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A Ceramic-Membrane-Based Methane Combustion Reactor with Tailored Function of Simultaneous Separation of Carbon Dioxide from Nitrogen

机译:基于陶瓷膜的甲烷燃烧反应器,具有来自氮气同时分离二氧化碳的定制功能

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Today, industry has become more dependent on natural gases and combustion processes, creating a tremendous pressure to reduce their emissions. Although the current methods such as chemical looping combustion (CLC) and pure oxygen combustion have several advantages, there are still many limitations. A ceramic membrane based methane combustion reactor is an environmentally friendly technique for heat and power generation. This work investigates the performance of a perovskite-type SrSc_(0.1)Co_(0.9)O_(3-δ) (SSC) membrane reactor for the catalytic combustion of methane. For this purpose, the mixed ionic and electronic conducting SSC oxygen-permeable planar membrane was prepared by a dry-pressing technique, and the SSC powder catalyst was spray coated on the permeation side of the membrane. Then, the prepared SSC membrane with the catalyst was used to perform the catalytic combustion of methane. The oxygen permeability of the membrane reactor was studied. Also, the methane conversion rates and CO_2 selectivity at various test conditions were reported.
机译:如今,行业已更加依赖天然气和燃烧过程,为减少排放产生巨大的压力。虽然电流诸如化学循环燃烧(CLC)和纯氧燃烧等方法具有若干优点,但仍有许多限制。基于陶瓷膜的甲烷燃烧反应器是一种环境友好的热和发电技术。该工作研究了用于甲烷催化燃烧的钙钛矿型SRSC_(0.1)CO_(0.1)CO_(3-δ)(SSC)膜反应器的性能。为此目的,通过干压技术制备混合离子和电子导电SSC透氧平面膜,并将SSC粉末催化剂喷涂涂覆在膜的渗透侧。然后,使用具有催化剂的制备的SSC膜来进行甲烷的催化燃烧。研究了膜反应器的透氧性。此外,报道了在各种试验条件下甲烷转化率和CO_2选择性。

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