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化工科技
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国际标准刊号:ISSN 1008-0511
国内统一刊号:CN 22-1268

摘  要:

在连续操作的管式反应器中.以大豆油为原料在压力11~19MPa,温度240~400℃的超临界甲醇条件下进行连续化制备生物柴油的研究。考察了在连续反应条件下醇油摩尔比、压力、温度、停留时间及共溶刺对大豆油转化率的影响。实验结果表明:较高的醇油摩尔比有利于油脂转化率的提高.但当醇油摩尔比超过40:1后提高醇油摩尔比对提高油脂转化率的影响不大;在11~15MPa范围内,压力升高对油脂转化率影响很大,但高于15MPa后压力对转化率的影响减弱;反应温度对油脂转化率有着重要影响,在300℃以上随着温度的升高.油脂转化率有较大幅度的上升.但温度太高油脂会发生分解反应;醇油摩尔比40:1.温度350℃.压力15MPa.停留时间1000s是该实验获得的最佳反应条件,在该条件下油脂转化率可达89%。实验还研究了添加共溶剂四氢呋喃对油脂转化率的影响。[著者文摘]

Science & Technology In Chemical Industry

栏目信息:

科研开发

分 类 号:

O623

文献标识码:

A

文章编号:

1008-0511(2007)05-0028-06

相关文章:

参考文献(25篇) 耦合文献(46篇)  主题相关

[参考文献]

Continuous preparation of biodiesel under supercritical methanol condition

WANG Cun-wen, ZHOU Jun-feng, CHEN Wen, WANG Wei-guo, WU Yaan-xin, ZHANG Jun-feng,CHI Ru-an,LI Shi-rong,DING Yi-gang (Hubei Key Laboratory of Novel Reactor and Green Chemical Technology , Wuhan Unirersity of Engineering , Wuhan 430074, China )

Abstract:

At the pressure from 11 to 19 MPa and the temperature from 240 to 400 ℃, soybean oil was utilized for continuous preparation of biodiesel under supercritical methanol condition in continuous flow tubular reactor. The effect of methanol/oil molar ratio,the temperature, the pressure,the resident time and the co-solvent upon the conversion of soybean oil were studied systematically. It is found that higher methanol/oil molar ratio can bring on higher conversion. Pressure has an obvious effect on the conversion at the range from 1i to 15 MPa, when the pressure exceed 15 MPa it takes little contribution to the conversion. Temperature influences the conversion obviously especially when it exceeds 300 ℃, but the soybean oil will decompose at too high temperature. The highest conversion 89% could be achieved at 350 ℃ and 15 MPa with methanol/oil molar ratio 40:1 and the reaction time 1 000 s. Besides,as a co-solvent, tetrahydrofuran has effect on conversion of soybean oil.[著者文摘]

Key words:

Supercritical methanol ; Biodiesel ; Transesterification; Continuous operation

收稿日期: 2007-07-29

基金资助:

国家自然科学基金资助项目(20576105);湖北省教育厅重大项目(20042001);湖北省教育厅优秀中青年创新团队基金资助项目(2003).

作者简介:

王存文(1963-),男,湖北鄂州人,武汉工程大学教授,博士,研究方向为绿色及新能源化工。

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