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A novel process for converting coalmine-drained methane gas to syngas over nickel-magnesia solid solution catalysts

机译:a novel process for converting coalmine-drained methane gas to syngas over nickel-magnesia solid solution catalysts

摘要

A novel process is developed in this paper for utilizing the coalmine-drained methane gas that is usually vented straight into the atmosphere in most coalmines worldwide. It is expected that low-cost syngas can be produced by the combined air partial oxidation and CO2 reforming of methane, because this process utilizes directly the methane, air, and carbon dioxide in the coalmine-drained gas without going through the separation step. For this purpose, a nickel-magnesia solid solution catalyst was prepared and its catalytic performance for the proposed process was investigated. It was found that calcination temperature has significant influence on the catalytic performance due to the different extent of solid solution formation in the catalysts. A uniform nickel-magnesia solid solution catalyst exhibits higher stability than the catalysts in which NiO has not completely formed solid solution with MgO. Its catalytic activity and selectivity remain stable during 120 h of reaction. The product H-2/CO ratio is mainly dependent on the feed gas composition. By changing CO2/air ratio of the feed gases, syngas with a H-2/CO ratio between 1 and 1.9 can be obtained. The influences of reaction temperature and nickel loading on the catalytic performance were also investigated. (c) 2004 Elsevier B.V All rights reserved.
机译:本文开发了一种新颖的方法来利用煤矿排放的甲烷气体,该气体在全球大多数煤矿中通常直接排放到大气中。可以预期,通过空气的部分氧化和甲烷的CO2重整相结合,可以生产低成本的合成气,因为该方法无需利用分离步骤,就直接利用了煤矿瓦斯中的甲烷,空气和二氧化碳。为此目的,制备了镍-镁固溶体催化剂,并研究了其对所提出方法的催化性能。已经发现,由于催化剂中固溶体形成的程度不同,煅烧温度对催化性能具有显着影响。均匀的镍镁固溶体催化剂比NiO尚未完全与MgO形成固溶体的催化剂具有更高的稳定性。在120小时的反应过程中,其催化活性和选择性保持稳定。产品H-2 / CO的比例主要取决于进料气的组成。通过改变进料气体的CO2 /空气比,可以获得H-1 / CO比在1至1.9之间的合成气。还研究了反应温度和镍负载量对催化性能的影响。 (c)2004 Elsevier B.V保留所有权利。

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    Xu DY; Li WZ; Ge QJ; Xu HY;

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  • 年度 2005
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