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Optimal performance of an immersed membrane bioreactor equipped with a draft tube for domestic wastewater reclamation

机译:配备引流管的生活用废水回收膜式生物膜反应器的最佳性能

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One of the options to prevent membrane fooling is to implement air lifting that can improve the cake removal from the membrane surface. This study presents the results of tests that were carried out at the Institutes for Desert Research, Kiryat Sde-Boker, Israel, and focused on the influence of hydrodynamic conditions on fouling in a pilot-scale immersed membrane bioreactor (IMBR) using a hollow fiber membrane module of ZW-10 (Zenon Environmental, Canada) under ambient conditions. In this system, the cross-flow velocities across the membrane surface were induced by one conical and four cylindrical draft-tubes. The relationship between the crossflow velocity and the aeration intensity, the influence of the crossflow on fouling rate under various hydrodynamic conditions were investigated and optimal operating conditions were obtained. Optimal operating conditions were reached during the long-term experiment period (70 days) for the treatment of domestic wastewater. The system was stable without external chemical cleaning. The results showed that the permeate was of high quality, and the removal of COD and BOD was 94.0% and 98.8%, respectively. The crossflow near the membrane surface reveals a major contribution for minimizing membrane fouling, and could offer guidelines for future design of similar systems.
机译:防止膜愚弄的一种选择是实施空气提升,以改善滤饼从膜表面的去除。这项研究提出了在以色列Kiryat Sde-Boker沙漠研究所进行的测试结果,重点研究了中空纤维浸没膜生物反应器(IMBR)中流体动力学条件对结垢的影响。 ZW-10(加拿大Zenon Environmental,加拿大)的膜组件在环境条件下。在该系统中,跨过膜表面的横流速度是由一个锥形和四个圆柱状引流管引起的。研究了横流速度与曝气强度之间的关系,研究了横流对各种流体力学条件下结垢率的影响,并获得了最佳运行条件。在长期实验期间(70天)达到了用于处理生活污水的最佳操作条件。该系统稳定,无需外部化学清洁。结果表明,该渗透液质量好,去除COD和BOD分别为94.0%和98.8%。膜表面附近的错流显示出对最小化膜污染的重要贡献,并可以为类似系统的未来设计提供指导。

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