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氧化锌负载金和铂选择催化氧化燃料电池氢源中微量CO的研究 被引量:6
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作者 张金昌 王艳辉 +2 位作者 马润宇 吴迪镛 王祥生 《北京化工大学学报(自然科学版)》 CAS CSCD 2003年第1期1-4,共4页
采用共沉淀法制备了负载型Au/ZnO催化剂 ,采用催化氧化方法脱除富氢中微量的CO研究结果表明 ,催化剂中Au的合适含量 (质量分数 )为 1 5 % ,适宜的焙烧温度为 3 0 0℃ ,即Au( 1 5 ) /ZnO 3 0 0。在Au( 1 5 ) /ZnO 3 0 0体系中加入少量的... 采用共沉淀法制备了负载型Au/ZnO催化剂 ,采用催化氧化方法脱除富氢中微量的CO研究结果表明 ,催化剂中Au的合适含量 (质量分数 )为 1 5 % ,适宜的焙烧温度为 3 0 0℃ ,即Au( 1 5 ) /ZnO 3 0 0。在Au( 1 5 ) /ZnO 3 0 0体系中加入少量的PtO组分有利于提高催化剂的稳定性。进一步研究表明 ,当Pt含量超过 1 0 %时 ,会降低催化剂的催化氧化选择性。因此在实验条件下 ,催化剂比较理想的组成为 1 5 %Au ,1 0 %Pt,焙烧温度为 3 0 0℃ ,即Au( 1 5 ) Pt( 1 0 ) /ZnO 3 0 0。对制备的催化剂采用XRD ,BET进行了基本表征 。 展开更多
关键词 氧化锌 选择催化氧化 燃料电池 氢源 CO Au/zno催化剂 au-pt/zno 负载型催化剂
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Microwave-Assisted Transition Metal Nanostructure Synthesis: Power-Law Signature Verification
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作者 Victor J. Law Denis P. Dowling 《American Journal of Analytical Chemistry》 2023年第8期326-349,共24页
A power-law (y = cx<sup>n</sup>) signature between process energy budget (kJ) and process energy density (kJ·ml<sup>-1</sup>) of microwave-assisted synthesis of silver and gold nanostructu... A power-law (y = cx<sup>n</sup>) signature between process energy budget (kJ) and process energy density (kJ·ml<sup>-1</sup>) of microwave-assisted synthesis of silver and gold nanostructures has been recently described [Law and Denis. AJAC, 14(4), 149-174, (2023)]. This study explores this relation further for palladium, platinum, and zinc oxide nanostructures. Parametric cluster analysis and statistical analysis is used to test the power-law signature of over four orders of magnitude as a function of six microwave applicator-types metal precursor, non-Green Chemistry synthesis and claimed Green Chemistry. It is found that for the claimed Green Chemistry, process energy budget ranges from 0.291 to 900 kJ, with a residual error ranging between −33 to +25.9 kJ·ml<sup>-1</sup>. The non-Green Chemistry synthesis has a higher process energy budget range from 3.2 kJ to 3.3 MJ, with a residual error of −33.3 to +245.3 kJ·ml<sup>-1</sup>. It is also found that the energy profile over time produced by software controlled digestion applicators is poorly reported which leads to residual error problematic outliers that produce possible phase-transition in the power-law signature. The original Au and Ag database and new Pd, Pt and ZnO database (with and without problematic outliers) yield a global microwave-assisted synthesis power-law signature constants of c = 0.7172 ± 0.3214 kJ·ml<sup>-1</sup> at x-axes = 0.001 kJ, and the exponent, n = 0.791 ± 0.055. The information in this study is aimed to understand variations in historical microwave-assisted synthesis processes, and develop new scale-out synthesis through process intensification. 展开更多
关键词 Microwave-Assisted Synthesis PD Ag Pt AU zno POWER-LAW Residual Error Statistical Analysis Parametric Cluster Analysis
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