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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Recent advances, challenges and prospects of in situ production of hydrogen peroxide for textile wastewater treatment inmicrobial fuel cells
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Recent advances, challenges and prospects of in situ production of hydrogen peroxide for textile wastewater treatment inmicrobial fuel cells

机译:用于纺织废水处理的微生物燃料电池原位生产过氧化氢的最新进展,挑战和前景

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摘要

Application of the Fenton process for textile wastewater treatment is limited due to high treatment cost, substantially contributed by the un-availability of cheap hydrogen peroxide. Therefore, alternative methods for hydrogen peroxide production are in demand. One such option is in situ hydrogen peroxide production using a wastewater basedmicrobial fuel cell (WBMFC). However, not much have been published regarding in situ production of hydrogen peroxide for textile wastewater treatment in a WBMFC. Therefore, in this work the concept, advantages, challenges and prospects of using WBMFC to treat textile wastewater by simultaneously producing hydrogen peroxide (hence in situ hydrogen peroxide) and power are reviewed. The concept of WBMFC is the reduction of oxygen in the presence of electrons and protons from the anode chamber to produce hydrogen peroxide with simultaneous power production. This review confirms that use of dual chambers, proton exchange membrane, domestic or municipal wastewater/Geobacter Sulfurreducens or Shewanella species, pure graphite cathode, ammonia and heat treated carbon-based anode can treat most textile wastewaters. However, single chamberWBMFCs can be used as a low power source for an electro-Fenton reactor. Power produced can be used to provide energy for aeration required in the WBMFC, thus providing an integrated and sustainable solution for textile wastewater treatment.
机译:由于昂贵的处理成本,芬顿工艺在纺织废水处理中的应用受到限制,这主要是由于廉价的过氧化氢的缺乏所致。因此,需要用于生产过氧化氢的替代方法。一种这样的选择是使用基于废水的微生物燃料电池(WBMFC)原位生产过氧化氢。然而,关于在WBMFC中原位生产用于纺织废水处理的过氧化氢的报道还很少。因此,在这项工作中,回顾了使用WBMFC通过同时产生过氧化氢(因此就地产生过氧化氢)和发电来处理纺织品废水的概念,优点,挑战和前景。 WBMFC的概念是在存在来自阳极室的电子和质子的情况下还原氧气,以生产过氧化氢并同时发电。这项审查证实,使用双室,质子交换膜,生活或市政废水/还原性土壤杆菌或希瓦氏菌属物种,纯石墨阴极,氨气和经热处理的碳基阳极可以处理大多数纺织废水。但是,单室WBMFC可用作电Fenton反应器的低功率源。产生的电力可用于为WBMFC中所需的曝气提供能量,从而为纺织品废水处理提供集成且可持续的解决方案。

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