Department of Building, Civil and Environmental Engineering, Concordia University, Montreal, Quebec, Canada.
Environ Sci Technol. 2010 May 1;44(9):3298-304. doi: 10.1021/es902145g.
A novel Submerged Membrane Electro-Bioreactor (SMEBR) was developed to treat wastewater and control the problem of membrane fouling. To validate the new design, experimental work was achieved in a few phases. This paper describes the design constraints and criteria of the new developed SMEBR system, and shows the results of the performance of the SMEBR system to reduce membrane fouling when intermittent direct current (DC) (15 min ON/45 min OFF) was applied using cylindrical iron mesh for both electrodes. Application of the SMEBR system enhanced the membrane filterability by reducing the fouling rate up to 16.3% without any backwashing of the membrane module. The improvement in membrane filterability associated with a decrease in zeta potential of the mixed liquor flocs from -30.5 up to -15.3 mV and a decrease in specific resistance to filtration (SRF) up to 40% was observed.
一种新型的浸没式膜电生物反应器(SMEBR)被开发出来,用于处理废水并控制膜污染问题。为了验证新设计,在几个阶段进行了实验工作。本文描述了新开发的 SMEBR 系统的设计约束和标准,并展示了当使用圆柱状铁网作为两个电极施加间歇直流(DC)(15 分钟 ON/45 分钟 OFF)时,SMEBR 系统减少膜污染的性能结果。SMEBR 系统的应用通过将污染速率降低 16.3%,而无需对膜模块进行任何反冲洗,从而提高了膜的过滤性能。观察到与混合液絮体的zeta 电位从-30.5 降低到-15.3 mV 以及过滤比阻力(SRF)降低 40%相关的膜过滤性能的改善。