首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Methanol steam reforming in a microchannel reactor coated with spray pyrolysis method for durable Cu/ZnO nanocatalyst
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Methanol steam reforming in a microchannel reactor coated with spray pyrolysis method for durable Cu/ZnO nanocatalyst

机译:耐用Cu / ZnO纳米催化剂喷雾热解法的微通道反应器中甲醇蒸汽重整

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In this study, hydrogen production was carried out in microreactor by methanol steam reforming process. Electro etching method was used to obtain microchannels with different channel width and depth. Although there are different traditional methods for the catalyst to be used in hydrogen production, the spray pyrolysis method was chosen due to its many advantages. This method is a very effective and innovative when it is considered that microreactors are coated for hydrogen production. The system for spray pyrolysis coating was designed and setup. Thanks to this method, the coating of the reactor with nanocatalyst was carried out in a single step. Synthesis and coating with spray pyrolysis in a single step provided some advantages in terms of coating quality as well as saving time besides the durability tested by ultrasound experiments. In the last stage of the study, a methanol steam reforming system was setup to carry out the experiments in a catalyst-coated microreactor. Hydrogen production was carried out different steams / carbon ratios, different reactor temperatures, different feed rates. As a result, 94 % methanol conversion, 3% CO and 69 % H2 content were obtained for 275 degrees C reactor temperature, 1.8 steam/carbon (S/C) ratio and 0.02 cm3/min feed rate. In the literature, there are similar results in transformation and H2 selectivity. However, in this study, the synthesis and coating with catalyst spray pyrolysis in one step provided both financial and time advantages.
机译:在该研究中,通过甲醇蒸汽重整过程在微反应器中进行氢气。使用电蚀刻方法来获得具有不同通道宽度和深度的微通道。虽然存在不同的传统方法对于氢气生产催化剂,但由于其许多优点,选择喷雾热解方法。当认为微反应器被涂覆氢气产生时,这种方法是一种非常有效和创新性。设计并设置了喷雾热解涂层的系统。由于这种方法,用纳米催化剂的反应器涂覆在单一步骤中进行。在单一步骤中具有喷雾热解的合成和涂层在涂布质量方面提供了一些优点,以及超声试验测试的耐久性之外的节省时间。在该研究的最后阶段,设置了甲醇蒸汽重整系统,以在催化剂涂覆的微反应器中进行实验。氢气产生不同的蒸汽/碳比,不同的反应器温度,不同的饲料速率。结果,获得了94%的甲醇转化,3%CO和69%H 2含量为275℃反应器温度,1.8蒸汽/碳(S / C)比和0.02cm 3 / min进料速率。在文献中,改变和H2选择性存在类似的结果。然而,在该研究中,在一步中具有催化剂喷雾热解的合成和涂层提供了财务和时间的优点。

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