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Ionic liquid-enhanced immobilization of biosynthesized Au nanoparticles on TS-1 toward efficient catalysts for propylene epoxidation

机译:离子液体将TS-1上的生物合成Au纳米粒子固定化为有效的丙烯环氧化催化剂

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摘要

The direct vapor-phase epoxidation of propylene in the presence of hydrogen and oxygen was studied at a space velocity of 7000mLh~(-1)gcat.-1 over gold catalysts with varying gold and titanium contents prepared by ionic liquid-enhanced immobilization (ILEI) method in which biosynthesized gold nanoparticles (GNPs) were immobilized onto the titanium silicalite-1 (TS-1) supports through the assistance of a small amount of 1-butyl-3-methylimidazolium tetrafluoroborate ([BMIM][BF_4]). The results showed that [BMIM] ~+ specially adsorbed onto the support to increase its isoelectric point, leading to the enhanced immobilization. The propylene conversion of 14.6% and PO formation rate of 164.4g_(po)Kgcat.-1h~(-1) were higher than those in any other reports, probably attributing to enhanced interaction between the GNPs and TS-1. Furthermore, the excellent activity and high selectivity of the Au/TS-1 catalysts at a relatively high reaction temperature might be attributed to the existence of residual biomolecules on the catalysts.
机译:研究了离子液体增强固定化制备的金,钛含量不同的金催化剂在氢和氧存在下丙烯在7000mLh〜(-1)gcat.-1的空速下直接气相环氧化的方法。 )的方法,其中借助于少量的1-丁基-3-甲基咪唑四氟硼酸酯([BMIM] [BF_4])将生物合成的金纳米颗粒(GNP)固定在钛Siliconlite-1(TS-1)载体上。结果表明,[BMIM]〜+专门吸附在载体上以增加其等电点,从而提高了固定性。丙烯转化率为14.6%,PO生成率为164.4g_(po)Kgcat.-1h〜(-1)高于其他任何报告,可能归因于GNP与TS-1之间的相互作用增强。此外,Au / TS-1催化剂在较高反应温度下的出色活性和高选择性可能归因于催化剂上残留的生物分子的存在。

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