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纳米Au/ZnO/TiO_2催化剂对富氢气体中CO选择性氧化 被引量:4
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作者 王超 徐新 罗国华 《石油化工高等学校学报》 CAS 2007年第1期63-66,共4页
以纳米TiO2为载体用共沉淀法负载不同含量Au和ZnO,研究了在不同沉淀剂、焙烧温度和活化条件下制备的催化剂对富氢气体中CO转化率与选择性的影响。反应气采用模拟原料气,用微反-色谱联用装置对反应产物进行催化活性评价,用BET和XRD等方... 以纳米TiO2为载体用共沉淀法负载不同含量Au和ZnO,研究了在不同沉淀剂、焙烧温度和活化条件下制备的催化剂对富氢气体中CO转化率与选择性的影响。反应气采用模拟原料气,用微反-色谱联用装置对反应产物进行催化活性评价,用BET和XRD等方法对合成的催化剂进行表征。实验结果表明催化剂的活性与选择性受沉淀剂、焙烧温度、活化条件等制备因素综合影响。当催化剂组成为Au(2%)ZnO(2%)/TiO2,用尿素做沉淀剂、300℃空气焙烧,氢气条件下还原制备的催化剂在30℃时活性与选择性最佳。 展开更多
关键词 纳米 au/zno/tio2催化剂 富氢气体 选择性氧化
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TiO_2/ZnO光催化降解四环素的研究 被引量:21
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作者 高俊敏 郑泽根 王琰 《重庆环境科学》 北大核心 2003年第1期17-19,共3页
以太阳光、汞灯为光源 ,Ti O2 / Zn O复合半导体为催化剂光催化处理四环素溶液 ,探讨了催化剂的配比、溶液体积、光照时间、p H、初始浓度、光强等 6种因素对光催化活性的影响 ,比较了汞灯和太阳光作光源时的光催化效果 ,结果表明 。
关键词 tio2/zno 光催化 降解 四环素 复合催化剂 废水处理技术
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CNT/Fe-Ni-TiO2/ZnO多孔复合膜的组装及其制氢性能
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作者 宋晓丽 何田田 +3 位作者 林启志 姬婷婷 陈爱平 李春忠 《华东理工大学学报(自然科学版)》 CAS CSCD 北大核心 2018年第2期175-181,共7页
以聚苯乙烯(PS)微球为模板,通过溶胶凝胶法在导电玻璃(FTO)和镍片上负载掺杂铁、镍的复合纳米TiO_2-ZnO有序多孔膜。以多孔膜中的铁、镍为催化剂,通过化学气相沉积法(CVD)原位生长碳纳米管(CNT),得到CNT/Fe-Ni-TiO_2/ZnO/FTO(Ni)三维交... 以聚苯乙烯(PS)微球为模板,通过溶胶凝胶法在导电玻璃(FTO)和镍片上负载掺杂铁、镍的复合纳米TiO_2-ZnO有序多孔膜。以多孔膜中的铁、镍为催化剂,通过化学气相沉积法(CVD)原位生长碳纳米管(CNT),得到CNT/Fe-Ni-TiO_2/ZnO/FTO(Ni)三维交互多孔复合膜。场发射扫描电镜观察发现,当TiO_2-ZnO前驱体中TiO_2与ZnO的体积比为3∶2时,复合膜中孔排布的规整性较好。采用X射线衍射仪、紫外-可见吸收光谱、电化学阻抗谱分析和光催化辅助电解水制氢等仪器和手段考察多孔复合膜的结构与性能,结果表明:孔结构的规整性、TiO_2-ZnO异质结和CNT与复合膜形成的三维网络结构有利于提高光生电子-空穴对的分离效率和复合膜材料的光催化活性。 展开更多
关键词 催化剂 二氧化钛 氧化锌 复合材料 碳纳米管 制氢
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Study on Chemisorption, Catalytic Behavior, and Stability of Supported Au Catalyst for the Propylene Epoxidation Reaction
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作者 Feifei Sun Shunhe Zhong 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2006年第1期45-51,共7页
The supported Au/TiO2 and Au/TiO2-SiO2 catalysts were prepared by deposition precipitation method. The TPD study reveals that propylene oxide competes with propylene to be adsorbed on the same adsorptive center-Ti^n+... The supported Au/TiO2 and Au/TiO2-SiO2 catalysts were prepared by deposition precipitation method. The TPD study reveals that propylene oxide competes with propylene to be adsorbed on the same adsorptive center-Ti^n+ site on the surface of the catalyst and that the adisorbing capacity of the catalyst for propylene oxide is larger than that for propylene. Catalytic behavior for propylene epoxidation with H2 and O2 was tested in a micro-reactor. Under typical conditions, the selectivity for propylene oxide is over 87%. The TG curves show that PO successive oxidation cause carbon deposition on the active center and deactivation of the Au catalysts. Because the amounts of Tin+ site decrease significantly, and consequently the separation between Ti^n+ sites increases, the Au/TiO2-SiO2 catalyst is more stable than Au/TiO2. 展开更多
关键词 au/tio2 au/tio2-SiO2 PROPYLENE propylene oxide EPOXIDAtioN catalyst stability
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Nanoporous Silicon-Based Ammonia-Fed Fuel Cells
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作者 Tayyar D. Dzhafarov Sureyya Aydin Yuksel Mustafa Aydin 《Materials Sciences and Applications》 2014年第14期1020-1026,共7页
The objective of the paper is to report results on fabrication, structural, morphological and performance characteristics of novel TiO2/PS/Si, Au/TiO2/PS/Si and Au/PS/Si direct ammonia fuel cells (DAFC) using nanoporo... The objective of the paper is to report results on fabrication, structural, morphological and performance characteristics of novel TiO2/PS/Si, Au/TiO2/PS/Si and Au/PS/Si direct ammonia fuel cells (DAFC) using nanoporous silicon (PS) as proton conducting membrane (instead of traditional polymer Nafion membrane) and TiO2, Au/TiO2 or Au as catalyst layer. Porous silicon layers have been prepared by electrochemical modification of silicon substrates. Films containing titanium dioxide are more efficient catalysts for hydrogen production from ammonia solution. The Au/ TiO2/PS/Si cell exhibited the open circuit voltage 0.87 V and performance of 1.6 mW/cm2 with 50% ammonia solution as fuel at room temperature. Mechanisms of proton transport in nanoporous silicon membrane and generation of electricity in DAFC have been considered. Advantages of investigated direct ammonia fuel cells consist in simplicity of fabrication technology, which can be integrated into standard silicon micro fabrication processes and operation of cells at room temperature. The work demonstrates that the PS based fuel cells have potential for portable applications. 展开更多
关键词 NANOPOROUS Silicon Membrane Fuel Cell au/tio2 catalyst AMMONIA ELECTROLYTE Power Density
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