Sivasamy Arumugam, Cheah Kien Yoo, Fornasiero Paolo, Kemausuor Francis, Zinoviev Sergey, Miertus Stanislav
Area of Pure and Applied Chemistry, International Centre for Science and High Technology-United Nations Industrial Development Organization (ICS-UNIDO), Area Science Park, Padriciano 99, 34012 Trieste, Italy.
ChemSusChem. 2009;2(4):278-300. doi: 10.1002/cssc.200800253.
The predicted shortage of fossil fuels and related environmental concerns have recently attracted significant attention to scientific and technological issues concerning the conversion of biomass into fuels. First-generation biodiesel, obtained from vegetable oils and animal fats by transesterification, relies on commercial technology and rich scientific background, though continuous progress in this field offers opportunities for improvement. This review focuses on new catalytic systems for the transesterification of oils to the corresponding ethyl/methyl esters of fatty acids. It also addresses some innovative/emerging technologies for the production of biodiesel, such as the catalytic hydrocracking of vegetable oils to hydrocarbons. The special role of the catalyst as a key to efficient technology is outlined, together with the other important factors that affect the yield and quality of the product, including feedstock-related properties and various system conditions.
预计的化石燃料短缺以及相关环境问题,近来已引起人们对生物质转化为燃料的科学技术问题的高度关注。第一代生物柴油是通过植物油和动物脂肪的酯交换反应制得的,它依赖于商业技术和丰富的科学背景,尽管该领域的不断进步提供了改进的机会。本综述聚焦于用于将油酯交换为相应脂肪酸乙酯/甲酯的新型催化体系。它还探讨了一些用于生产生物柴油的创新/新兴技术,例如植物油催化加氢裂化制烃类。概述了催化剂作为高效技术关键的特殊作用,以及影响产品产率和质量的其他重要因素,包括与原料相关的特性和各种系统条件。