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配电网调度作业管理系统的设计及实现 被引量:2
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作者 杜红卫 许先锋 +4 位作者 苏标龙 赵京虎 王伟 毛小武 姜勇 《电网技术》 EI CSCD 北大核心 2006年第S2期530-534,共5页
本文首先分析了国内配电网管理系统建设存在的主要问题,然后从设计理念、总体架构、系统功能设计、关键技术等方面对配电网调度作业管理系统进行阐述。在南京供电公司配调中心的使用情况表明,系统实现了配网调度的无纸化和流程化管理,... 本文首先分析了国内配电网管理系统建设存在的主要问题,然后从设计理念、总体架构、系统功能设计、关键技术等方面对配电网调度作业管理系统进行阐述。在南京供电公司配调中心的使用情况表明,系统实现了配网调度的无纸化和流程化管理,比较明显的体现了配网管理系统的规模经济效益,对实现供电企业的安全、合理调度运行,提高供电可靠性、降低调度员工作动强度方面发挥了重要作用。 展开更多
关键词 配电网管理系统 调度作业管理 流程 图票一体化 自由表单 规则库
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Singlet oxygen synergistic surface-adsorbed hydroxyl radicals for phenol degradation in CoP catalytic photo-Fenton 被引量:5
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作者 Haoran Yu Danxu Liu +5 位作者 Hengyi Wang Haishuang Yu Qingyun Yan Jiahui Ji Jinlong Zhang Mingyang Xing 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第10期2678-2689,共12页
In recent years,there have been numerous studies on Fenton or Fenton-like reactions mediated by nonfree radicals such as singlet oxygen(1O_(2));however,there are few studies on the synergistic effect of 1O_(2) and fre... In recent years,there have been numerous studies on Fenton or Fenton-like reactions mediated by nonfree radicals such as singlet oxygen(1O_(2));however,there are few studies on the synergistic effect of 1O_(2) and free radicals on the degradation of organic molecules,such as phenol in Fenton reaction.In this study,a cocatalyst,CoP,commonly used in photocatalysis was synthesized using a simple two-step method,and a CoP/Fe^(2+)/AM1.5 system was constructed by introducing Fe^(2+)and simulated sunlight(AM1.5)irradiation.The newly constructed CoP/Fe^(2+)/AM1.5 system could effectively degrade various organic pollutants,including dyes,phenols,and antibiotics.Radical quenching experiments and electron paramagnetic resonance detection confirmed that there were three reactive oxygen species(ROS)in the CoP/Fe^(2+)/AM1.5 system,including·OH_(ads),·O_(2)^(-),and 1O_(2).Further,combined with the liquid chromatogram of phenol,its intermediate products,and the fluorescence diagram of o-hydroxybenzoic acid,it can be concluded that a synergistic effect exists between 1O_(2) and the surface-adsorbed·OH_(ads) in the CoP/Fe^(2+)/AM1.5 system.The controllable formation of surface 1O_(2) and·OH_(ads) was achieved through the oxidation(Co^(3+))and reduction(Pδ−)centers exposed on the CoP surface,and the synergistic effect between them results in phenol’s hydroxylation,ring-opening,and degradation.The study of this new mechanism provides a new perspective for revealing the surface interface reaction between ROS and organic pollutants. 展开更多
关键词 Surface hydroxyl radical Singlet oxygen Synergistic effect HYDROXYLATION PHOTO-FENTON
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