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加德夫催化研究所和乐高大学合作,在低温下以低选择性将甲烷直接氧化成甲醇。研究结果已经发表在《科学》上。据了解,液体甲醇被广泛用于其他化学品的原料,并且作为替代燃料源具有相当大的潜力。然而,将甲烷转化为甲醇则需要通过高温和高压的间接方法来实现。该合作团队的研究人员发现了一种在更温和的反应条件下使用Au-Pd胶体催化剂选择性将甲烷直接转化成甲醇的方法。研究发现,使用Au-Pd纳米颗粒作为催化剂可以建立稳
The Galdolf Catalysts Institute works with Lego University to directly oxidize methane to methanol with low selectivity at low temperatures. The findings have been published in Science. It is understood that liquid methanol is widely used as a raw material for other chemicals and has considerable potential as an alternative fuel source. However, the conversion of methane to methanol requires an indirect method of high temperature and pressure. The team’s researchers found a way to selectively convert methane directly to methanol using the Au-Pd colloidal catalyst under milder reaction conditions. The study found that the use of Au-Pd nanoparticles as a catalyst can establish stability