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Effect of Type of Metals on Site Selective Dehydrogenation of Stearic Acid

机译:金属类型对硬脂酸的场地选择性脱氢的影响

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Short-chain fatty acids (SCFAs) have been used as raw materials in wide range of chemical and medical applications. One technique to produce SCFAs is oxidative cleavage of long-chain fatty acids (LCFAs). However, unless the LCFAs are unsaturated, the yield of SCFAs is often very low because the carboxylic group of the fatty acid is more active than other part of the molecule. This work explores the idea of introducing a double bond into saturated LCFA, i.e., stearic acid, via selective dehydrogenation using commercial heterogeneous catalysts. However, cracking of the LCFA is also catalysed. Different type of metals was therefore investigated to study the effect of metals on the cracking and dehydrogenation. The experiments were conducted in an autoclave reactor under inert atmosphere. The temperature was in the range of 250–350°C. The products were analysed by gas chromatography equipped with mass spectroscopy (GC/MS). The results reveal that the introduction of double bond in the aliphatic chain of the stearic acid is possible although the yields of the unsaturated LCFAs are low. Effects of various parameters, such as temperature, pressure, and reaction time, were also investigated and reported.
机译:短链脂肪酸(SCFA)已被用作各种化学和医疗应用的原料。产生SCFA的一种技术是长链脂肪酸(LCFA)的氧化切割。然而,除非LCFA是不饱和的,除非SCFA的产率通常非常低,因为脂肪酸的羧基比分子的其他部分更活跃。这项工作探讨了通过使用商业异质催化剂的选择性脱氢将双键引入饱和LCFA中的双键,即硬脂酸。但是,LCFA的破裂也是催化。因此研究了不同类型的金属,以研究金属对裂化和脱氢的影响。实验在惰性气氛下在高压釜反应器中进行。温度在250-350℃的范围内。通过配备质谱(GC / MS)的气相色谱分析产品。结果表明,尽管不饱和LCFA的产率低,但虽然不饱和LCFA的产率低,但在硬脂酸的脂族链中引入双键。还研究了各种参数,例如温度,压力和反应时间的影响,并报告。

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