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炎热气候地区生活污水的厌氧及辅助处理——综述

Anaerobic and complementary treatment of domestic sewage in regions with hot climates--a review.

作者信息

Aiyuk Sunny, Forrez Ilse, Lieven De Kempeneer, van Haandel Adrianus, Verstraete Willy

机构信息

Laboratory of Microbial Ecology and Technology (LabMET), Ghent University, Coupure Links 653, B-9000 Ghent, Belgium.

出版信息

Bioresour Technol. 2006 Nov;97(17):2225-41. doi: 10.1016/j.biortech.2005.05.015. Epub 2005 Aug 1.

Abstract

This study presents a literature review on the treatment of domestic sewage in controlled environments having the anaerobic process and specifically the upflow anaerobic sludge blanket (UASB) concept as the core, under natural hot conditions. The UASB process application is however beset by the preponderance of suspended solids, and the paper looks at its optimization via pre- and post-treatments to curb the prevailing problems, in the light of possible discharge and re-use/recycling/resource recovery, leading to efficient environmental protection. Pre-treatment clarification could be done with ferric chloride/polyelectrolyte, so that phosphate precipitates during the process. The pre-treated liquid phase can be submitted to a high rate anaerobic process, using the simple and robust UASB technology. In a subsequent post-treatment step, ammonium can be removed by ion exchange using a zeolite column through which the wastewater percolates after leaving the anaerobic digester. The various stages can also eliminate a large fraction of the pathogens present in the raw wastewater, mainly through the pre-treatment sedimentation and the ion exchange filtration. The sludge produced in the precipitation stage can be stabilized in a conventional anaerobic digester. Integration of the different treatment steps provides a sustainable technology to treat domestic sewage under hot climate conditions.

摘要

本研究对在自然炎热条件下,以厌氧工艺特别是上流式厌氧污泥床(UASB)概念为核心的受控环境中生活污水的处理进行了文献综述。然而,UASB工艺的应用受到悬浮固体过多的困扰,本文鉴于可能的排放以及再利用/回收/资源回收,着眼于通过预处理和后处理对其进行优化,以解决普遍存在的问题,从而实现高效的环境保护。预处理澄清可使用氯化铁/聚电解质进行,以便在该过程中使磷酸盐沉淀。经过预处理的液相可采用简单且可靠的UASB技术进行高速厌氧处理。在后续的后处理步骤中,可使用沸石柱通过离子交换去除铵,废水离开厌氧消化器后会渗过该沸石柱。各个阶段还可主要通过预处理沉淀和离子交换过滤,去除原废水中存在的大部分病原体。沉淀阶段产生的污泥可在传统厌氧消化器中进行稳定化处理。不同处理步骤的整合提供了一种在炎热气候条件下处理生活污水的可持续技术。

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