首页> 外文期刊>Journal of network and computer applications >Production of ultrapure hydrogen via utilizing fluidization concept from coupling of methanol and benzene synthesis in a hydrogen-permselective membrane reactor
【24h】

Production of ultrapure hydrogen via utilizing fluidization concept from coupling of methanol and benzene synthesis in a hydrogen-permselective membrane reactor

机译:利用流化概念,通过氢选择性渗透膜反应器中甲醇和苯的合成反应制得超纯氢

获取原文
获取原文并翻译 | 示例

摘要

In this work, a novel fluidized-bed thermally coupled membrane reactor has been proposed for simultaneous hydrogen, methanol and benzene production. Methanol synthesis is carried out in exothermic side which is a fluidized-bed reactor and supplies the necessary heat for the endothermic side. Dehydrogenation of cyclohexane is carried out in endo-thermic side with hydrogen-permselective Pd/Ag membrane wall. Selective permeation of hydrogen through the membrane in endothermic side is achieved by co-current flow of sweep gas through the permeation side. A steady-state fixed-bed heterogeneous model for dehydrogenation reactor and two-phase theory in bubbling regime of fluidization for methanol synthesis reactor is used to model and simulate the integrated proposed system. This reactor configuration solves some observed drawbacks of new thermally coupled membrane reactor such as internal mass transfer limitations, pressure drop, radial gradient of concentration and temperature in both sides. The proposed model has been used to compare the performance of a fluidized-bed thermally coupled membrane reactor (FTCMR) with thermally coupled membrane reactor (TCMR) and conventional methanol reactor (CR) at identical process conditions. This comparison demonstrates that fluidizing the catalytic bed in the exothermic side of reactor caused a favorable temperature profile along the FTCMR. Furthermore, the simulation results represent 5.6% enhancement in the yield of hydrogen recovery in comparison with TCMR.
机译:在这项工作中,提出了一种新颖的流化床热耦合膜反应器,用于同时生产氢气,甲醇和苯。甲醇的合成是在作为流化床反应器的放热侧进行的,并为吸热侧提供必要的热量。环己烷的脱氢在具有氢选择性渗透的Pd / Ag膜壁的吸热侧进行。氢气在吸热侧通过膜的选择性渗透是通过吹扫气体并流通过渗透侧实现的。采用脱氢反应器的稳态固定床非均质模型和甲醇合成反应器沸腾沸腾状态的两相理论对所提出的系统进行建模和仿真。这种反应器配置解决了新型热耦合膜反应器的一些缺点,例如内部传质限制,压降,两侧浓度和温度的径向梯度。所提出的模型已用于比较流化床热耦合膜反应器(FTCMR)与热耦合膜反应器(TCMR)和常规甲醇反应器(CR)在相同工艺条件下的性能。该比较表明,在反应器的放热侧使催化床流化引起沿FTMCR的有利温度分布。此外,与TCMR相比,模拟结果表明氢气回收率提高了5.6%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号