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首页> 外文期刊>Journal of the American Oil Chemists' Society >Solvent-based fatty alcohol synthesis using supercritical butane. Thermodynamic analysis
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Solvent-based fatty alcohol synthesis using supercritical butane. Thermodynamic analysis

机译:使用超临界丁烷的溶剂型脂肪醇合成。热力学分析

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摘要

Conventional liquid-phase fatty ester hydrogenolysis processes are-necessarily operated at high pressures owing to the limited solubility of hydrogen in the reaction medium. In a solvent-based process this problem can be overcome, but recycling and product-solvent separation may turn out to be difficult. An alternative is the use of supercritical solvents, for which the solubility of fatty esters and fatty alcohols is high. Dropping the pressure into the subcritical domain allows for easy product separation and reactant recycle. In the present work we have analyzed the hydrogenolysis of methyl palmitate in supercritical butane. A reliable estimation of properties of the supercritical mixture can be obtained by fitting experimental vapor-liquid equilibrium data with Schwatzentruber-Renon cubic equation of state. The reaction mixture remains supercritical for a maximum pressure of 9 MPa and temperature of 470 K for mole fractions of hydrogen and methyl palmitate of 0.1 and 0.025, respectively. In these conditions an equilibrium conversion of more than 99% can be reached. An industrial process is feasible.
机译:由于氢在反应介质中的溶解度有限,常规的液相脂肪酸酯氢解方法必须在高压下进行。在基于溶剂的过程中,可以解决此问题,但循环利用和产物-溶剂分离可能会变得困难。一种替代方法是使用超临界溶剂,对于这些溶剂,脂肪酯和脂肪醇的溶解度很高。将压力降低到亚临界范围内可轻松实现产品分离和反应物再循环。在目前的工作中,我们已经分析了棕榈酸甲酯在超临界丁烷中的氢解反应。通过将实验气液平衡数据与Schwatzentruber-Renon立方状态方程拟合,可以获得超临界混合物性能的可靠估计。对于氢气和棕榈酸甲酯的摩尔分数分别为0.1和0.025而言,反应混合物在9 MPa的最大压力和470 K的温度下保持超临界状态。在这些条件下,可以达到超过99%的平衡转化率。工业过程是可行的。

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