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臭氧-生物活性炭组合工艺中最佳臭氧投加剂量的确定 被引量:20
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作者 孔令宇 张晓健 王占生 《环境科学》 EI CAS CSCD 北大核心 2006年第7期1345-1347,共3页
在水处理过程中投加臭氧,可提高饮用水的可生物降解性.臭氧氧化后继的生物过滤,可以减少水中可生物降解有机物数量,提高饮用水的生物稳定性.试验表明,臭氧投加量2~8mg/L可使AOC—P17,AOC-NOX和BDOC分别增加20.9%~85.5%,4... 在水处理过程中投加臭氧,可提高饮用水的可生物降解性.臭氧氧化后继的生物过滤,可以减少水中可生物降解有机物数量,提高饮用水的生物稳定性.试验表明,臭氧投加量2~8mg/L可使AOC—P17,AOC-NOX和BDOC分别增加20.9%~85.5%,42.1%~158.2%和21.4%~84.4%.臭氧投加量为3mg/L时,AOC和BDOC增加得最多,即3mg/L的臭氧投量为最佳投加剂量.生物活性炭滤柱(BAC)出水AOC浓度(乙酸碳)均低于50μg/L,在35.9~46.6μg/L之间,属于生物稳定性水质. 展开更多
关键词 臭氧-生物活性炭 臭氧化 臭氧投加量 生物稳定性 可生物同化有机碳 可生物降解溶解性有机
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饮用水生物稳定性及影响因素 被引量:5
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作者 李灵芝 李建渠 王占生 《平顶山师专学报》 2004年第5期34-36,共3页
综述了饮用水生物稳定性的概念,并讨论了余氯量、有机营养物、水力条件、温度等因素对饮用水生物稳定性的影响.
关键词 饮用水 生物稳定性 可生物降解有机 可生物同化有机碳
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给水管网中生物稳定性控制指标的研究
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作者 范晓慧 汤金如 王威 《安阳师范学院学报》 2008年第5期153-156,共4页
本文主要研究了给水管网生物稳定性的问题,分析了饮用水中评价生物稳定性的四项指标:可生物同化有机碳(AOC)、可生物降解溶解性有机碳(BDOC)、可生物利用磷(MAP)和总磷(TP),以及各指标的测定方法和应用,并且分析了给水管网中水温,自由... 本文主要研究了给水管网生物稳定性的问题,分析了饮用水中评价生物稳定性的四项指标:可生物同化有机碳(AOC)、可生物降解溶解性有机碳(BDOC)、可生物利用磷(MAP)和总磷(TP),以及各指标的测定方法和应用,并且分析了给水管网中水温,自由余氯等因素对生物稳定性的影响。 展开更多
关键词 生物稳定性 给水管网 可生物同化有机碳 可生物降解溶解性有机 可生物利用磷
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The biofilm characteristics and enhanced performance of a marine microbial-electrolysis-cell-based biosensor under positive anodic potential
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作者 CAO Yuanyuan ZHANG Chaoqun +2 位作者 LIU Xiang CHENG Liang YANG Yang 《土木与环境工程学报(中英文)》 2024年第6期221-230,共10页
Microbial fuel cells have already been used as biosensors to monitor assimilable organic carbon(AOC).However,their signal production from AOC is known to be completely suppressed by dissoved oxygen(DO).In this study,t... Microbial fuel cells have already been used as biosensors to monitor assimilable organic carbon(AOC).However,their signal production from AOC is known to be completely suppressed by dissoved oxygen(DO).In this study,two identical microbial electrolysis cell(MEC)based biosensors were inoculated with marine sediment and operated at two different anodic potentials,namely-300 mV and+250 mV relative to Ag/AgCl.The MEC biosensor operated under positive anodic potential conditions had electrochemically active microbial communities on the anode,including members of the Shewanellaceae,Pseudoalteromonadaceae,and Clostridiaceae families.However,the strictly anaerobic members of the Desulfuromonadaceae,Desulfobulbaceae and Desulfobacteraceae families were found only in the negative anodic potential MEC biosensor.The positive anodic potential MEC biosensor showed several other advantages as well,such as faster start-up,significantly higher maximum current production,fivefold improvement in the AOC detection limit,and tolerance of low dissolved oxygen,compared to those obtained from the negative anodic potential MEC biosensor.The developed positive anodic potential MEC biosensor can thus be used as a real-time and inexpensive detector of AOC concentrations in high saline and low DO seawater. 展开更多
关键词 biosensor microbial fuel cell anodic potential marine biofilm assimilable organic carbon
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