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LIGNIN INTO ARENES: A NEW PLATFORM FOR THE PRODUCTION OF LIQUID BIOFUELS BY CATALYTIC H-TRANSFER REACTIONS

机译:Lignin进入竞技:通过催化H-转移反应生产液体生物燃料的新平台

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In the era of easy and cheap oil, the chemistry of aromatics has ever been directed towards the selective oxidation of arenes to phenols or other functionalized aromatics, which has led to processes of extreme importance and high-volume production currently present in the chemical industry. However, times are changing rapidly. The vast availability of lignin, and the fact that lignin will be released as a major waste in the production of cellulosic ethanol, should create new opportunities for the production of aromatics in the chemical and fuel industry. Indeed, for each 1 kg of cellulosic ethanol is 1-3 kg of lignin generated as waste. Thereby, depolymerization of lignin followed by hydrodeoxygenation rendering arenes with low boiling point could greatly facilitate the fractionation and further processing of the complex lignin products into chemical commodities (e.g. benzene, toluene, ethylbenzene and xylenes) by conventional refinery and petrochemical routes. Finally, even if the isolated product yields demonstrates to not be sufficient enough to give a suitable return in today’s chemical industry, the mixture of arenes and aliphatics could very well serve as valuable bio-additives to synthetic fuels produced by the Fischer-Tropsch synthesis, which does not produce aromatic and branched hydrocarbons.
机译:在简单和廉价的石油时代,芳烃化学物质曾被引导朝向酚类或其他官能化的芳烃的选择性氧化,这导致了在化学工业中目前存在的极端重要性和大批量生产的过程。但是,时间迅速变化。木质素的巨大可用性以及木质素将被释放为纤维素乙醇生产中的主要废物,应该为化学和燃料工业生产芳烃的生产机会。实际上,对于每1公斤纤维素乙醇是1-3kg作为废物产生的木质素。由此,通过常规炼油厂和石化途径将复合木质素产物的分级和进一步加工在低沸点中,用低沸点进行加氢氧基渲染剂的降解剂促进了复合木质素产品的分馏和进一步加工。最后,即使孤立的产品产量表明不足以在今天的化学工业中提供合适的回报,也可以将竞技和脂肪色的混合物作为由Fischer-Tropsch合成产生的合成燃料的有价值的生物添加剂,不产生芳族和支链碳氢化合物。

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