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6篇 您的检索式:作者名="Ben Ze"
    题名 作者 年代 出处 被引量
1Development of catalytic combustion and CO_(2)capture and conversion technology显示文摘Changes are needed to improve the efficiency and lower the CO_(2)emissions of traditional coal-fired power generation,which is the main source of global CO_(2)emissions.The integrated gasification fuel cell(IGFC)process,which combines coal gasification and high-temperature fuel cells,was proposed in 2017 to improve the efficiency of coal-based power generation and reduce CO_(2)emissions.Supported by the National Key R&D Program of China,the IGFC for nearzero CO_(2)emissions program was enacted with the goal of achieving near-zero CO_(2)emissions based on(1)catalytic combustion of the flue gas from solid oxide fuel cell(SOFC)stacks and(2)CO_(2)conversion using solid oxide electrolysis cells(SOECs).In this work,we investigated a kW-level catalytic combustion burner and SOEC stack,evaluated the electrochemical performance of the SOEC stack in H2O electrolysis and H2O/CO_(2)co-electrolysis,and established a multiscale and multi-physical coupling simulation model of SOFCs and SOECs.The process developed in this work paves the way for the demonstration and deployment of IGFC technology in the future.Zhibin Yang Ze Lei Ben Ge Xingyu Xiong Yiqian Jin Kui Jiao Fanglin Chen Suping Peng 2021International Journal of Coal Science & Technology2021,8,3:3
2Efficacy of lamivudine in patients with hepatits B virus precore mutant infection before and after liver transplantation显示文摘Ben Ari Z Ze mel R Kazetsker A 1999Am J Gastroenterol1999,94,3:1
3Epithelial-masenchymal transition and the invasive potential of tumors 显示文摘Gavert N Ben Ze' ev A 2008Trends Moi Mad2008,14,5:1
4The cadherin - catenin adhesion system in signaling and cancer显示文摘Conacci - Sorrell M Zhurinsky J Ben - Ze ev A 2002J Clin Invest2002,109,8:1
5Mutation scanning in a single and a stacked genetically modified (GM) event by real- time PCR and high resolution melting (HRM) analysis 显示文摘Ben AS Madi ZE Hoehegger R 2014Int J Mol Sci2014,15,19:1
6Monodispersed ultrathin twisty PdBi alloys nanowires assemblies with tensile strain enhance C_(2+)alcohols electrooxidation显示文摘Direct alcohol fuel cells(DAFCs)are powered by the alcohol electro-oxidation reaction(AOR),where an electrocatalyst with an optimal electronic structure can accelerate the sluggish AOR.Interestingly,strain engineering in hetero-catalysis offers a promising route to boost their catalytic activity.Herein,we report on a class of monodispersed ultrathin twisty PdBi alloy nanowires(TNWs)assemblies with face-centered structures that drive AORs.These thin nanowire structures expose a large number of reactive sites.Strikingly,Pd_(6)Bi_(1)TNWs show an excellent current density of 2066,3047,and 1231 mA mg_(Pd)^(-1)for oxidation of ethanol,ethylene glycol,and glycerol,respectively.The“volcano-like”behaviors observed on PdBi TNWs for AORs indicate that the maximum catalytic mass activity is a well balance between active intermediates and blocking species at the interface.This study offers an effective and universal method to build novel nanocatalysts in various applications by rationally designing highly efficient catalysts with specific strain.Xianzhuo Lao Ze Li Likang Yang Ben Zhang Wanneng Ye Aiping Fu Peizhi Guo 2023Journal of Energy Chemistry2023,,4:0
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