首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Methane Carbonylation with CO on Sulfated Zirconia: Evidence from Solid-State NMR for the Selective Formation of Acetic Acid
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Methane Carbonylation with CO on Sulfated Zirconia: Evidence from Solid-State NMR for the Selective Formation of Acetic Acid

机译:在硫酸氧化锆上用CO进行甲烷羰基化:来自固态NMR选择性形成乙酸的证据

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摘要

Using ~(13)C and ~1H solid-state NMR it has been shown, that methane can be carbonylated with carbon monoxide to give acetic acid on solid acid catalyst, sulfated zirconia. The carbonylation occurs at 473-573 K with high selectivity and essential conversion. The reaction proceeds both in the absence and in the presence of molecular oxygen. In the presence of oxygen, the catalyst can be used for the carbonylation of further portion of methane without reactivation in air. The mechanism of the reaction is discussed. The reaction observed opens up new possibilities of using sulfated zirconia-based solid catalysts for the synthesis of acetic acid from methane and carbon monoxide.
机译:使用〜(13)C和〜1H固态NMR已显示,甲烷可以用一氧化碳羰基化,在固体酸催化剂硫酸化氧化锆上生成乙酸。羰基化在473-573 K处发生,具有高选择性和必要的转化率。该反应在不存在和存在分子氧的情况下都进行。在氧气存在下,该催化剂可用于另一部分甲烷的羰基化而无需在空气中再活化。讨论了反应机理。观察到的反应开辟了使用硫酸化氧化锆基固体催化剂从甲烷和一氧化碳合成乙酸的新可能性。

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