Institute of Nuclear and New Energy Technology, Tsinghua University, Beijing 100084, PR China.
Bioresour Technol. 2012 Nov;124:190-8. doi: 10.1016/j.biortech.2012.08.013. Epub 2012 Aug 17.
This paper presents bio-oil preparation by direct liquefaction of Dunaliella tertiolecta (D. tertiolecta) with sub/supercritical ethanol-water as the medium in a batch autoclave with high temperature and high pressure. The results indicated that ethanol and water showed synergistic effects on direct liquefaction of D. tertiolecta. The maximum bio-oil yield was 64.68%, with an optimal D. tertiolecta conversion of 98.24% in sub/supercritical ethanol-water. The detailed chemical compositional analysis of the bio-oil was performed using an EA, FT-IR, and GC-MS. The empirical formulas of the bio-oil obtained using the ethanol-water co-solvent (40%, v/v) and sole water as the reaction medium were CH(1.52)O(0.14)N(0.06) and CH(1.43)O(0.23)N(0.09), with calorific values of 34.96 and 29.80 MJ kg(-1), respectively. XPS and SEM results showed that ethanol-water is a very effective reaction medium in the liquefaction. A plausible reaction mechanism of the main chemical component in D. tertiolecta is proposed based on our results and the literatures.
本文采用高温高压间歇式反应釜,以亚/超临界乙醇-水为溶剂,对杜氏盐藻(D. tertiolecta)进行直接液化制备生物油。结果表明,乙醇和水对 D. tertiolecta 的直接液化具有协同作用。在亚/超临界乙醇-水中,生物油得率最高可达 64.68%,D. tertiolecta 的转化率最优可达 98.24%。采用 EA、FT-IR 和 GC-MS 对生物油的详细化学成分进行了分析。使用乙醇-水共溶剂(40%,v/v)和纯水作为反应介质得到的生物油的经验式分别为 CH(1.52)O(0.14)N(0.06)和 CH(1.43)O(0.23)N(0.09),热值分别为 34.96 和 29.80 MJ kg(-1)。XPS 和 SEM 结果表明,乙醇-水是一种非常有效的液化反应介质。根据我们的结果和文献,提出了 D. tertiolecta 中主要化学组分的可能反应机理。