.1016/j.chemosphere.2008.10.055. Epub 2008 Dec 11.

Abstract

As few technologies exist worldwide for the treatment of contaminated surface water, a new approach is currently under development consisting of an in situ water treatment system based on a floating filtration process for adsorbed contaminants such as heavy metals. Laboratory filtration tests were performed for the removal of contaminated suspended solids (SS) from surface water. SS, chemical oxygen demand (COD), and organic carbon (OC) were monitored. Of the four filters (two non-woven geotextiles, a woven geotextile and a sand filter) evaluated, filter 1 (a non-woven geotextile) was the most effective for removal % of the total suspended solids. The results demonstrated excellent efficiency by filter No. 1, for reducing turbidity by 93-98%, as well as SS by up to 98.9% and COD by 65-71% for three sites with initial turbidities of 70, 20, and 120 NTU, respectively. The level of heavy metal removal was 98.9% due the heavy metal content of the suspended solids (60 mg kg(-1) of Cu, 90 mg kg (-1) of Ni, 130 mg kg(-1) of Zn, 200 mg kg(-1) of Cr, and 80 mg kg(-1) of Pb). The development of this technology could potentially protect the public and aquatic plants and animals from dangerous contaminants such as heavy metals adsorbed onto the suspended solids.

摘要

由于全球范围内用于处理受污染地表水的技术很少,目前正在开发一种新方法,该方法由基于浮动过滤工艺的原位水处理系统组成,用于处理吸附的重金属等污染物。进行了实验室过滤试验,以去除地表水中受污染的悬浮固体(SS)。对SS、化学需氧量(COD)和有机碳(OC)进行了监测。在所评估的四种过滤器(两种非织造土工布、一种织造土工布和一种砂滤器)中,过滤器1(一种非织造土工布)对总悬浮固体的去除率最高。结果表明,对于初始浊度分别为70、20和120 NTU的三个地点,过滤器1在降低浊度方面效率极高,可降低93-98%,SS去除率高达98.9%,COD去除率为65-71%。由于悬浮固体中的重金属含量(铜60 mg kg(-1)、镍90 mg kg (-1)、锌130 mg kg(-1)、铬200 mg kg(-1)和铅80 mg kg(-1)),重金属去除率为98.9%。这项技术的开发有可能保护公众以及水生植物和动物免受危险污染物的侵害,例如吸附在悬浮固体上的重金属。

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