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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Efficient oxidation of cycloalkanes with simultaneously increased conversion and selectivity using O-2 catalyzed by metalloporphyrins and boosted by Zn(AcO)(2): A practical strategy to inhibit the formation of aliphatic diacids
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Efficient oxidation of cycloalkanes with simultaneously increased conversion and selectivity using O-2 catalyzed by metalloporphyrins and boosted by Zn(AcO)(2): A practical strategy to inhibit the formation of aliphatic diacids

机译:使用由金属卟啉催化的O-2同时增加转化和选择性并通过Zn(ACO)(2)(2)(2)(2)升高,有效地氧化环烷烃,以抑制脂肪酸二酸形成的实际策略

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摘要

The direct sources of aliphatic acids in cycloalkanes oxidation were investigated, and a strategy to suppress the formation of aliphatic acids was adopted through enhancing the catalytic transformation of oxidation intermediates cycloalkyl hydroperoxides to cycloalkanols by Zn(II) and delaying the emergence of cycloalkanones. Benefitted from the delayed formation of cycloalkanones and suppressed non-selective thermal decomposition of cycloalkyl hydroperoxides, the conversion of cycloalkanes and selectivity towards cycloalkanols and cycloalkanones were increased simultaneously with satisfying tolerance to both of metalloporphyrins and substrates. For cyclohexane, the selectivity towards KA-oil was increased from 80.1% to 96.9% meanwhile the conversion was increased from 3.83 % to 6.53 %, a very competitive conversion level with higher selectivity compared with current industrial process. This protocol is not only a valuable strategy to overcome the problems of low conversion and low selectivity lying in front of current cyclohexane oxidation in industry, but also an important reference to other alkanes oxidation.
机译:研究了环烷烃氧化过程中脂肪酸的直接来源,并采用了一种抑制脂肪酸形成的策略,通过增强氧化中间体环烷氢过氧化物在Zn(II)催化下转化为环烷醇,并延迟环烷酮的出现。得益于环烷酮的延迟形成和抑制环烷氢过氧化物的非选择性热分解,环烷烃的转化率和对环烷醇和环烷酮的选择性同时增加,同时对金属卟啉和底物都有满意的耐受性。环己烷对KA油的选择性从80.1%提高到96.9%,转化率从3.83%提高到6.53%,这是一个非常有竞争力的转化水平,与目前的工业流程相比具有更高的选择性。该方案不仅是克服目前工业环己烷氧化中存在的低转化率和低选择性问题的一种有价值的策略,而且对其他烷烃氧化具有重要的参考价值。

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