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Highly efficient conversion of terpenoid biomass to jet-fuel range cycloalkanes in a biphasic tandem catalytic process

机译:双相串联催化过程中萜类生物量高效转化萜类生物质对喷射 - 燃料水分环烷烃

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摘要

The demand for bio-jet fuels to reduce carbon emissions is increasing substantially in the aviation sector, while the scarcity of high-density jet fuel components limits the use of bio-jet fuels in high-performance aircrafts compared with conventional jet fuels. Herein, we report a novel biphasic tandem catalytic process (biTCP) for synthesizing cycloalkanes from renewable terpenoid biomass, such as 1,8-cineole. Multistep tandem reactions, including C-O ring opening by hydrolysis, dehydration, and hydrogenation, were carried out in the "one-pot" biTCP. 1,8-Cineole was efficiently converted to p-menthane at high yields (>99%) in the biTCP under mild reaction conditions. The catalytic reaction mechanism is discussed.
机译:与传统喷射燃料相比,对生物射流减少碳排放的需求在航空部门的基本上增加了大幅增加,而高密度射流燃料部件的稀缺限制了高性能飞机中的生物喷射燃料的使用。 在此,我们报告了一种新的双相串联催化方法(BITCP),用于将环烷烃从可再生萜类生物量(如1,8-桉树)合成。 多步骤串联反应,包括通过水解,脱水和氢化的C-O环开口,在“单罐”比特液中进行。 在温和的反应条件下,在比特氏菌布中高产率(> 99%)在低收率(> 99%)下有效地转化1,8-鳞片。 讨论了催化反应机理。

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