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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Development of four-stage moving bed biofilm reactor train with a pre-denitrification configuration for the removal of thiocyanate and cyanate
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Development of four-stage moving bed biofilm reactor train with a pre-denitrification configuration for the removal of thiocyanate and cyanate

机译:开发具有预脱硝配置的四级移动床生物膜反应器机组,以去除硫氰酸盐和氰酸盐

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Two trains (A and B) of four-stage moving bed biofilm reactors (MBBRs) were developed for the degradation of thiocyanate (SCN ),cyanate (OCN ) and ammonia (NH3). A pre-denitrification configuration was established in the first-stage reactor of the B train using SCN and OCN as the sole carbon source. SCN , OCN and NH3 were completely removed in both trains. The highest removal of total nitrogen equivalent (total-N) occurred at a loading rate of 5.6 mg- N L (1) h (1). The pre-denitrification configuration resulted in increased total- N removal in the B train (62.6%) compared to the A train (38.5%). Thiobacillus spp. were the predominant bacteria in all MBBRs. Bacteria related to bioprocesses involving anaerobic ammonium oxidation were present in the B train, suggesting that part of nitrogen removal occurs via this pathway. Our results showed that the pre-denitrification configuration increases the efficiency of removal of total-N compounds in the SCN /OCN -degrading MBBR process. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为降解硫氰酸盐(SCN),氰酸盐(OCN)和氨(NH 3),开发了两列(A和B)的四级移动床生物膜反应器(MBBR)。在B列的第一阶段反应器中采用SCN和OCN作为唯一碳源,建立了预脱硝配置。两列火车中的SCN,OCN和NH3均被完全去除。总氮当量(总N)的最高去除率发生在5.6 mg-N L(1)h(1)的加载速率下。与A列(38.5%)相比,预脱氮配置导致B列(62.6%)的总N去除量增加。硫杆菌属。是所有MBBR中的主要细菌。 B列中存在与涉及厌氧铵氧化的生物过程有关的细菌,这表明部分脱氮是通过该途径发生的。我们的结果表明,在SCN / OCN降解MBBR工艺中,预脱氮配置提高了去除总N化合物的效率。 (C)2015 Elsevier Ltd.保留所有权利。

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