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基于明矾污泥的人工湿地开发:一种创新且经济高效的废水处理系统。

Development of alum sludge-based constructed wetland: an innovative and cost effective system for wastewater treatment.

作者信息

Zhao Y Q, Babatunde A O, Zhao X H, Li W C

机构信息

Centre for Water Resources Research, School of Architecture, Landscape and Civil Engineering, University College Dublin, Belfield, Dublin, Ireland.

出版信息

J Environ Sci Health A Tox Hazard Subst Environ Eng. 2009 Jul 1;44(8):827-32. doi: 10.1080/10934520902928685.

Abstract

This article describes a research attempt to integrate the dewatered alum sludge, a residual by-product of drinking water treatment process, into a constructed wetland (CW) system for the purpose of enhancing the wastewater treatment performance, thus developing a so called alum sludge-based constructed wetland system. A multi-dimensional research project including the batch tests of phosphorus (P) adsorption onto alum sludge followed by the model CWs trials of single and multi-stage CWs, has been conducted since 2004. It has been successfully demonstrated that the alum sludge-based CW is capable of enhanced and simultaneous removal of P and organic matter (in terms of BOD5 and COD), particularly from medium and high strength wastewater. The sludge cakes act as the carrier for developing biofilm for organics removal and also serve as adsorbent to enhance P immobilization. Batch P-adsorption tests revealed that the alum sludge tested possesses excellent P-adsorption ability of 14.3 mg-P/g x sludge (in dry solids) at pH 7.0 with the adsorption favored at lower pH. The results obtained in a 4-stage treatment wetland system suggest that high removal efficiencies of 90.4% for COD, 88.0% for BOD5, 90.6% for SS, 76.5% for TN and 91.9% for PO4(3-)-P under hydraulic loading of 0.36 m3/m2 x d can be achieved. The field demonstration study of this pioneering development is now underway.

摘要

本文描述了一项研究尝试,即将饮用水处理过程中的残余副产品——脱水明矾污泥,整合到人工湿地(CW)系统中,以提高废水处理性能,从而开发出一种所谓的基于明矾污泥的人工湿地系统。自2004年以来,已开展了一个多维度的研究项目,包括对明矾污泥吸附磷(P)的批次试验,以及单级和多级人工湿地的模型试验。已成功证明,基于明矾污泥的人工湿地能够增强并同时去除磷和有机物(以生化需氧量(BOD5)和化学需氧量(COD)计),特别是从中高强度废水中去除。污泥饼充当了用于去除有机物的生物膜生长的载体,并且还作为吸附剂来增强磷的固定。批次磷吸附试验表明,所测试的明矾污泥在pH值为7.0时具有14.3毫克磷/克×污泥(干固体)的优异磷吸附能力,且在较低pH值下更有利于吸附。在一个四级处理湿地系统中获得的结果表明,在水力负荷为0.36立方米/平方米×天的情况下,对COD的去除效率高达90.4%,对BOD5的去除效率为88.0%,对悬浮物(SS)的去除效率为90.6%,对总氮(TN)的去除效率为76.5%,对磷酸根离子(PO4(3-)-P)的去除效率为91.9%。这一开创性发展的现场示范研究正在进行中。

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