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Interplay Between Bromine and Iodine in Oxidative Dehydrogenation

机译:溴与碘在氧化脱氢中的相互作用

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Oxidative dehydrogenation is a promising way to produce olefins, diolefins and aromatics. However, the product yield is limited by the consecutive oxidation of the product to oxygenated products. The highest yield reported for propane oxidative dehydrogenation is only about 30%. Alternatively, halogens can be used as oxidants in oxidative dehydrogenations. Although the iodine process is highly selective, it requires very high reaction temperatures (approximate to 900K) to give a good yield of C3H6+C3H7I, and iodine is too expensive for industrial deployment. Bromine is a more reactive oxidant but less selective towards C3H6 and C3H7Br. We show that the use of bromine-iodine mixtures with low iodine content (no greater than 20%) results in up to 80% of C3H6+C3H7X single-pass yield at moderate reaction temperatures (<800K). The results are promising for developing a low temperature on-purpose propylene technology. Furthermore, the underlying chemistry might be extended to the synthesis of many other commercially desirable unsaturated hydrocarbons.
机译:氧化脱氢是生产烯烃,二烯烃和芳烃的有希望的方法。然而,产物产率受到产物与氧化产物的连续氧化的限制。丙烷氧化脱氢报告的最高产量仅为约30%。或者,卤素可以用作氧化脱氢的氧化剂。尽管碘过程是高度选择性的,但它需要非常高的反应温度(近似为900k),得到良好的C3H6 + C3H7I产率,碘对于工业部署而言过于昂贵。溴是一种更反应性的氧化剂,但对C3H6和C3H7BR的选择性较少。我们表明,使用低碘含量(不大于20%)的溴 - 碘混合物导致高达80%的C3H6 + C3H7X单通过产率(<800K)。结果是开发低温丙烯技术的有希望的。此外,潜在的化学物质可能扩展到许多其他商业上所需的不饱和烃的合成。

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