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Synthesis of methanol using copper-f block element bimetallic oxides as catalysts and greenhouse gases (CO2, CH4) as feedstock

机译:以铜-f嵌段元素双金属氧化物为催化剂,以温室气体(CO2,CH4)为原料合成甲醇

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摘要

The study of methanol production using copper-f block element bimetallic oxides as catalysts was undertaken. Carbon dioxide and hydrogen were used as reagents, but the addition of methane to this mixture was also studied. Catalysts were obtained by two methods: (i) Controlled oxidation of binary copper-f block element intermetallic compounds (IC) to obtain IC bimetallic oxides and (ii) impregnation followed by controlled oxidation to obtain copper-f block element oxide catalysts supported on alumina. Both types of catalysts proved to be more active for the production of methanol than a commercial Cu based catalysts (Alfa Aesar, 45776-0500). The selectivity is also very high (>90%), but the incorporation of CH4 to the feedstock has a negative effect on the catalyst behavior. The best result was that obtained with copper-cerium IC bimetallic oxide, its intrinsic activity (approximate to 900 mL(CH3OH)/m(Cu)(2).h) is 2-9 times higher in comparison with the numbers reported in the literature. To our knowledge, copper-f block element bimetallic oxides were never tested for the synthesis of methanol and the results herein reported are new and among the best reported until now. (C) 2016 Elsevier Inc. All rights reserved.
机译:进行了使用铜-f嵌段元素双金属氧化物作为催化剂生产甲醇的研究。二氧化碳和氢气被用作试剂,但是也研究了向该混合物中添加甲烷。通过两种方法获得催化剂:(i)二元铜-f嵌段元素金属间化合物(IC)的受控氧化以获得IC双金属氧化物;(ii)浸渍,然后受控氧化以获得负载在氧化铝上的铜-f嵌段元素氧化物催化剂。事实证明,两种类型的催化剂都比市售的铜基催化剂更具活性(Alfa Aesar,45776-0500)。选择性也很高(> 90%),但是将CH4掺入原料中对催化剂的性能有负面影响。最好的结果是使用铜-铈IC双金属氧化物获得的结果,其固有活性(约900 mL(CH3OH)/ m(Cu)(2).h)比在报告中报道的数字高2-9倍。文学。就我们所知,铜-f嵌段元素双金属氧化物从未进行过甲醇合成的测试,此处报道的结果是新的,也是迄今为止报道最好的结果。 (C)2016 Elsevier Inc.保留所有权利。

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