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使用碱性催化剂通过热解大豆油生产烃类燃料。

Production of hydrocarbon fuels from pyrolysis of soybean oils using a basic catalyst.

机构信息

Institute of Chemical Industry of Forest Products, Research Institute of New Technology CAF, Nanjing 210042, China.

出版信息

Bioresour Technol. 2010 Dec;101(24):9803-6. doi: 10.1016/j.biortech.2010.06.147. Epub 2010 Aug 8.

Abstract

Triglycerides obtained from animals and plants have attracted great attention from researchers for developing an environmental friendly and high-quality fuel, free of nitrogen and sulfur. In the present work, the production of biofuel by catalytic cracking of soybean oil over a basic catalyst in a continuous pyrolysis reactor at atmospheric pressure has been studied. Experiments were designed to study the effect of different types of catalysts on the yield and acid value of the diesel and gasoline fractions from the pyrolytic oil. It was found that basic catalyst gave a product with relatively low acid number. These pyrolytic oils were also further reacted with alcohol in order to decrease their acid value. After esterification, the physico-chemical properties of these biofuels were characterized, and compared with Chinese specifications for conventional diesel fuels. The results showed that esterification of pyrolytic oil from triglycerides represents an alternative technique for producing biofuels from soybean oils with characteristics similar to those of petroleum fuels.

摘要

动植物甘油三酯因其不含氮和硫,对开发环境友好型高品质燃料具有重要意义,引起了研究人员的广泛关注。本工作采用碱性催化剂,在常压连续热解反应器中对大豆油进行催化裂化,以制备生物燃料。实验设计考察了不同类型催化剂对热解油中柴油和汽油馏分产率和酸值的影响。研究发现,碱性催化剂可得到酸值相对较低的产物。为进一步降低酸值,将这些热解油与醇进一步反应。酯化后,对这些生物燃料的理化性质进行了表征,并与中国常规柴油燃料标准进行了比较。结果表明,甘油三酯热解油的酯化反应是一种从大豆油生产生物燃料的替代技术,其特性与石油燃料相似。

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