The synthesis of acetone from isobutane with the intermediate of di-tert-butyl peroxide

Ning Li, Chunyi Li
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Abstract

Acetone, a widely used chemical raw material, is synthesized by the cumene peroxide method. At present, the cumene peroxide method has the disadvantage of high raw material cost, low flexibility, and complex process. Isobutane as an important C4 resource is mainly used as liquefied gas, which is a waste of fossil resources. Based on that, a novel acetone synthesis method from isobutane with the intermediate of di-tert-butyl peroxide (DTBP) is proposed. The reaction performance of TiO2-S and the optimal reaction condition for isobutane selective oxidation to DTBP is evaluated, and the selectivity to DTBP is 30 wt%. Then, the ZSM-5 is proved as the optimal catalyst for DTBP decomposition and the acetone selectivity is 38 wt% under the optimal reaction condition. In general, isobutane selective oxidation to DTBP which is further catalytic decomposition to acetone is feasible.
利用二叔丁基过氧化物中间体从异丁烷合成丙酮
丙酮是一种广泛使用的化工原料,其合成方法是过氧化二甲苯法。目前,过氧化二甲苯法存在原料成本高、灵活性低、工艺复杂等缺点。异丁烷作为一种重要的 C4 资源,主要以液化气的形式使用,浪费了化石资源。在此基础上,提出了一种以二叔丁基过氧化物(DTBP)为中间体从异丁烷合成丙酮的新方法。评估了 TiO2-S 的反应性能以及异丁烷选择性氧化为 DTBP 的最佳反应条件,发现 DTBP 的选择性为 30 wt%。然后,ZSM-5 被证明是分解 DTBP 的最佳催化剂,在最佳反应条件下,丙酮的选择性为 38 wt%。总之,异丁烷选择性氧化为 DTBP,然后进一步催化分解为丙酮是可行的。
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