在实验室规模的MBR中使用生物载体和沸石缓解膜污染

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引用次数: 3

摘要

膜生物反应器(MBR)技术具有出水质量高、去除病原体能力强、避免使用化学品消毒等一系列环境友好型优势,应用于废水处理时可被视为一种环境友好型技术。然而,膜污染仍然是一个主要的缺点,阻碍了它在城市或工业废水处理中的广泛应用。添加剂(即吸附剂、生物载体等)的使用被认为是近年来膜污染控制的主要策略之一。本研究考察了生物载体的添加以及沸石粉对实验室规模MBR可逆和不可逆膜污染的影响。以高强度合成城市污水(BOD5约为1000 mg/L)为底物,采用平板微滤膜,以17 L/m2h的通量进行固(生物质)液分离。结果表明,沸石的加入主要有助于缓解不可逆污染,对可逆污染几乎没有影响,而生物载体的加入则起到相反的作用。此外,实验结果表明,实验室规模的MBR系统运行成功,处理了高强度的合成城市废水,在有机物和铵的去除率方面都达到了很高的水平(超过98%)。
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The use of bio-carriers and zeolite in a lab-scale MBR for membrane fouling mitigation
The Membrane Bio-Reactor (MBR) technology offers a series of environmentally-friendly advantages, such as high quality effluent, pathogens removal capacity and avoided use of chemicals for disinfection, allowing it to be regarded as an environmentally friendly technology, when applied for wastewater treatment. However, membrane fouling still remains a major drawback, preventing its widespread application for municipal or industrial wastewater treatment. The use of additives (i.e. adsorbents, bio-carriers etc.) is considered to be among the major strategies implemented for membrane fouling control over the last few years. The present work examines the influence of bio-carriers addition, as well as of zeolite powder on the reversible and irreversible membrane fouling of a lab-scale MBR. High-strength synthetic municipal wastewater (with BOD5 around 1000 mg/L) was fed as the substrate for the activated sludge process and a flat-sheet microfiltration membrane was operated for solids (biomass) - liquid separation at the flux of 17 L/m2h. The obtained results showed that the addition of zeolite contributed mainly to the alleviation of irreversible fouling, leaving the reversible fouling practically unaffected, while the addition of bio-carriers had quite the opposite effect. In addition, it was shown that the lab-scale MBR system operated successfully, treating a high-strength synthetic municipal wastewater, as high removals were observed in terms of both organics and especially of ammonium removal (over 98%).
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