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Ex situ treatment of N-nitrosodimethylamine (NDMA) in groundwater using a fluidized bed reactor

机译:使用流化床反应器对地下水中的N-亚硝基二甲胺(NDMA)进行异位处理

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摘要

N-nitrosodimethylamine (NDMA) is a suspected human carcinogen that has traditionally been treated in water using ultraviolet irradiation (UV). The objective of this research was to examine the application of a laboratory-scale fluidized bed reactor (FBR) as an alternative technology for treating NDMA to part-per-trillion (ng/L) concentrations in ground-water. Previous studies have shown that the bacterium Rhodococcus ruber ENV425 is capable of cometabolizing NDMA during growth on propane as a primary substrate in batch culture (Fournier et al., 2009) and in a bench-scale membrane bioreactor (Hatzinger et al., 2011) to low ng/L concentrations. R. ruber ENV425 was inoculated into the FBR during this study. With a hydraulic residence time (HRT) of 20 min, the FBR was found to be an effective means to treat 10-20 μg/L of NDMA to effluent concentrations less than 100 ng/L. When the HRT was increased to 30 min and oxygen and propane addition rates were optimized, the FBR system demonstrated treatment of the NDMA to effluent concentrations of less than 10 ng/L. Short-term shutdowns and the presence of trichloroethene (TCE) at 6 μg/L as a co-contaminant had minimal effect on the treatment of NDMA in the FBR. The data suggest that the FBR technology can be a viable alternative to UV for removing NDMA from groundwater.
机译:N-亚硝基二甲胺(NDMA)是一种可疑的人类致癌物,传统上已在水中使用紫外线辐射(UV)对其进行处理。这项研究的目的是检验实验室规模的流化床反应器(FBR)的应用,作为将NDMA处理至地下水中的百万分之一(ng / L)浓度的替代技术。先前的研究表明,红球菌ENV425细菌能够在以丙烷为主要底物的分批培养(Fournier等,2009)和台式规模的膜生物反应器(Hatzinger等,2011)的生长过程中代谢NDMA。到低ng / L浓度。在本研究中,将R. ruber ENV425接种到FBR中。在20分钟的水力停留时间(HRT)下,发现FBR是将10-20μg/ L的NDMA处理至废水浓度小于100 ng / L的有效方法。当HRT增加到30分钟并优化氧气和丙烷的添加速度时,FBR系统证明了NDMA的处理浓度小于10 ng / L。短期停工和以6μg/ L的三氯乙烯(TCE)作为共污染物对FBR中NDMA的处理影响最小。数据表明,FBR技术可以替代紫外线,用于从地下水中去除NDMA。

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