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我国关联企业实质合并重整适用标准研究 被引量:3
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作者 丁燕 《山东法官培训学院学报》 2021年第6期60-72,共13页
通过实证研究检视我国关联企业实质合并重整适用标准存在的内在缺陷,究其根因在于我国现行企业破产法律制度相关立法规则之空白,从而导致各地法院在司法裁判中存在不统一、不规范等诸多问题。从比较法视角分析联合国国际贸易法委员会《... 通过实证研究检视我国关联企业实质合并重整适用标准存在的内在缺陷,究其根因在于我国现行企业破产法律制度相关立法规则之空白,从而导致各地法院在司法裁判中存在不统一、不规范等诸多问题。从比较法视角分析联合国国际贸易法委员会《破产法立法指南》、美国和日本理论与实务界关于实质合并重整适用标准的具体内容,提炼总结域外法之共性规则,提出完善我国关联企业实质合并重整适用标准的立法建议,如构建利益衡量方法论框架内的多元化标准规则,确立以“法人人格高度混同”标准、“债权人受益”标准与“信赖利益”标准为核心的判断原则,适度吸收“区分成本过高”标准与“重整需要”标准,同时倡导采用“协同重整”之创新方法灵活应对与处理。 展开更多
关键词 实质合并 人格混同 债权人受益 信赖利益 协同重整
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Synergetic photocatalytic and thermocatalytic reforming of methanol for hydrogen production based on Pt@TiO_(2) catalyst 被引量:2
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作者 Lei Li Wenjun Ouyang +7 位作者 Zefeng Zheng Kaihang Ye Yuxi Guo Yanlin Qin Zhenzhen Wu Zhan Lin Tiejun Wang Shanqing Zhang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第5期1258-1266,共9页
In order to efficiently produce H_(2),conventional methanol‐water thermocatalytic(TC)reforming requires a very high temperature due to high Gibbs free energy,while the energy conversion efficiency of methanol‐water ... In order to efficiently produce H_(2),conventional methanol‐water thermocatalytic(TC)reforming requires a very high temperature due to high Gibbs free energy,while the energy conversion efficiency of methanol‐water photocatalytic(PC)reforming is far from satisfaction because of the kinetic limitation.To address these issues,herein,we incorporate PC and TC processes together in a specially designed reactor and realize simultaneous photocatalytic/thermocatalytic(PC‐TC)reforming of methanol in an aqueous phase.Such a design facilitates the synergetic effect of the PC and TC process for H_(2) production due to a lower energy barrier and faster reaction kinetics.The methanol‐water reforming based on the optimized 0.05%Pt@TiO_(2) catalyst delivers an outstanding H_(2) production rate in the PC‐TC process(5.66μmol H_(2)·g^(‒1) catalyst·s^(‒1)),which is about 3 and 7 times than those of the TC process(1.89μmol H_(2)·g^(‒1) catalyst·s^(‒1))and the PC process(0.80μmol H_(2)·g^(‒1) catalyst·s^(‒1)),respectively.Isotope tracer experiments,active intermediate trapping experiments,and theoretical calculations demonstrate that the photo‐generated holes and hydroxyl radicals could enhance the methanol dehydrogenation,water molecule splitting,and water‐gas shift reaction,while high temperature accelerates reaction kinetics.The proposed PC‐TC reforming of methanol for hydrogen production can be a promising technology to solve the energy and environmental issue in the closed‐loop hydrogen economy in the near future. 展开更多
关键词 Aqueous‐phase reforming Photocatalysis Thermocatalysis Pt@TiO2 catalyst METHANOL Hydrogen
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