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改性H-ZSM-34上氯甲烷催化转化制低碳烯烃(英文) 被引量:6
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作者 徐霆 宋航 +2 位作者 邓卫平 张庆红 王野 《催化学报》 CSCD 北大核心 2013年第11期2047-2056,共10页
比较了几种典型的沸石分子筛在氯甲烷转化制乙烯、丙烯和丁烯等低碳烯烃反应中的催化性能,发现H-ZSM-34具有较佳的催化活性和选择性.经乙二胺四乙酸二钠(Na2H2EDTA)水溶液处理,并经离子交换及焙烧后,H-ZSM-34上氯甲烷转化制低碳烯烃的... 比较了几种典型的沸石分子筛在氯甲烷转化制乙烯、丙烯和丁烯等低碳烯烃反应中的催化性能,发现H-ZSM-34具有较佳的催化活性和选择性.经乙二胺四乙酸二钠(Na2H2EDTA)水溶液处理,并经离子交换及焙烧后,H-ZSM-34上氯甲烷转化制低碳烯烃的催化性能显著改善.当Na2H2EDTA浓度为0.1 mol/L,反应温度为673 K,CH3Cl分压9.2 kPa时,C2–C4烯烃选择性和收率分别达82%和61%.研究还发现,Ce修饰H-ZSM-34催化剂同样可改善氯甲烷制低碳烯烃的选择性和收率.表征结果表明,Na2H2EDTA处理和Ce修饰均降低了H-ZSM-34的酸性.酸性的降低可抑制低碳烯烃的氢转移反应,继而避免了其进一步转化为低碳烷烃. 展开更多
关键词 氯甲烷 低碳烯烃 H-ZSM-34 乙二胺四乙酸二钠处理 铈修饰 酸性
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Fe,N,S-doped porous carbon as oxygen reduction reaction catalyst in acidic medium with high activity and durability synthesized using CaCl_2 as template 被引量:3
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作者 Chi Chen Zhiyou Zhou +4 位作者 Yucheng Wang Xue Zhang Xiaodong Yang Xinsheng Zhang Shigang Sun 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2017年第4期673-682,共10页
Proton exchange membrane fuel cells suffer from the sluggish kinetics of the oxygen reduction reaction(ORR)and the high cost of Pt catalysts.In the present work,a high‐performance ORR catalystbased on Fe,N,S‐doped p... Proton exchange membrane fuel cells suffer from the sluggish kinetics of the oxygen reduction reaction(ORR)and the high cost of Pt catalysts.In the present work,a high‐performance ORR catalystbased on Fe,N,S‐doped porous carbon(FeNS‐PC)was synthesized using melamine formaldehyderesin as C and N precursors,Fe(SCN)3as Fe and S precursors,and CaCl2as a template via a two‐stepheat treatment without a harsh template removal step.The results show that the catalyst treated at900℃(FeNS‐PC‐900)had a high surface area of775m2/g,a high mass activity of10.2A/g in anacidic medium,and excellent durability;the half‐wave potential decreased by only20mV after10000potential cycles.The FeNS‐PC‐900catalyst was used as the cathode in a proton exchangemembrane fuel cell and delivered a peak power density of0.49W/cm2.FeNS‐PC‐900therefore hasgood potential for use in practical applications. 展开更多
关键词 Non‐precious metal catalyst Oxygen reduction reaction Proton exchange membrane fuel cell Fe N S‐doped porous carbon Melamine formaldehyde resin
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Revealing the concentration of hydrogen peroxide in fuel cell catalyst layers by an in‐operando approach 被引量:1
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作者 Chun‐Yu Qiu Li‐yang Wan +5 位作者 Yu‐Cheng Wang Muhammad Rauf Yu‐Hao Hong Jia‐yin Yuan Zhi‐You Zhou Shi‐Gang Sun 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第7期1918-1926,共9页
To evaluate the H_(2)O_(2)‐tolerance of non‐Pt oxygen reduction reaction(ORR)catalysts as well as in‐vestigate the H_(2)O_(2)‐induced decay mechanism,the selection of an appropriate H_(2)O_(2) concentration is a p... To evaluate the H_(2)O_(2)‐tolerance of non‐Pt oxygen reduction reaction(ORR)catalysts as well as in‐vestigate the H_(2)O_(2)‐induced decay mechanism,the selection of an appropriate H_(2)O_(2) concentration is a prerequisite.However,the concentration criterion is still unclear because of the lack of in‐operando methods to determine the actual concentration of H_(2)O_(2) in fuel cell catalyst layers.In this work,an electrochemical probe method was successfully established to in‐operando monitor the H_(2)O_(2) in non‐Pt catalyst layers for the first time.The local concentration of H_(2)O_(2) was revealed to reach 17 mmol/L,which is one order of magnitude higher than that under aqueous electrodes test conditions.Powered by the new knowledge,a concentration criterion of at least 17 mmol/L is suggested.This work fills in the large gap between aqueous electrode tests and the real fuel cell working conditions,and highlights the importance of in‐operando monitoring methods. 展开更多
关键词 Oxygen reduction reaction Non‐Pt catalyst layer H_(2)O_(2) concentration In‐operando monitoring Catalyst degradation
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基于碳材料的纳米发电器件研究进展
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作者 虞乐建 王苗 侯旭 《化学通报》 CAS CSCD 北大核心 2020年第6期482-487,496,共7页
如何解决能源危机已经成为全人类亟待解决的重大挑战之一,而日益严峻的环境污染问题更驱使着人们对清洁能源的迫切需求。近年来,研究人员利用微纳加工技术制备不同维度的碳基材料以捕获周围环境所蕴藏的能量,被视为是一种开发可再生清... 如何解决能源危机已经成为全人类亟待解决的重大挑战之一,而日益严峻的环境污染问题更驱使着人们对清洁能源的迫切需求。近年来,研究人员利用微纳加工技术制备不同维度的碳基材料以捕获周围环境所蕴藏的能量,被视为是一种开发可再生清洁能源的有效途径。本文主要从不同的能量利用形式出发,介绍了不同维度的碳材料用于纳米发电器件的研究进展,同时简要阐述了碳材料纳米发电器件在可穿戴器件、传感器等领域的潜在应用。 展开更多
关键词 能源 碳材料 纳米发电器件
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