叔丁基过氧化氢催化分解制备丙酮及催化剂失活原因
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中国石油大学 国家重质油重点实验室

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TQ215

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国家自然科学基金(22178390)和山东省重点研发计划(2018GGX107011)


The synthesis of acetone by catalytic decomposition of tert-butyl hydroperoxide and the reasons for catalyst deactivation
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State Key Laboratory of Heavy Oil Processing,China University of Petroleum,Qingdao

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National Natural Science Foundation of China (22178390) and Shandong Provincial Key R&D Programme (2018GGX107011)

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    摘要:

    首次提出了以异丁烷和氧气为原料生成叔丁基过氧化氢(TBHP),然后催化TBHP分解制备丙酮的方法。对催化TBHP分解制备丙酮的最优的反应条件、催化体系、催化剂的稳定性、循环利用性以及催化剂失活的原因进行了研究。结果表明:催化剂的酸性质对反应的活性具有十分明显的影响,β分子筛具有最优的催化性能(转化率为100 %),且主要产物丙酮的选择性为49 wt%;在30 h的反应周期内,丙酮的选择性明显下降,说明催化剂的稳定性较差,但是多次再生活性仍可恢复(5次)。通过以不同产物预处理催化剂,确定了丙酮的进一步反应是催化剂失活的主要原因;使用乙醇稀释原料后反应30h的稳定性明显提高,并且催化剂的反应性能以及重复利用性并未受到影响。

    Abstract:

    For the first time,a novel method to synthesize acetone from isobutane and oxygen is proposed. Tert-butyl hydroperoxide (TBHP) is generated from isobutane and oxygen firstly, and then TBHP is catalytically decomposed to acetone. The optimal reaction conditions, catalytic system, stability and recyclability of the catalyst, and the causes of catalyst deactivation for the catalytic decomposition of TBHP to acetone were investigated. The results indicated that the acid property of the zeolite catalysts had a very obvious influence on reaction activity. The β zeolite possesses the optimal catalytic activity (100 % conversion) and the selectivity to acetone (49 wt%) than Y zeolite and ZSM-5 zeolite. Furthermore, the selectivity to acetone decreased significantly during the 30 h-reaction cycle with the catalyst of β zeolite, indicating that the catalyst was less stable. Moreover, the catalytic performance of β zeolite can be fully recovered even after regenerating for 5 times. By pretreating the catalyst with different products, it was determined that further reaction of acetone was the main reason for catalyst deactivation; the stability of the reaction for 30 h was significantly improved by diluting the feedstock with ethanol, and the catalyst"s reactivity as well as reusability were not affected.

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李宁,袁孟真,徐家乐,李修仪,王国玮,祝晓琳,李春义.叔丁基过氧化氢催化分解制备丙酮及催化剂失活原因[J].精细化工,2024,41(8):

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  • 收稿日期:2023-09-13
  • 最后修改日期:2023-10-18
  • 录用日期:2023-10-12
  • 在线发布日期: 2024-08-08
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