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生物絮凝吸附+生物接触氧化除氮机理探讨
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作者 刘保伟 张金梅 《工程建设与设计》 2008年第11期92-94,共3页
通过单因素试验研究了生物絮凝吸附+生物接触氧化组合式一体化工艺对城市污水悬浮物SS、化学需氧量COD、氨氮NH3-N、总氮TN、总磷TP的去除效能和机理。试验结果表明:在组合工艺的较优运行条件下,装置对SS、COD、NH3-N、TN、TP的平均去... 通过单因素试验研究了生物絮凝吸附+生物接触氧化组合式一体化工艺对城市污水悬浮物SS、化学需氧量COD、氨氮NH3-N、总氮TN、总磷TP的去除效能和机理。试验结果表明:在组合工艺的较优运行条件下,装置对SS、COD、NH3-N、TN、TP的平均去除率分别为88.7%、89.3%、87.9%、73.4%、58.8%,可以使除磷外的所有指标达到《城镇污水处理厂污染物排放标准》(GB18918-2002)中的一级B标准。其中生物絮凝吸附段对总氮的去除率为52.7%,生物接触氧化段对总氮的去除率为43.9%,本文即是对装置除氮机理的探讨。 展开更多
关键词 生物絮凝吸附 生物接触氧化 除氮机理
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Generation and transformation of ROS on g-C_3N_4 for efficient photocatalytic NO removal:A combined in situ DRIFTS and DFT investigation 被引量:4
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作者 Jieyuan Li Ping Yan +5 位作者 Kanglu Li Wanglai Cen Xiaowei Yu Shandong Yuan Yinghao Chu Zhengming Wang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第10期1695-1703,共9页
Understanding the performance of reactive oxygen species(ROS)in photocatalysis is pivotal for advancing their application in environmental remediation.However,techniques for investigating the generation and transforma... Understanding the performance of reactive oxygen species(ROS)in photocatalysis is pivotal for advancing their application in environmental remediation.However,techniques for investigating the generation and transformation mechanism of ROS have been largely overlooked.In this study,considering g‐C3N4 to be a model photocatalyst,we have focused on the ROS generation and transformation for efficient photocatalytic NO removal.It was found that the key to improving the photocatalysis performance was to enhance the ROS transformation from·O2^-to·OH,elevating the production of·OH.The ROS directly participate in the photocatalytic NO removal and tailor the rate‐determining step,which is required to overcome the high activation energy of the intermediate conversion.Using a closely combined experimental and theoretical method,this work provides a new protocol to investigate the ROS behavior on g‐C3N4 for effective NO removal and clarifies the reaction mechanism at the atomic level,which enriches the understanding of ROS in photocatalytic environmental remediation. 展开更多
关键词 PHOTOCATALYSIS Reactive oxygen species g‐C3N4 NO removal Reaction mechanism
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