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Integrated transport and reaction in an ion exchange membrane bioreactor

机译:离子交换膜生物反应器中的整合运输和反应

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摘要

The removal of low molecular mass charged compounds from water streams in an ion exchange membrane bioreactor (IEMB) was studied. This integrated membrane process combines continuous ion exchange transport (Donnan dialysis) of the pollutant through a non-porous membrane, selective for the transport of mono-anions, and its simultaneous bioconversion to harmless products in a biocompartment. The mechanism of the process, governed by the Donnan equilibrium principles, allows for regulation of the direction and magnitude of flux of the individual anions present by adjusting the ratio of the impermeable co-ions between the biocompartment and polluted water compartment. Therefore, transport of a charged pollutant against its concentration gradient is possible. Experimental results, obtained for nitrate removal from drinking water are reported as a case study in order to evaluate the potential of the integrated process compared to that of other membrane-assisted bioprocesses as well as with Donnan dialysis operated as a single process. It was found that the IEMB process allows for the most selective removal of the target pollutant simultaneously avoiding microbial and secondary contamination of the treated water stream. The advantages, possible limitations and some recommendations for a successful IEMB process application are also briefly outlined.
机译:研究了离子交换膜生物反应器(IEMB)中水流中低分子量带电荷化合物的去除。这种集成的膜工艺结合了污染物通过无孔膜的连续离子交换运输(唐南渗析),对单阴离子运输的选择性,以及同时生物转化为生物隔间中无害产品的能力。该过程的机理受Donnan平衡原理支配,可通过调节生物室与污水室之间不可渗透的共离子的比例来调节所存在的各个阴离子的通量方向和大小。因此,可以逆着其浓度梯度运输带电污染物。案例研究报告了从饮用水中去除硝酸盐获得的实验结果,以评估与其他膜辅助生物工艺以及Donnan透析作为单个工艺相比,该集成工艺的潜力。已经发现,IEMB工艺允许最有选择性地去除目标污染物,同时避免了处理水流的微生物和二次污染。还简要概述了成功完成IEMB流程应用程序的优点,可能的局限性和一些建议。

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