Hydrogen production from oxidative steam reforming of ethanol in a palladium–silver alloy composite membrane reactor

Wen-Hsiung Lin , Ying-Chi Liu , Hsin-Fu Chang
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引用次数: 22

Abstract

In this investigation, we studied the oxidative steam reforming reaction of ethanol in a Pd–Ag/PSS membrane reactor for the production of high purity hydrogen. Palladium and silver were deposited on porous stainless steel (PSS) tube via the sequential electroless plating procedure with an overall film thickness of 20 μm and Pd/Ag weight ratio of 78/22. An ethanol–water mixture (nwater/nethanol = 1 or 3) and oxygen (noxygen/nethanol = 0.2, 0.7 or 1.0) were fed concurrently into the membrane reactor packed with Zn–Cu commercial catalyst (MDC-3). The reaction temperatures were set at 593–723 K and the pressures at 3–10 atm. The hydrogen flux in the permeation side increased proportionately with increasing pressure; however, it reduced slightly when increasing oxygen input. This is probably due to the fast oxidation reaction that consumes hydrogen before the onset of the steam reforming reaction. The effect of oxygen plays a vital role on the ethanol oxidation steam reforming reaction, especially for a Pd–Ag membrane reactor in which a higher flux of hydrogen is required. The selectivity of CO2 increased with increasing flow rate of oxygen, while the selectivity of CO remained almost the same.

钯银合金复合膜反应器中乙醇氧化蒸汽重整制氢
在Pd-Ag /PSS膜反应器中,研究了乙醇的氧化蒸汽重整反应制备高纯氢气。采用顺序化学镀工艺在多孔不锈钢(PSS)管上沉积钯和银,镀层总厚度为20 μm, Pd/Ag重量比为78/22。将乙醇-水混合物(nwater/ ne= 1或3)和氧气(oxygen/ ne= 0.2、0.7或1.0)同时送入填充有Zn-Cu商业催化剂(MDC-3)的膜反应器中。反应温度为593 ~ 723 K,压力为3 ~ 10atm。随着压力的增加,渗透侧的氢通量成比例地增加;然而,当氧气输入增加时,它略有下降。这可能是由于快速氧化反应,在蒸汽重整反应开始之前消耗氢。氧的影响对乙醇氧化蒸汽重整反应起着至关重要的作用,特别是对于需要较高氢通量的钯银膜反应器。CO2的选择性随氧气流量的增加而增加,而CO的选择性基本保持不变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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