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Catalytic Dehydrogenation of Propane in Hydrogen Permselective Membrane Reactors

机译:氢选择性渗透膜反应器中丙烷的催化脱氢

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Propane dehydrogenation was studied in hydrogen permselective packed-bed membrane reactors and conventional packed-bed reactors. Two different types of developmental membranes were investigated: microporous silica-based membranes and a palladium thin film supported by a porous ceramic substrate. The membrane reactors were operated at liquid hourly space velocities (LHSVs) similar to those used in commercial reactors for propane dehydrogenation. Although the initial hydrogen permselectivity of the palladium membrane was substantially higher than that of the silica-based membranes, this membrane deactivated and eventually failed after several hours of exposure to reaction conditions. Moderate improvements in propylene yield were obtained with the silica-based membrane reactors. A propylene yield of 39.6% was obtained at an LHSV of 3 and a temperature of 823 K compared to a yield of 29.6% in a conventional packed-bed reactor operated with the same flow rate. The reaction selectivity for propylene was generally above 97 mol % in both the conventional and membrane reactors, however, catalyst deactivation rates were generally higher in the membrane reactors.
机译:在氢选择性渗透床膜反应器和常规填充床反应器中研究了丙烷脱氢。研究了两种不同类型的显影膜:基于微孔二氧化硅的膜和由多孔陶瓷基底支撑的钯薄膜。膜反应器以类似于用于丙烷脱氢的商业反应器中所用的液体时空速(LHSV)操作。尽管钯膜的初始氢渗透选择性明显高于二氧化硅基膜,但该膜失活并在暴露于反应条件数小时后最终失效。用基于二氧化硅的膜反应器获得了丙烯产率的适度提高。在3的LHSV和823 K的温度下,丙烯的产率为39.6%,而在相同流速下操作的常规填充床反应器中的产率为29.6%。在常规反应器和膜反应器中,对于丙烯的反应选择性通常都高于97mol%,但是,在膜反应器中催化剂的失活速率通常更高。

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