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首页> 外文期刊>RSC Advances >Highly-selective solvent-free catalytic isomerization of α-pinene to camphene over reusable titanate nanotubes
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Highly-selective solvent-free catalytic isomerization of α-pinene to camphene over reusable titanate nanotubes

机译:在可重复使用的钛酸盐纳米管上,高选择性无溶剂催化异构α-Pine酮与樟烯

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Titanate nanotubes, prepared by the hydrothermal reconstitution and modification with hydrochloric acid, were tested as solid acid catalysts in the isomerization of α-pinene under solvent free conditions. The results showed that titanate nanotubes have better catalytic properties than titanium dioxide nanoparticles, and the camphene was the main product for α-pinene isomerization. The effects of several reaction variables, such as reaction temperature, catalyst dosage, and reaction time, on the conversion of α-pinene and the selectivity to camphene were examined. The highest conversion was up to 97.8% with selectivity to camphene of 78.5% under the mild reaction conditions, and the catalyst also showed outstanding reusability after four runs. It is proposed that appropriate surface acidic sites and opened nanotubular structures are mainly responsible for the excellent catalytic performance of titanate nanotubes materials.
机译:通过水热重构和用盐酸改性制备的钛酸纳米管在溶剂无溶剂条件下在α-PinEne的异构化中被测试为固体酸催化剂。结果表明,钛酸盐纳米管具有比二氧化钛纳米颗粒更好的催化性能,并且樟烯是α-突烯异构化的主要产物。研究了几种反应变量的影响,例如反应温度,催化剂剂量和反应时间,对α-pine烯的转化和对樟烯的选择性进行了反应。最高转化率高达97.8%,在温和的反应条件下对樟树的选择性为78.5%,催化剂在四次运行后也表现出突出的可重用性。提出适当的表面酸性位点和开放的纳米管结构主要负责钛酸盐纳米管材料的优异催化性能。

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