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NOVEL CATALYSIS OF TiO_2 FOR THE CATALYTIC ALCOHOLS SYNTHESIS FROM CO AND H_2O

机译:CO和H_2O催化醇合成TiO_2的新型催化剂

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Conversion of CO to useful chemicals has been widely investigated by many workers. The typical process for the production of methanol has involved the reaction of carbon monoxide with hydrogen. Copper, zinc and chromium oxides are often selected as catalysts. An alternative process is that CO reacts with H_2O to produce alcohols. It is of particular advantage that no hydrogen is required and CO can be provided as a byproduct from the steel industry, the partial oxidation of coal and typical coal gasification processes. In 1984, R. J. Klinger et al. [1] first reported the reaction (3CO + 2H_2O = CH_3OH + 2CO_2). They considered that a lead oxide and an alkali metal format catalyst combination catalyzed the reaction. However, the catalyst deactivated sbwly with reaction progressing because of the reduction of PbO in the presence of CO. How to keep the catalyst active sites not to be reduced in the presence of CO is the key point for the reaction. In our experiment, it is found that TiO_2 possesses such feature in the presence of CO for the reaction and it shows much better catalytic performance. Some interesting results have been achieved in the present paper.
机译:许多工人已被广泛调查CO转换为有用的化学品。甲醇生产的典型方法涉及一氧化碳与氢气的反应。通常选择铜,锌和铬氧化物作为催化剂。替代方法是CO与H_2O反应产生醇。特别优点是,不需要氢,并且可以作为钢铁工业的副产物提供CO的CO,煤炭和典型的煤气化过程的部分氧化。 1984年,R. J. Klinger等。 [1]首先报道了反应(3CO + 2H_2O = CH_3OH + 2CO_2)。他们认为氧化铅和碱金属形式催化剂组合催化反应。然而,由于在CO存在下,通过减少PBO的反应进行催化剂的反应进展。如何保持催化剂活性位点在CO存在下不降低是反应的关键点。在我们的实验中,发现TiO_2具有在CO的反应存在下具有此类特征,并且表现出更好的催化性能。本文取得了一些有趣的结果。

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