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Process intensification of alkynol semihydrogenation in a tube reactor coated with a Pd/ZnO catalyst

机译:涂有Pd / ZnO催化剂的管式反应器中炔醇半加氢的工艺强化

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摘要

Semihydrogenation of 2-methyl-3-butyn-2-ol (MBY) was studied in a 5 m tube reactor wall-coated with a 5 wt% Pd/ZnO catalyst. The system allowed for the excellent selectivity towards the intermediate alkene of 97.8 ± 0.2% at an ambient H2 pressure and a MBY conversion below 90%. The maximum alkene yield reached 94.6% under solvent-free conditions and 96.0% in a 30 vol % MBY aqueous solution. The reactor stability was studied for 80 h on stream with a deactivation rate of only 0.07% per hour. Such a low deactivation rate provides a continuous operation of one month with only a two-fold decrease in catalyst activity and a metal leaching below 1 parts per billion (ppb). The excellent turn-over numbers (TON) of above 105 illustrates a very efficient utilisation of the noble metal inside catalyst-coated tube reactors. When compared to batch operation at 70 °C, the reaction rate in flow reactor can be increased by eight times at a higher reaction temperature, keeping the same product decomposition of about 1% in both cases.
机译:在壁厚5 wt%的Pd / ZnO催化剂的5 m管式反应器中研究了2-甲基-3-butyn-2-ol(MBY)的半氢化反应。该系统在环境H2压力下对中间烯烃的优良选择性为97.8±0.2%,MBY转化率低于90%。在无溶剂条件下,最大烯烃收率达到94.6%,在30%(体积)MBY水溶液中,烯烃的最高收率达到96.0%。在运行中对反应器的稳定性进行了80小时的研究,失活速率仅为每小时0.07%。如此低的失活速率提供了一个月的连续运行,催化剂活性仅降低了两倍,并且金属浸出低于十亿分之一(ppb)。高于105的优异的周转数(TON)说明了在催化剂涂覆的管式反应器内部非常有效地利用了贵金属。与在70°C下分批操作相比,在较高的反应温度下,流式反应器的反应速率可以提高8倍,在两种情况下,相同的产品分解率均约为1%。

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