The Studies Characteristics of Methane/ Wet Air Autothermal Catalytic Reforming Reaction and Carbon Deposition under the Low-Temperature 甲烷/湿空气低温下自热催化重整反应与积碳特性研究
Besides, the process of methane wet-air autothermal reforming in the specific micro-tube and micro-swirl chamber is researched by numerical method. Meanwhile, the influences of reaction conditions, component ratio, and other factors on the H2 and carbon deposition from reforming in micro-channel are discussed. 通过对甲烷湿空气在微细圆管腔和微型旋流腔中低温自热重整过程的数值模拟,研究了反应条件、组分比例等因素对微通道内自热催化重整产氢及积炭的影响。
Either increase the catalytic wall temperature or enhance the raw gases initial temperature can also make a favorable impact on methane autothermal reforming. Raising the temperature will not only enhance the hydrogen yield and methane conversion, but also accelerate the reaction to achieve stability. 无论是提高反应器催化壁面温度还是提高反应混合气的初始温度,都会提高反应稳定后的产氢量和甲烷转化率,同时也会加速反应的稳定。