CO2 selective reduction to CO with H2 over a CeO2-supported nano-Au catalyst at atmospheric pres- sure was investigated. A high CO2 conversion, approaching the thermodynamic equilibrium value, and nearly 100% CO selec...CO2 selective reduction to CO with H2 over a CeO2-supported nano-Au catalyst at atmospheric pres- sure was investigated. A high CO2 conversion, approaching the thermodynamic equilibrium value, and nearly 100% CO selectivity were obtained. The surface formate intermediates generated during the reverse water-gas shift reaction at 400 ℃ were identified using in situ diffuse-reflectance infra- red Fourier-transform spectroscopy. The formate consumption to give CO and H20, determined using mass spectrometry, indicated that the reaction proceeded via an associative formate mecha- nism; this contributes to the high Au/CeO2 catalytic activity at low temperatures.展开更多
通过沉积沉淀法制备了Au负载量为3%的Au/CeO2催化剂,并利用表征手段结合固定床反应器试验研究了催化剂的理化特性和催化水煤气变换反应(water gas shift reaction,WGSR)的活性.结果表明:Au元素均匀地分散在了载体表面,改善了催化剂的氧...通过沉积沉淀法制备了Au负载量为3%的Au/CeO2催化剂,并利用表征手段结合固定床反应器试验研究了催化剂的理化特性和催化水煤气变换反应(water gas shift reaction,WGSR)的活性.结果表明:Au元素均匀地分散在了载体表面,改善了催化剂的氧化还原性能和CO吸附性能,进而提高了催化剂的活性,当反应温度为300℃时,WGSR试验中CO转化率提高了56.0%,O2促进了催化剂表面碳酸盐类物质的分解,恢复了催化剂的表面活性位,明显提高了低温下CO的转化率;当反应温度在200,250℃时,CO转化率分别提高了15.0%和17.5%.展开更多
基金supported by the National Natural Science Foundation of China (11475041, 11175036, 21373037)the Fundamental Research Funds for the Central Universities (DUT16QY49)~~
文摘CO2 selective reduction to CO with H2 over a CeO2-supported nano-Au catalyst at atmospheric pres- sure was investigated. A high CO2 conversion, approaching the thermodynamic equilibrium value, and nearly 100% CO selectivity were obtained. The surface formate intermediates generated during the reverse water-gas shift reaction at 400 ℃ were identified using in situ diffuse-reflectance infra- red Fourier-transform spectroscopy. The formate consumption to give CO and H20, determined using mass spectrometry, indicated that the reaction proceeded via an associative formate mecha- nism; this contributes to the high Au/CeO2 catalytic activity at low temperatures.
文摘通过沉积沉淀法制备了Au负载量为3%的Au/CeO2催化剂,并利用表征手段结合固定床反应器试验研究了催化剂的理化特性和催化水煤气变换反应(water gas shift reaction,WGSR)的活性.结果表明:Au元素均匀地分散在了载体表面,改善了催化剂的氧化还原性能和CO吸附性能,进而提高了催化剂的活性,当反应温度为300℃时,WGSR试验中CO转化率提高了56.0%,O2促进了催化剂表面碳酸盐类物质的分解,恢复了催化剂的表面活性位,明显提高了低温下CO的转化率;当反应温度在200,250℃时,CO转化率分别提高了15.0%和17.5%.