首页> 外文会议>Symposium on Biotechnology for Fuels and Chemicals; 20050501-04; Denver,CO(US) >Simulation and Optimization of a Supercritical Extraction Process for Recovering Provitamin A
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Simulation and Optimization of a Supercritical Extraction Process for Recovering Provitamin A

机译:回收维生素原A的超临界萃取过程的模拟与优化

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In this work, a simulation procedure of a supercritical extraction process was developed through the use of the commercial simulator HYSYS™ (Hyprotech Ltd.), adapting the existing units to the operating conditions typical of the supercritical extraction process. The objective is to recover provitamin A (β-carotene) from palm oil (esterified) using carbon dioxide/ethanol as the supercritical mixed solvent. This example characterizes the problem for recovering high added value product from natural sources, as the palm oil, which is desired by the market. Owing to the fact that esterified palm oil is a complex mixture, made by several components, in order to characterize this system in the simulator, it was necessary to create hypothetical components using the UNIFAC (universal function-group activity coefficients model) group contribution, because they are not present in a conventional database and, then, their physical properties must be estimated and/or predicted before the simulation. The optimization was carried out in each simulation for each equipment, in terms of operating conditions (temperature and pressure), in order to obtain the maximum recovery of carotenes. According to the results, it was possible to concentrate carotenes through two cycles of supercritical extraction with high yield. Furthermore, ethyl esters (biodiesel) were also obtained, as a byproduct of the proposed process, which can also be used as an alternative fuel, with the important characteristic that it is renewable.rnIndex Entries: Biodiesel; carotenes; palm oil; supercritical extraction.
机译:在这项工作中,通过使用商业模拟器HYSYS™(Hyprotech Ltd.)开发了超临界萃取过程的模拟程序,使现有设备适应了超临界萃取过程的典型运行条件。目的是使用二氧化碳/乙醇作为超临界混合溶剂从棕榈油(酯化)中回收维生素原A(β-胡萝卜素)。该实施例表征了市场所期望的从天然来源(如棕榈油)中回收高附加值产品的问题。由于酯化的棕榈油是由多种成分组成的复杂混合物,因此为了在模拟器中表征该系统,有必要使用UNIFAC(通用功能组活度系数模型)组贡献来创建假设的成分,因为它们不存在于常规数据库中,因此必须在仿真之前估计和/或预测它们的物理特性。为了获得最大的胡萝卜素回收率,在每个模拟中针对每种设备在运行条件(温度和压力)方面进行了优化。根据结果​​,可以通过两个超临界萃取周期以高收率浓缩胡萝卜素。此外,还获得了乙基酯(生物柴油),作为拟议工艺的副产品,也可以用作替代燃料,其重要特征是可再生。胡萝卜素;棕榈油;超临界萃取。

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