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Catalytic reforming of dimethyl ether in microchannels

机译:微通道中二甲醚的催化重整

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The steam reforming and oxidative steam reforming of dimethyl ether (DME) were tested at 573-773 K over a CuZn/ZrO2 catalyst in microreactors with three different types of channels: ceramic square channels with side lengths of 900 and 400 mu m, and silicon microchannels of 2 mu m of diameter. The channels were first coated with ZrOCl2 (ceramic channels) or Zr(i-PrO)(4) (silicon microchannels) and calcined at 773 K for 2 h to obtain a homogeneous and well-adhered ZrO2 layer, as determined by SEM, and then Cu and Zn (Cu: Zn= 1: 1 M, 20 wt% total metal) were co-impregnated. Operation at highly reduced residence time (10-3 s) while achieving hydrogen yields similar to those recorded over the ceramic channels was possible for the silicon microchannels due to the three orders of magnitude increased contact area. In addition, the amount of catalyst used for coating the silicon microchannels was two orders of magnitude lower with respect to the conventional ceramic channels. Outstanding specific hydrogen production rates of 0.9 L-N of H-2 per min and cm(3) of reactor volume were achieved as well as stable operation for 80 h, which demonstrates the feasibility of using on-site, on-demand hydrogen generation from DME for portable fuel cell applications.
机译:二甲醚(DME)的蒸汽重整和氧化蒸汽重整在用三种不同类型的通道中的Cuzn / ZrO2催化剂上以573-773k,在微吸附剂中进行测试:陶瓷方形通道,侧长度为900和400μm,和硅微通道直径2亩。首先将通道涂覆有Zrocl2(陶瓷通道)或Zr(I-Pro)(4)(硅微通道),并在773k下煅烧2小时,以获得均匀且粘附的ZrO2层,如SEM测定,然后Cu和Zn(Cu:Zn = 1:1M,20wt%的总金属)共浸渍。在高度降低的停留时间(10-3s)的同时,由于三个数量级增加的接触面积,因此可以对硅微通道实现类似于陶瓷通道的氢的氢产率类似于陶瓷通道。另外,用于涂覆硅微通道的催化剂的量是相对于传统陶瓷通道较低的两个数量级。实现了0.9Ln的H-2 H-2 H-2的优异氢气产物,并且达到了CM(3)的反应器体积以及80小时的稳定操作,这证明了使用现场使用的可行性来自DME的按需氢生成的可行性用于便携式燃料电池应用。

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