Peng Jun, Chen Ping, Lou Hui, Zheng Xiaoming
Department of Chemistry, Institute of Catalysis, Zhejiang University, Hangzhou, Zhejiang, PR China.
Bioresour Technol. 2009 Jul;100(13):3415-8. doi: 10.1016/j.biortech.2009.02.007. Epub 2009 Mar 9.
The pyrolysis bio-oil from rice husk was upgraded in sub- and super-critical ethanol using HZSM-5 as catalyst. The results showed that super-critical upgrading process performed more effectively than sub-critical upgrading process. Acidic HZSM-5 facilitates esterification in super-critical ethanol to convert acids contained in crude bio-oil into various kinds of esters. Stronger acidic HZSM-5 (low Si/Al ratio) can facilitate cracking of heavy components of crude bio-oil more effectively in super-critical upgrading process. The residue of distillated upgraded bio-oil from super-critical upgrading process decreased evidently, compared with that of distillated crude bio-oil. This work proved that crude bio-oil can be effectively upgraded in super-critical upgrading process with the aid of acidic catalyst.
以HZSM-5为催化剂,在亚临界和超临界乙醇中对稻壳热解生物油进行提质。结果表明,超临界提质过程比亚临界提质过程更有效。酸性HZSM-5有利于在超临界乙醇中进行酯化反应,将粗生物油中的酸转化为各种酯类。酸性更强的HZSM-5(低硅铝比)在超临界提质过程中能更有效地促进粗生物油中重组分的裂解。与蒸馏后的粗生物油相比,超临界提质过程得到的蒸馏提质生物油残渣明显减少。这项工作证明,在酸性催化剂的辅助下,粗生物油可以在超临界提质过程中得到有效提质。