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首页> 外文期刊>Journal of the American Oil Chemists' Society >FATTY METHYL ESTER HYDROGENATION TO FATTY ALCOHOL .2. PROCESS ISSUES
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FATTY METHYL ESTER HYDROGENATION TO FATTY ALCOHOL .2. PROCESS ISSUES

机译:脂肪酸甲酯加氢为脂肪醇.2。过程问题

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摘要

Fatty alcohols are produced by hydrogenating fatty methyl esters in slurry phase in the presence of copper chromite catalyst at temperatures of 250-300 degrees C and hydrogen pressures of 2000-3000 psi. The fatty methyl ester, catalyst, and hydrogen are fed to the reactor cocurrently. The product slurry is passed through gas-liquid separators and then through a continuous filtration system for removal of the catalyst. A portion of the used catalyst in crude alcohol is recycled to the hydrogenator. The overall efficiency of the process depends upon the intrinsic activity, life, and filterability of the catalyst. The fatty alcohol producer therefore requires a catalyst with high activity, long life, and good separation properties. The main goal of the present laboratory investigation was to develop a superior copper chromite catalyst for the slurry-phase process. Two copper chromite catalysts, prepared by different procedures, were tested for methyl ester hydrogenolysis activity, reusability, and filtration characteristics. The reaction was carried out in a batch autoclave at 280 degrees C and 2000-3000 psi hydrogen pressure. The reaction rates were calculated by assuming a kinetic mechanism that was first-order in methyl ester concentration. The catalyst with the narrower particle size distribution was 30% more active, filtered faster, and maintained activity for several more uses than the catalyst with the broader particle size distribution. X-ray photoelectron spec troscopy data showed higher surface copper concentrations for the former catalyst. [References: 4]
机译:在亚铬酸铜催化剂存在下,在250-300℃的温度和2000-3000 psi的氢气压力下,通过在淤浆相中氢化淤浆相中的脂肪甲酯来生产脂肪醇。脂肪甲基酯,催化剂和氢气被同时加入反应器中。产物浆液通过气液分离器,然后通过连续过滤系统以除去催化剂。将粗制醇中的一部分用过的催化剂循环到氢化器中。该方法的总效率取决于催化剂的固有活性,寿命和可过滤性。因此,脂肪醇生产商需要具有高活性,长寿命和良好分离性能的催化剂。本实验室研究的主要目的是开发一种用于浆相工艺的优质亚铬酸铜催化剂。测试了通过不同程序制备的两种亚铬酸铜催化剂的甲酯氢解活性,可重复使用性和过滤特性。反应在间歇高压釜中在280℃和2000-3000psi氢气压力下进行。通过假设动力学机理是甲酯浓度的一级来计算反应速率。与具有较宽粒度分布的催化剂相比,具有较窄粒度分布的催化剂的活性高30%,过滤速度更快,并且在多次使用中仍保持活性。 X射线光电子能谱数据表明前一种催化剂的表面铜浓度较高。 [参考:4]

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