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首页> 外文期刊>Environmental Science and Pollution Research >Box-Behnken response surface approach to identify factors affecting membrane fouling in a hybrid membrane bioreactor treating domestic sewage
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Box-Behnken response surface approach to identify factors affecting membrane fouling in a hybrid membrane bioreactor treating domestic sewage

机译:Box-Behnken响应面方法,鉴定影响杂交膜生物反应器中膜污染的膜污染的因素

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摘要

The effect of hydraulic retention time (HRT) and sludge retention time (SRT) on extracellular polymer substrate (EPS) content and resistance of a hybrid membrane bioreactor (HMBR) treating domestic sewage was analyzed by Box-Behnken response surface methodology. The quadratic response surface model demonstrated significant effects of both HRT and SRT on EPS content (both P value < 0.05), SRT on membrane resistance (P value = 0.0119), and their interaction was significant (P value = 0.0273) for EPS but not membrane resistance (P value = 0.0609). Model optimization indicates that the optimal conditions for the HMBR to control membrane fouling were an HRT of 10 h and SRT of 30 days. Under these optimal conditions, both the EPS content and the predicted membrane resistance closely matched the actual average value with the error about 8%. Thus, the feasibility of applying response surface methodology to an HMBR for treating domestic sewage was demonstrated. According to the detection result of the three-dimensional fluorescence (excitation-emission matrix), humic acid-like and fulvic acid-like substances gain much higher levels in the suspended carriers than those in the membrane and sludge, suggesting that these are key components of the membrane pollutants.
机译:通过Box-Behnken响应表面方法分析了液压保留时间(HMBS)含有杂交膜生物反应器(HMBR)对细胞外聚合物基质(EPS)含量和抗性的抗膜生物反应器(HMBR)的影响。二次响应表面模型表明HRT和SRT对EPS含量(P值<0.05),SRT在膜电阻上的显着效果(P值= 0.0119),它们的相互作用是显着的(P值= 0.0273),但不是膜抗性(P值= 0.0609)。模型优化表明,控制膜污染的HMBR的最佳条件是10小时和30天的HRT。在这些最佳条件下,EPS含量和预测膜阻力都与误差约为8%的实际平均值与实际平均值紧密匹配。因此,证明了对治疗生活污水的HMBR施加响应面方法的可行性。根据三维荧光(激发发射基质)的检测结果,腐殖酸样和富含酸状物质在悬浮载体中的水平高于膜和污泥的载体中的水平较高,这表明这些是关键部件膜污染物。

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