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首页> 外文期刊>International journal of hydrogen energy >Biomass gasification coupled with producer gas cleaning, bottling and HTS catalyst treatment for H2-rich gas production
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Biomass gasification coupled with producer gas cleaning, bottling and HTS catalyst treatment for H2-rich gas production

机译:生物质气化,结合生产气净化,装瓶和HTS催化剂处理,以生产富含H2的气体

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摘要

The aim of the present study is to demonstrate the production of hydrogen-rich fuel gas from J. curcas residue cake. A comprehensive experimental study for the production of hydrogen rich fuel gas from J. curcas residue cake via downdraft gasification followed by high temperature water gas shift catalytic treatment has been carried out. The gasification experiments are performed at different equivalence ratios and performance of the process is reported in terms of producer gas composition & its calorific value, gas production rate and cold gas efficiency. The producer gas is cleaned of tar and particulate matters by passing it through venturi scrubber followed by sand bed filter. The clean producer gas is then compressed at 0.6 MPa and bottled into a gas cylinder. The bottled producer gas and a simulated mixture of producer gas are then subjected to high temperature shift (HTS) catalytic treatment for hydrogen enriched gas production. The effect of three different operating parameters GHSV, steam to CO ratio and reactor temperature on the product gas composition and CO conversion is reported. From the experimental study it is found that, the presence of oxygen in the bottled producer gas has affected the catalyst activity. Moreover, higher concentration of oxygen concentration in the bottled producer gas leads to the instantaneous deactivation of the HTS catalyst. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本研究的目的是证明由麻疯树渣饼生产富氢燃料气。已经进行了一项综合实验研究,该研究是通过向下气流气化然后高温水煤气变换催化处理从麻疯树渣饼中生产富氢燃料气的。气化实验是在不同的当量比下进行的,并且根据生产气体的组成及其发热量,产气率和冷气效率报告了该工艺的性能。使生产气通过文丘里洗涤器,然后经过沙床过滤器,以除去焦油和颗粒物。然后将清洁的产生器气体在0.6 MPa压力下压缩并装瓶到气瓶中。然后将瓶装的生产气和生产气的模拟混合物进行高温变换(HTS)催化处理,以生产富氢气体。报道了三种不同的操作参数GHSV,蒸汽与CO的比率以及反应器温度对产物气体组成和CO转化率的影响。从实验研究中发现,瓶装生产气中氧气的存在影响了催化剂的活性。此外,瓶装生产气中较高的氧气浓度会导致HTS催化剂瞬时失活。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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