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Membrane fouling controlled by coagulation/adsorption during direct sewage membrane filtration (DSMF) for organic matter concentration

机译:在直接污水膜过滤(DSMF)期间通过凝结/吸附来控制膜结垢以提高有机物浓度

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Unlike the role of the membrane in a membrane bioreactor, which is designed to replace a sediment tank, direct sewage membrane filtration (DSMF), with the goal of concentrating organic matters, is proposed as a pretreatment process in a novel sewage treatment concept. The concept of membrane-based pretreatment is proposed to divide raw sewage into a concentrated part retaining most organics and a filtered part with less pollutant remaining, so that energy recovery and water reuse, respectively, could be realized by post-treatment. A pilot-scale experiment was carried out to verify the feasibility of coagulant/adsorbent addition for membrane fouling control, which has been the main issue during this DSMF process. The results showed that continuous coagulant addition successfully slowed down the increase in filtration resistance, with the resistance maintained below 1.0 x 10(13) m(-1) in the first 70 hr before a jump occurred. Furthermore, the adsorbent addition contributed to retarding the occurrence of the filtration resistance jump, achieving simultaneous fouling control and chemical oxygen demand (COD) concentration improvement. The final concentrated COD amounted to 7500 mg/L after 6 days of operation. (C) 2015 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:不同于膜在旨在代替沉淀池的膜生物反应器中的作用,以浓缩有机物为目标的直接污水膜过滤(DSMF)被建议作为一种新型污水处理概念的预处理方法。提出了基于膜的预处理的概念,将原污水分为保留大部分有机物的浓缩部分和保留较少污染物的过滤部分,从而可以通过后处理分别实现能量回收和水再利用。进行了中试规模的实验,以验证添加混凝剂/吸附剂用于膜污染的可行性,这是该DSMF过程中的主要问题。结果表明,连续添加凝结剂成功地减缓了过滤阻力的增加,在发生跳变前的前70小时,阻力保持在1.0 x 10(13)m(-1)以下。此外,吸附剂的添加有助于阻止过滤阻力跳跃的发生,同时实现了结垢控制和化学需氧量(COD)浓度的提高。运转6天后,最终浓缩的COD达到7500 mg / L。 (C)2015年中国科学院生态环境研究中心。由Elsevier B.V.发布

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