通过使用中央复合设计 (CCD) 通过酸催化化加强和优化FAME合成
Alaaddin M M Saeed1,2, Shivika Sharma2, Saeikh Zaffar Hassan2
1UNILAB, State Key Laboratory of Chemical Engineering, East China University of Science and Technology, Shanghai 200237, China.
ACS omega
|July 31, 2023
概括
这项研究优化了从高自由脂肪酸 (FFA) 原料中生产生物柴油的低温化工艺. 一种共同溶剂方法有效地实现了95%的FFA转化,减少了能源使用.
科学领域:
- 化学工程是化学工程的重要组成部分.
- 可再生能源可再生能源是可再生能源.
- 催化剂是一种催化剂.
背景情况:
- 酸催化化对于从高自由脂肪酸 (FFA) 原料中生产生物柴油至关重要,防止催化转化过程中的肥化.
- 酸催化化中的逆水解降低了脂肪酸甲基 (FAME) 的产量,需要加强工艺.
研究的目的:
- 开发和优化低温工艺强化以提高生物柴油产量.
- 为了减少高FFA原料的化过程中的能源消耗.
主要方法:
- 研究了三种强化系统:共同溶剂技术,共同溶剂与分子水吸附,以及基于引流器的连续除水.
- 使用中央复合材料设计 (CCD) 为没有水吸附的共同溶剂系统优化了化过程变量.
- 在各种条件下评估的FFA转换 (X_FFA).
主要成果:
- 与其他系统相比,没有吸附水的共同溶剂系统有效地在低温下加强了FFA转化.
- 在优化的条件下,在55°C时75分钟内实现了95%的FFA转化.
- 具体的优化参数包括20mL/100g油DEE,9MR,3重%H2SO4和320-350 RPM.
结论:
- 开发的低温共溶剂化工艺对于加强从高FFA原料中生产生物柴油非常有效.
- 与传统方法相比,这种方法可显著降低能源消耗.
- 优化的工艺显示出高的FFA转化率,从而提高了生物柴油产量.
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