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Hydrogen-based, hollow-fiber membrane biofilm reactor for reduction of perchlorate and other oxidized contaminants

机译:基于氢气的空心纤维膜生物膜反应器,用于还原高氯酸盐和其他氧化污染物

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Many oxidized pollutants, such as nitrate, perchlorate, bromate, and chlorinated solvents, can be microbially reduced to less toxic or less soluble forms. For drinking water treatment, an electron donor must be added. Hydrogen is an ideal electron donor, as it is non-toxic, inexpensive, and sparsely soluble. We tested a hydrogen-based, hollow-fiber membrane biofilm reactor (MBfR) for reduction of perchlorate, bromate, chlorate, chlorite, chromate, selenate, selenite, and dichloromethane. The influent included 5 mg/L nitrate or 8 mg/L oxygen as a primary electron accepting substrate, plus 1 mg/L of the contaminant. The mixed-culture reactor was operated at a pH of 7 and with a 25 minute hydraulic detention time. High recirculation rates provided completely mixed conditions. The objective was to screen for the reduction of each contaminant. The tests were short-term, without allowing time for the reactor to adapt to the contaminants. Nitrate and oxygen were reduced by over 99 percent for all tests. Removals for the contaminants ranged from a minimum of 29% for chlorate to over 95% for bromate. Results show that the tested contaminants can be removed as secondary substrates in an MBfR, and that the MBfR may be suitable for treating these and other oxidized contaminants in drinking water.
机译:许多氧化污染物,例如硝酸盐,高氯酸盐,溴酸盐和氯化溶剂,可以微生物地减少至较小的毒性或更不可溶的形式。对于饮用水处理,必须添加电子给体。氢是理想的电子给体,因为它是无毒,廉价的,稀疏溶解。我们测试了一种基于氢气的空心膜生物膜反应器(MBFR),用于还原高氯酸盐,溴酸盐,氯酸盐,亚氯酸盐,铬酸盐,硒,硒沸石和二氯甲烷。流入物包括5mg / L硝酸盐或8mg / L氧作为初级电子接受基材,加1mg / L的污染物。混合培养反应器在pH为7和25分钟的水力滞留时间。高再循环率提供完全混合条件。目的是筛选每种污染物的减少。测试是短期的,而不允许反应器适应污染物的时间。所有测试的硝酸盐和氧气减少超过99%。污染物的去除范围从氯酸盐至少为29%,以超过95%的溴酸盐。结果表明,经过测试的污染物可以在MBFR中作为二次底物除去,并且MBFR可以适用于将这些和其他氧化污染物治疗饮用水中的污染物。

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