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异辛烷蒸汽重整制氢的研究 Ⅱ.抗硫中毒Pt/CeO_2/Al_2O_3催化剂的程序升温还原表征 被引量:7
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作者 薛青松 高立达 +2 位作者 陈金春 路勇 何鸣元 《石油化工》 CAS CSCD 北大核心 2008年第5期439-444,共6页
利用程序升温还原方法研究了Pt/CeO2/Al2O3催化剂中Pt与CeO2/Al2O3载体间的强相互作用,考察了γ-Al2O3、CeO2/Al2O3载体和Pt/CeO2/Al2O3催化剂焙烧温度、Pt和CeO2负载量对催化剂还原行为的影响。表征结果显示,用800℃焙烧的γ-Al2O3负... 利用程序升温还原方法研究了Pt/CeO2/Al2O3催化剂中Pt与CeO2/Al2O3载体间的强相互作用,考察了γ-Al2O3、CeO2/Al2O3载体和Pt/CeO2/Al2O3催化剂焙烧温度、Pt和CeO2负载量对催化剂还原行为的影响。表征结果显示,用800℃焙烧的γ-Al2O3负载质量分数15%的CeO2,再在450℃焙烧后制备的CeO2/Al2O3载体的CeO2还原活性最好,以该载体负载质量分数0.8%的Pt,再在600℃焙烧后制备的Pt/CeO2/Al2O3催化剂为最优化催化剂。该催化剂中Pt-CeO2间形成较强的相互作用,Pt分散性好,从而显著促进表面CeO2的还原及Pt-Ce-Al三者间形成较好的协同作用。在异辛烷蒸汽重整反应中,这种协同作用可能对有机硫快速转化生成H2S有促进作用,从而抑制硫物种在催化剂表面的沉积。 展开更多
关键词 程序升温还原 氧化铈 氧化铝 中毒催化 异辛烷 蒸汽重整 制氢
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船舶四冲程柴油机排放控制技术研究
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作者 张杰 《模具制造》 2024年第6期154-156,共3页
针对日益严苛的船舶废气排放法规,在剖析船舶四冲程柴油机排放控制技术问题的基础上,从抗硫催化材料、燃润料管控、监控诊断反馈等方面提出创新对策。研究表明,高比表面活性组分改性、燃油乳化脱硫、高速高精度传感等技术的集成应用,可... 针对日益严苛的船舶废气排放法规,在剖析船舶四冲程柴油机排放控制技术问题的基础上,从抗硫催化材料、燃润料管控、监控诊断反馈等方面提出创新对策。研究表明,高比表面活性组分改性、燃油乳化脱硫、高速高精度传感等技术的集成应用,可显著提升船舶柴油机排放系统的净化效率、耐久性与实时性,为实现超低排放提供有力保障。 展开更多
关键词 船舶柴油机 排放控制 抗硫催化 监控诊断
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Propene and CO oxidation on Pt/Ce-Zr-SO_4^(2-) diesel oxidation catalysts:Effect of sulfate on activity and stability 被引量:9
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作者 顾蕾 陈晓 +3 位作者 周瑛 朱秋莲 黄海凤 卢晗锋 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2017年第3期607-616,共10页
Platinum/cerium-zirconium-sulfate(Pt/Ce-Zr-SO_4^(2-)) catalysts were prepared by wetness impregnation.Catalytic activities were evaluated from the combustion of propene and CO.Sulfate(SO_4^(2-))addition improv... Platinum/cerium-zirconium-sulfate(Pt/Ce-Zr-SO_4^(2-)) catalysts were prepared by wetness impregnation.Catalytic activities were evaluated from the combustion of propene and CO.Sulfate(SO_4^(2-))addition improved the catalytic activity significantly.When using Pt/Ce-Zr-SO_4^(2-) with 10 wt%SO_4^(2-),the temperature for 90%conversion of propene and CO decreased by 75℃ compared with Pt/Ce-Zr.The conversion exceeded 95%at 240℃ even after 0.02%sulfur dioxide poisoning for 20 h.Temperature-programmed desorption of CO and X-ray photoelectron spectroscopy analyses revealed an improvement in Pt dispersion onto the Ce-Zr-SO_4^(2-) support,and the increased number of Pt particles built up more Pt^(-)-(SO_4^(2-))^(-) couples,which resulted in excellent activity.The increased total acidity and new Bronsted acid sites on the surface provided the Pt/Ce-Zr-SO_4^(2-) with good sulfur resistance. 展开更多
关键词 Diesel oxidation catalyst Pt/Ce-Zr-SO_4^(2-) catalyst Sulfur resistance Catalytic oxidation
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Comprehensive understanding of the superior performance of Sm-modified Fe_(2)O_(3)catalysts with regard to NO conversion and H_(2)O/SO_(2)resistance in the NH_(3)-SCR reaction 被引量:7
