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Recent development of production technology of diesel- and jet-fuel-range hydrocarbons from inedible biomass

机译:柴油和喷射 - 燃料烃烃生产技术的最新发展来自Inselible BioMass的碳氢化合物

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Key catalytic processes for the production of diesel-fuel- and jet-fuel-range branched or cyclic alkanes from lignocellulose and microalgal oil are reviewed, in particular the processes for the constructing the carbon framework. Furfural, 5-hydroxymethylfurfural (HMF) and 2-methylfuran are the most fundamental building blocks (platform chemicals) in the synthesis of long chain alkanes from lignocellulose. Aldol condensation and alkylation of furan ring are key reactions to elongate the carbon chain. Hydrodeoxygenation follows the carbon chain elongation, giving final alkane product. Effective hydrodeoxygenation catalysts include Pd/Nb0PO4, Ir-Re0./ Si02 and Ni/zeolites. Pd/NbOPO4 catalyst is effective to convert furanic precursor with oxygen-containing chains. Ir-Re0x/Si02 catalyst is attractive in view of the high activity (low reaction temperature), and Ni/zeolites are attractive in view of the catalyst cost. Lignin or raw lignocellulose can be converted to mixture of alkanes including diesel-fuel- and jet-fuel-range ones using catalytic cracking, alkylation and hydrogenation. Microalgal large hydrocarbons can be converted to smaller alkanes with retention of branches in the carbon chain by Ru/Ce02-catalyzed C C hydrogenolysis.
机译:综述来自木质纤维素和微藻油的柴油 - 燃料和喷射 - 燃料和喷射 - 燃料 - 燃料 - 燃料 - 燃料 - 燃料 - 燃料 - 燃料 - 燃料和燃料 - 燃料 - 燃料 - 燃料和微藻烷烃的关键催化方法,特别是构建碳框架的方法。 Furcural,5-羟甲基糠(HMF)和2-甲基呋喃是来自木质纤维素的长链烷烃的合成中最基本的构建块(平台化学品)。呋喃环的醛醇缩合和烷基化是伸长碳链的关键反应。加氢脱氧延续涉及碳链伸长,给予最终烷烃产物。有效的加氢脱氧催化剂包括Pd / NbOPO 4,Ir -re0./ SiO 2和Ni /沸石。 PD / NBOPO4催化剂可有效地将富含含氧链的呋喃酸前体转化。 IR-RE0X / SiO 2催化剂鉴于高活性(低反应温度)而具有吸引力,并且鉴于催化剂成本,Ni /沸石具有吸引力。可以使用催化裂化,烷基化和氢化将木质素或原始木质纤维素转化为包括柴油 - 燃料和喷射燃料范围内的烷烃的混合物。微藻大型烃可以通过Ru / Ce02催化的C氢解留在碳链中的碳链中的较小烷烃转化为较小的烷烃。

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