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PARTIAL OXIDATION OF METHANE TO METHANOLOVER Mo/La-Co-OXIDE CATALYSTS

机译:将甲烷的部分氧化在甲醇甲烷钼/ LA-氧化物催化剂中

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Direct and selective oxidation of methane to methanol (SOM) with O_2 is one of the most attractive challenge in catalysis and chemical engineering. Considerable effort has been devoted to developing effective catalysts so far, but poor CH_3OH selectivity and yield have been obtained on the most of catalysts. Generally speaking, higher CH_3OH selectivity and yield could be reached when using N_2O as oxidant instead of O_2. It is reason that N_2O easily produces O~- species, which are more reactive species responsible for the formation of CH_3OH than O~(2-) species . However, N_2O is too expensive and corrosive to be used as oxidant in industrial process of SOM. On the other hand, if SOM can be accomplished near natural gas field (at evaluated pessure), the cost of SOM process will greatly reduce. Therefore, it is necessary to further develop well-working catalysts in SOM with O_2 as oxidant at evaluated pressure. The pervosikite type oxide has high ability of activation of molecular oxygen, due to possessing lattice deficient sites. To our knowledge, the pervosikite oxide catalysts show good activity in combustion of methane, partial oxidation of methane to syngas and oxidative coupling of methane etc. Few research works on using pervosikite oxide as catalysts in SOM have been reported so far. Here, Mo/La-Co-Oxide catalysts were investigated and found to have excellent performance in SOM with O_2 as oxidant.
机译:直接和甲烷的甲醇(SOM)选择性氧化与O_2是在催化和化学工程的最有吸引力的挑战之一。相当多的努力,一直致力于开发有效的催化剂,到目前为止,但对大多数催化剂已经获得差CH_3OH选择性和产率。一般来说,较高的CH_3OH选择性和产能利用N_2O为氧化剂,而不是O_2时到达。这是原因,容易N_2O产生O〜 - 物种,其负责形成CH_3OH的比O〜(2-)物种多种反应性物质。然而,N_2O太贵和腐蚀性用作在SOM的工业过程的氧化剂。在另一方面,如果SOM可以邻近天然气田(在评价pessure)来完成,SOM过程的成本将大大降低。因此,有必要与O_2进一步发展在SOM工作良好的催化剂,如在评估压力的氧化剂。所述pervosikite型氧化物具有分子氧的活化能力高,由于具有晶格缺陷的位点。据我们所知,在pervosikite氧化物催化剂表现出甲烷,甲烷合成气的部分氧化燃烧良好的活性和氧化对在SOM催化剂迄今已报告了使用pervosikite氧化偶联甲烷等少数研究工作。在这里,莫/ LA钴氧化物催化剂进行了调查,发现有SOM优异的性能与O_2为氧化剂。

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