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A Mathematical Model to Characterize RH Desulfurization Process 被引量:1
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作者 Hong-bo YANG Shu-feng YANG +1 位作者 Jing-she LI Jiang-shan ZHANG 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2014年第11期995-1001,共7页
A physical model based on similarity principles was built to simulate RH desulfurization process. In order to quantitatively analyze RH desulfurization process, a mathematical model was proposed. By analyzing experime... A physical model based on similarity principles was built to simulate RH desulfurization process. In order to quantitatively analyze RH desulfurization process, a mathematical model was proposed. By analyzing experimental results with the mathematical model, an empirical formula whose determination coefficient was 0.98 was given to express the relationship between transient desulfurization efficiency and time. All the determination coefficients of four fitted curves based on four repeated experiments with different gas flow rates were more than 0.94, which was the exact evidence of the rationality of the empirical formula. Meanwhile, it was found that transient desulfurization ability increased firstly and then decreased with increasing gas flow rate and reached the maximum value when the gas flow rate was 1.8 m^3/h. A plenty of repeated trials showed the same rule, which validated the mathematical model and the conclusions obtained from physical experiments. 展开更多
关键词 RH transient desulfurization mathematical model physical experiment trial test clesul{urization e{ficiency
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Catalytic Performance and IR Characterization of Co-Mo/Al_2O_3 and Ru-Co-Mo/Al_2O_3 Catalysts in Hydrodesulfurization
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作者 Xiao Fengshou (Department of Chemistry,, Jilin University, Changchun)Xin Qin and Guo Xiexian (National Laboratory for Catalysis, Dalian Institute of Chemical Physics, Dalian) 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 1991年第3期172-173,共2页
Recently, owing to high costs and increasing demands for better catalysts, it is worthwhile to improve its activity and selectivity, and reduce its costs. Adding secondary promoters such as phosphorus, boron, magnesiu... Recently, owing to high costs and increasing demands for better catalysts, it is worthwhile to improve its activity and selectivity, and reduce its costs. Adding secondary promoters such as phosphorus, boron, magnesium, titanium, zinc and ruthenium to Co-Mo/Al;O;catalyst has been proved to be one of the ways to attain this result. The addition of those metals or metal oxides changes the surface states of molybdenumstructure. 展开更多
关键词 Hydrodesulf urization IR spectra Ru-Co-Mo/Al2O3 Chemical adsorption
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