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首页> 外文期刊>Journal of Environmental Engineering >AnMBR Treatment of High-Strength Starch-Based Wastewater: Impact of Cleaning Process and CEBs on Membrane Fouling
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AnMBR Treatment of High-Strength Starch-Based Wastewater: Impact of Cleaning Process and CEBs on Membrane Fouling

机译:高强度淀粉废水的ANMBR处理:清洁过程和CEB对膜污垢的影响

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摘要

An anaerobic continuously stirred tank reactor (CSTR) integrated with an external tubular nanofiltration membrane module was operated for 466days. Studies were conducted to compare the efficiencies in flux and operational permeability recovery of two different chemical cleaning processes. Chemically enhanced backwashes (CEBs) were applied for approximately 176days of the study and their influence on chemical cleaning performance and membrane fouling rate following chemical cleanings were also investigated. The anaerobic nanofiltration membrane bioreactor used in the study was fed a high-strength, potato starch-based synthetic wastewater (average chemical oxygen demand of 83.4g/L and average total suspended solids of 5.8g/L). Important findings were that a static, one-phase cleaning process using caustic cleaning chemicals outperformed a dynamic, three-phase cleaning process that also incorporated acidic cleaning chemicals; the acidic phase of the three-phase cleaning had a detrimental effect on the overall cleaning procedure's performance; CEBs enhanced the performance of cleaning processes; and, finally, caustic cleaning solutions provided benefits to both membrane cleaning effectiveness and rate of fouling in the short term but may lead to an increased rate of membrane fouling in the long term.
机译:将与外管状纳米过滤膜组件集成的厌氧连续搅拌釜反应器(CSTR)进行4660天。进行研究以比较两种不同化学清洁过程的助熔剂和操作渗透率恢复的效率。还研究了化学增强的反冲洗(CEBS)的研究约176天,还研究了化学清洁后化学清洁性能和膜污垢率的影响。该研究中使用的厌氧纳米滤膜膜生物反应器是一种高强度,马铃薯淀粉基合成废水(平均化学需氧量为83.4g / L,平均悬浮固体为5.8g / l)。重要的发现是,使用腐蚀性清洁化学品的静态,单相清洁过程优于一种动态,三相清洁过程,其也掺入了酸性清洁化学物质;三相清洁的酸性阶段对整体清洁程序的性能有不利影响; CEBS增强了清洁过程的性能;最后,腐蚀性清洁解决方案为短期内膜清洁效果和污垢率提供了益处,但可能导致长期膜污染率增加。

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