Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
Bioresour Technol. 2011 Jan;102(2):1933-41. doi: 10.1016/j.biortech.2010.08.038. Epub 2010 Aug 22.
Co-deoxy-liquefaction of biomass and vegetable oil was investigated under the conditions of different temperatures (350-500 °C) and residence time as well as catalyst using HZSM-5. Results suggested low temperature was favorable for the formation of diesel-like products, while high temperature caused more gasoline-like products. By the addition of HZSM-5, at 450 °C alkanes content of the obtained oil with low oxygen content of 2.28%, reached a maximum of 56.27%, resulting in the highest HHV of 43.8 MJ kg(-1). High temperature favored cracking activity of HZSM-5 which reduced the char formation and contributed to the removal of carbonyl. Compared to temperature, the effect of residence time on products was relatively less; experiments indicated the optimum residence time was 15 min at which obtained oil with the highest yield of 17.78%, had better properties. Preliminary analysis of mechanisms showed biomass provided hydrogen for vegetable oil, facilitating hydrogenation of CC bonds of vegetable oil.
生物质与植物油共液化在不同温度(350-500°C)和停留时间以及HZSM-5 催化剂的条件下进行了研究。结果表明,低温有利于生成柴油类产物,而高温则生成更多的汽油类产物。通过添加 HZSM-5,在 450°C 时,含氧量低至 2.28%的获得油中的烷烃含量达到最大值 56.27%,导致最高高热值为 43.8MJkg(-1)。高温有利于 HZSM-5 的裂化活性,减少了炭的形成,并有助于去除羰基。与温度相比,停留时间对产物的影响相对较小;实验表明,最佳停留时间为 15min,在此条件下,获得的产率最高为 17.78%的油具有更好的性能。初步的机理分析表明,生物质为植物油提供了氢,促进了植物油中 CC 键的加氢。