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Co对NiO-BaCO_3催化剂催化N_2O分解的促进影响(英文) 被引量:1
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作者 张峰峰 王新平 +2 位作者 张肖肖 马木提江.吐尔逊 于海彪 《催化学报》 SCIE EI CAS CSCD 北大核心 2015年第3期344-347,共4页
采用共沉淀法制备了一系列CoxBa1.5Ni9催化剂,用于N2O催化分解反应.研究发现,尽管Co加入纯Ni O对反应不利,但在有Ba CO3存在的情况下,Co则能够显著提高Ni O的活性.这是由于Co增强了Ni–O键而对反应不利,但在Ba CO3存在下则大大增加了Ni... 采用共沉淀法制备了一系列CoxBa1.5Ni9催化剂,用于N2O催化分解反应.研究发现,尽管Co加入纯Ni O对反应不利,但在有Ba CO3存在的情况下,Co则能够显著提高Ni O的活性.这是由于Co增强了Ni–O键而对反应不利,但在Ba CO3存在下则大大增加了Ni基催化剂的比表面积及活性位数目. 展开更多
关键词 氧化三钴 氧化二氮分解 碳酸钡 氧化
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Superior performance of iridium supported on rutile titania for the catalytic decomposition of N_2O propellants 被引量:4
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作者 Shuang Liu Nanfang Tang +3 位作者 Qinghao Shang Chuntian Wu Guoliang Xu Yu Cong 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第7期1189-1193,共5页
N2O is a promising green propellant and exhibits great potential for satellite propulsion systems. It is difficult for catalytic decomposition, which is an important way to initiate the propulsion process, to occur at... N2O is a promising green propellant and exhibits great potential for satellite propulsion systems. It is difficult for catalytic decomposition, which is an important way to initiate the propulsion process, to occur at temperatures below 600 °C due to the high activation energy of N2O. In this work, we report an Ir supported on rutile TiO2(Ir/r-TiO2) catalyst which exhibits a fairly high activity for high-concentration N2O decomposition. HAADF-STEM, H2-TPR, and XPS results indicate that highly dispersed Ir particles and improved oxygen mobility on the Ir/r-TiO2 could facilitate the decompo-sition of N2O and desorption of the adsorbed oxygen. Bridge-bonded peroxide intermediates were observed with in-situ DRIFT and herein, a detailed decomposition route is proposed. 展开更多
关键词 Heterogeneous catalysis Nitrous oxide Catalytic decomposition Iridium catalyst TITANIA
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The role of alkali promoters in enhancing the direct N_2O decomposition reactivity over NiO catalysts 被引量:2
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作者 Bahaa M. Abu-Zied 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2015年第11期1837-1845,共9页
Direct N2O decomposition has been investigated over bare NiO and a series of its alkali-promoted catalysts. These catalysts were characterized by X-ray diffractometry, X-ray photoelectron spectroscopy (XPS) and fiel... Direct N2O decomposition has been investigated over bare NiO and a series of its alkali-promoted catalysts. These catalysts were characterized by X-ray diffractometry, X-ray photoelectron spectroscopy (XPS) and field emission scanning electron microscopy. XPS analysis revealed that surface nickel is present in three forms: metal particles, NiO and Ni(OH)2. It is suggested that nickel(0) valent atoms are essential for the interaction with N2O molecules at the catalyst surfaces. Bare NiO exhibited a very low N2O decomposition reactivity. However, the alkali-containing catalysts exhibited a marked activity enhancement. 展开更多
关键词 N2O decomposition Greenhouse gas NiOAlkali-promotion Activity enhancement
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Recent advances and perspectives in cobalt‐based heterogeneous catalysts for photocatalytic water splitting,CO_(2) reduction,and N_(2) fixation 被引量:1
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作者 Wanjun Sun Jiayu Zhu +5 位作者 Meiyu Zhang Xiangyu Meng Mengxue Chen Yu Feng Xinlong Chen Yong Ding 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第9期2273-2300,共28页
Solar‐driven conversion of carbon dioxide,water and nitrogen into high value‐added fuels(e.g.H_(2),CO,CH_(4),CH_(3)OH,NH_(3) and so on)is regarded as an environmental‐friendly and ideal route for relieving the gree... Solar‐driven conversion of carbon dioxide,water and nitrogen into high value‐added fuels(e.g.H_(2),CO,CH_(4),CH_(3)OH,NH_(3) and so on)is regarded as an environmental‐friendly and ideal route for relieving the greenhouse gas effect and countering energy crisis,which is an attractive and challenging topic.Hence,various types of photocatalysts have been developed successively to meet the requirements of these photocatalysis.Among them,cobalt‐based heterogeneous catalysts emerge as one of the most promising photocatalysts that open up alluring vistas in the field of solar‐to‐fuels conversion,which can effectively enhance photocatalytic efficiency by extending light absorption range,promoting charge separation,providing active sites,and lowering reaction barrier.In this review,we first present the working principles of cobalt‐based heterogeneous catalysts for photocatalytic water splitting,CO_(2) reduction,and N_(2) fixation.Second,five efficient strategies including surface modification,morphology modulation,crystallinity controlling,crystal engineering and doping,are discussed for improving the photocatalytic performance with different types cobalt‐based catalysts(cobalt nanoparticles and single atom,oxides,sulfides,phosphides,MOFs,COFs,LDHs,carbide,and nitrides).Third,we outline the applications for the state‐of‐the‐art photocatalytic CO_(2) reduction and water splitting,and nitrogen fixation over cobalt‐based heterogeneous catalysts.Finally,the central challenges and possible improvements of cobalt‐based photocatalysis in the future are presented.The purpose of this review is to summarize the past experience and lessons,and provide reference for the further development of cobalt‐based photocatalysis technology. 展开更多
关键词 PHOTOCATALYSIS Cobalt based heterogeneous catalyst Water splitting Carbon dioxide reduction Nitrogen fixation
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