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作者 Chuanzhi Sun Wei Chen +4 位作者 Xuanxuan Jia Annai Liu Fei Gao Shuai Feng Lin Dong 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第3期417-430,共14页
Sm-doped Fe_(2)O_(3)catalysts,with a homogeneous distribution of Sm in Fe_(2)O_(3)nanoparticles,were synthesized using a citric acid-assisted sol-gel method.Kinetic studies show that the reaction rate for NO_(x)reduct... Sm-doped Fe_(2)O_(3)catalysts,with a homogeneous distribution of Sm in Fe_(2)O_(3)nanoparticles,were synthesized using a citric acid-assisted sol-gel method.Kinetic studies show that the reaction rate for NO_(x)reduction using the optimal catalyst(0.06 mol%doping of Sm in Fe_(2)O_(3))was nearly 11 times higher than that for pure Fe_(2)O_(3),when calculated based on specific surface area.Furthermore,the Fe_(0.94)Sm_(0.06)O_(x)catalyst maintains>83%NO_(x)conversion for 168 h at a high space velocity in the presence of SO_(2)and H_(2)O at 250℃.A substantial amount of surface-adsorbed oxygen was generated on the surface of Fe_(0.94)Sm_(0.06)O_(x),which promoted NO oxidation and the subsequent fast reaction between NO_(x)and NH_(3).The adsorption and activation of NH_(3)was also enhanced by Sm doping.In addition,Sm doping facilitated the decomposition of NH_(4)HSO_(4)on the surface of Fe_(0.94)Sm_(0.06)O_(x),resulting in its high activity and stability in the presence of SO_(2)+H_(2)O. 展开更多
关键词 NH_(3)-SCR NO_(x)conversion Sm-doped Fe_(2)O_(3) SO_(2)and H_(2)O tolerance 168 h test
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Improving anti-sulfur performance of methane sensors by new vectors and active components
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作者 WANG Ying, TONG Minming, ZHANG Tao School of Information and Electrical Engineering, China University of Mining & Technology, Xuzhou 221008, China 《Mining Science and Technology》 EI CAS 2010年第6期913-916,共4页
Conventional Pd/γ-A12O3 methane sensors are easily poisoned in a sulfur-containing atmosphere, with a subsequent decrease in sensitivity and the working life of methane sensors. We mainly investigated the effect of n... Conventional Pd/γ-A12O3 methane sensors are easily poisoned in a sulfur-containing atmosphere, with a subsequent decrease in sensitivity and the working life of methane sensors. We mainly investigated the effect of nanotechnology and a cerium co-catalyst on the stability and anti-sulfur performance of methane sensors. In our experiment, an anti-sulfur methane sensor was prepared by immersing cerium-containing γ-alumina nanometer elements into a Pt-Pd bimetallic nanometer catalyst. The experi- ment about the sensitivity and stability performance of different catalytic methane sensors indicate that sensitivity, decreased by catalyst sulfur poisoning, is improved significantly by adding cerium to the vector. As well, the long-term operational stability of methane sensors increased significantly. 展开更多
关键词 CERIUM anti-sulfur STABILITY sensitivity
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