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首页> 外文期刊>The Journal of Supercritical Fluids >Separation of alkanes and alcohols with supercritical fluids. Part II. Influence of process parameters and size of operating range
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Separation of alkanes and alcohols with supercritical fluids. Part II. Influence of process parameters and size of operating range

机译:用超临界流体分离烷烃和醇类。第二部分工艺参数和工作范围大小的影响

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This paper is the continuation of a previous study on the investigation of the separation of detergent range alkanes and alcohols with supercritical fluids. Specifically this paper presents results on the optimisation of the process parameters for the separation of n-tetradecane and 1 -dodecanol with supercritical carbon dioxide and ethane. The optimum operating conditions were determined from the results of a study of the influence of the process parameters, as well as an investigation into the size of the operating range. The results showed that the optimum temperature is a balance between good separation at lower temperatures and better control at higher temperatures. The solvent-to-feed ratio should be kept low (within the range of vapour-continuous operation) as lower solvent-to-feed ratios result in improved separation, as well as lower energy requirements. The use of reflux is necessary for good separation when using carbon dioxide as solvent, but is not required with ethane as solvent. An analysis of the operating range showed that a process using ethane is easier to control. Ethane as solvent is technically superior to carbon dioxide yet, depending on the exact process and location, costs, safety and logistics may favour the use of carbon dioxide.
机译:本文是先前研究中用超临界流体分离洗涤剂范围的烷烃和醇类的研究的延续。具体而言,本文介绍了用超临界二氧化碳和乙烷分离正十四烷和1-十二烷醇的工艺参数的优化结果。最佳工作条件是根据对工艺参数影响的研究结果以及对工作范围大小的调查确定的。结果表明,最佳温度是较低温度下的良好分离和较高温度下的较好控制之间的平衡。溶剂进料比应保持较低(在蒸气连续操作范围内),因为较低的溶剂进料比可改善分离效果,并降低能耗。当使用二氧化碳作为溶剂时,为了获得良好的分离效果,必须使用回流,但是对于乙烷,则不需要。对操作范围的分析表明,使用乙烷的工艺更易于控制。乙烷作为溶剂在技术上优于二氧化碳,但取决于确切的工艺和位置,成本,安全性和物流,可能会有利于二氧化碳的使用。

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