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首页> 外文期刊>Separation and Purification Technology >Effects of step-feeding and internal recycling on nitrogen removal in ceramic membrane bioreactors, and their hydraulic backwashing characteristics
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Effects of step-feeding and internal recycling on nitrogen removal in ceramic membrane bioreactors, and their hydraulic backwashing characteristics

机译:分步进料和内部循环对陶瓷膜生物反应器脱氮的影响及其水力反冲洗特性

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摘要

Both lab-scale (50 L/day) and pilot-scale (10 m(3)/day) ceramic membrane bioreactors (CMBRs), equipped with two additional implements (step-feeding and internal recycling), have been tested for the removal of nitrogen and organic matter from municipal wastewater. During the 180 days of operation, 0.5Q of step-feeding increased the removal rate of total nitrogen by 46.2% in the lab-scale CMBR, whereas a 59.0% increase was observed with the additional 3Q internal recycling in the pilot-scale CMBR. This was presumably due to the supply of insufficient carbon source as an electron donor in the denitrification stage. The ceramic membrane also exhibited high rigidity sufficient for periodic bacicwashing using the highly-pressurized permeate. A constant flux test with 30 s of backwashing after every 9.5 min of filtration successfully removed foulants from the pores of the ceramic membrane, and instantaneously restored the trans-membrane pressure (TMP). During the test, the TMP in case of without the hydraulic backwashing steadily increased (20-80 kPa) for 40 min, whereas it took more than two times to reach the same TMP in the case of with the hydraulic backwashing, which eventually doubled the time span between required chemical washings. (C) 2014 Elsevier B.V. All rights reserved.
机译:实验室规模(50 L /天)和中试规模(10 m(3)/天)的陶瓷膜生物反应器(CMBR),都配备了两个额外的工具(分步进料和内部回收),已经过测试以进行去除市政废水中的氮和有机物在运行的180天中,在实验室规模的CMBR中,0.5Q的分步进料可以将总氮的去除率提高46.2%,而在中试规模的CMBR中,通过额外的3Q内部循环,可以观察到59.0%的增加。据推测这是由于在反硝化阶段中作为电子供体的碳源供应不足。陶瓷膜还显示出足够高的刚度,足以用于使用高压渗透液进行定期细菌清洗。每9.5分钟过滤后进行30 s反冲洗的恒定流量测试成功地从陶瓷膜的孔中清除了污垢,并立即恢复了跨膜压力(TMP)。在测试过程中,在没有进行液压反冲洗的情况下,TMP持续稳定增加(20-80 kPa)40分钟,而在进行液压反冲洗的情况下,达到相同的TMP需要花费两倍以上的时间,最终使压力所需化学清洗之间的时间间隔。 (C)2014 Elsevier B.V.保留所有权利。

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