Department of Chemical Physics, Anhui Key Laboratory of Biomass Clean Energy, University of Science & Technology of China, Hefei, Anhui 230026, PR China.
Bioresour Technol. 2013 May;136:222-9. doi: 10.1016/j.biortech.2013.02.100. Epub 2013 Mar 7.
Biomass conversion into benzene, toluene and xylenes (BTX) can provide basic feedstocks for the petrochemical industry, which also serve as the most important aromatic platform molecules for development of high-end chemicals. Present work explored a new route for transformation of bio-oil tar into BTX through current-enhanced catalytic conversion (CECC), involving the synergistic effect between the zeolite catalyst and current to promote the deoxygenation and cracking reactions. The proposed transformation shows an excellent BTX aromatics selectivity of 92.9 C-mol% with 25.1 wt.% yield at 400 °C over usual HZSM-5 catalyst. The study of the model compounds revealed that the groups such as methoxy, hydroxyl and methyl in aromatics can be effectively removed in the CECC process. Present transformation potentially provides an important approach for production of the key petrochemicals of BTX and the overall use of bio-oil tar derived from bio-oil or biomass.
生物量转化为苯、甲苯和二甲苯(BTX)可以为石化工业提供基础原料,也可以作为开发高端化学品的最重要的芳烃平台分子。本工作探索了通过电流增强催化转化(CECC)将生物油焦油转化为 BTX 的新途径,该途径涉及沸石催化剂和电流之间的协同作用,以促进脱氧和裂化反应。在通常的 HZSM-5 催化剂上,在 400°C 下,该转化具有优异的 BTX 芳烃选择性 92.9 C-mol%,收率为 25.1 wt.%。模型化合物的研究表明,在 CECC 过程中可以有效去除芳烃中的甲氧基、羟基和甲基等基团。本转化为 BTX 等关键石化产品的生产和生物油或生物质衍生的生物油焦油的综合利用提供了一个重要途径。