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SINGLE STEP OXIDATION OF METHANE TO METHANOL-TOWARDS BETTER UNDERSTANDING

机译:单步氧化甲烷与甲醇 - 更好地理解

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The potential use of methanol as a fuel is well known. Many research scientists are working on single stage production of methanol. Currently it is being produced by a conventional two-step process which is expensive and energy intensive. Conversion of methane to a liquid fuel is a more desirable alternative to compressed natural gas due to ease of storage. The two-step process produces liquid methanol by the steam reforming of methane to synthesis gas followed by the high pressure catalytic conversion of the synthesis gas to methanol. Partial oxidation route offers the advantage of directly converting methane to methanol in a single step reaction. An economically feasible one step process could significantly reduce cost of methanol production cost saving millions of dollars. The methanol thus obtained from methane is in an energy form that is much easier to transport and is more efficient fuel. This would make methane a much more attractive and valuable energy source. Because of increasing demands for energy and environmental protection, the two-step process which includes energy intensive syngas manufacturing is incompatible; here the partial oxidation of methane through the direct synthesis of methanol has been a field of extensive research work for many decades. Nevertheless, yields of organic oxygenates are generally quite low. The methanol yield is generally no more than 5%. This article discusses about thermodynamic feasibility of reaction of direct oxidation of methane. Even thermodynamic analysis shows that at lower temperature signle step process is more favourable over two step reforming process. However, side reactions and poor selectivity possess major challenge. Even after referred first time in 1902, still it poses a major challenge for researchers. This article also describes the work already done and recent advancements in the single-step oxidation of methane to methanol to enhance selectivity of methanol.
机译:众所周知,甲醇作为燃料的潜在使用。许多研究科学家正在研究单一阶段生产的甲醇。目前它正在由传统的两步过程生产,这是昂贵且能量密集的。将甲烷转化为液体燃料是由于易于储存而压缩天然气的更理想的替代方案。两步方法通过甲烷的蒸汽重整产生液体甲醇,然后将合成气的高压催化转化为甲醇。部分氧化途径提供在单步反应中直接将甲烷转化为甲醇的优点。一种经济上可行的一步过程可以显着降低甲醇生产成本的成本节省数百万美元。由甲烷得到的甲醇是能量形式,其更容易运输并且更有效的燃料。这将使甲烷成为更具吸引力和有价值的能源。由于对能源和环保的需求增加,包括能源密集合成气制造的两步过程不相容;在这里,通过直接合成甲醇的部分氧化是多十年来广泛的研究工作领域。然而,有机含氧化合物的产率通常非常低。甲醇产率通常不超过5%。本文讨论了甲烷直接氧化反应的热力学可行性。甚至热力学分析表明,在较低温度签名步骤过程中,在两个步长重整过程中更有利。然而,副反应和选择性差具有重大挑战。即使在1902年首次提到之后,它仍然对研究人员来说仍然存在主要挑战。本文还描述了已经完成的工作和最近的甲烷对甲醇的最新进展,以提高甲醇的选择性。

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