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在非晶态钛锆混合氧化物负载部分还原的镍钴催化剂上高效解聚木质素制备液体燃料。

Efficient depolymerization of Kraft lignin to liquid fuels over an amorphous titanium-zirconium mixed oxide supported partially reduced nickel-cobalt catalyst.

机构信息

Laboratory of Basic Research in Biomass Conversion and Utilization, University of Science and Technology of China, Hefei 230026, PR China; CAS Key Laboratory of Renewable Energy, Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences, Guangzhou 510640, PR China.

Laboratory of Basic Research in Biomass Conversion and Utilization, University of Science and Technology of China, Hefei 230026, PR China.

出版信息

Bioresour Technol. 2019 Jul;284:293-301. doi: 10.1016/j.biortech.2019.03.126. Epub 2019 Mar 26.

Abstract

A series of non-precious metal/metal oxide nickel-cobalt catalysts was prepared for a highly efficient depolymerization of Kraft lignin (KL) into liquid fuels using amorphous TiZr-oxide (TiZrO) as a carrier. The effects of Ni-NiO, Co-CoO, NiCo-NiCoO, NiCoO and NiCo catalysts supported on amorphous TiZr-oxide carrier on KL depolymerization were investigated. It was found that the NiCo-NiCoO/TiZrO catalyst is optimal for converting KL to petroleum ether (PE)-soluble product (mainly composed of monomers and dimers) in an 80.2% high yield at 320 °C for 24 h, with excellent reusability and a low formation of char. Under these conditions, the higher heating value (HHV) increased from 25.11 to 33.89 MJ/kg. A meticulous study on NiCo-NiCoO/TiZrO catalysts revealed that the synergistic effect among Lewis acid sites, basic sites and metal active sites played an important role in obtaining high yields of monomers and low rates of char formation during lignin conversion.

摘要

采用无定形 TiZr 氧化物 (TiZrO) 作为载体,制备了一系列非贵金属/金属氧化物镍-钴催化剂,用于高效解聚 Kraft 木质素 (KL) 成液体燃料。研究了负载在无定形 TiZrO 载体上的 Ni-NiO、Co-CoO、NiCo-NiCoO、NiCoO 和 NiCo 催化剂对 KL 解聚的影响。结果表明,在 320°C 反应 24 小时的条件下,NiCo-NiCoO/TiZrO 催化剂可将 KL 高效转化为石油醚 (PE)-可溶产物(主要由单体和二聚体组成),收率高达 80.2%,具有优异的可重复使用性和较低的炭生成率。在此条件下,高位热值 (HHV) 从 25.11 增加到 33.89 MJ/kg。对 NiCo-NiCoO/TiZrO 催化剂的深入研究表明,路易斯酸位、碱性位和金属活性位之间的协同作用在木质素转化过程中获得高单体收率和低炭生成率方面发挥了重要作用。

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