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Microwave-Assisted Extraction of Soybean and Rice Bran Oil: Yield and Extraction Kinetics

机译:微波辅助提取大豆和米糠油的收率和动力学

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摘要

Microwave-assisted solvent extraction has the potential to replace traditional solvent extraction of oils and fats from a variety of feedstock. The purpose of this study was to optimize oil extraction parameters for a batch microwave system from two feedstocks: soybeans and rice bran. Solvent-feedstock mixtures were exposed to microwave radiation for different time-temperature combinations ranging from 60° C to 120° C for up to 20 min with simultaneous magnetic stirring. The solvent (ethanol) to feedstock ratio used was 3:1. After extraction, solid-liquid separation was performed in a vacuum filter, and ethanol was evaporated from the filtrate in a vacuum centrifuge. Results showed that the oil yield changed with temperature and achieved a maximumvalue in a relatively short time (order of minutes). Continuous exposure after this time did not increase the oil yield. The results compared well with traditional solvent extraction, especially when accounting for the extremely short extraction times (min vs. h). Maximum oil yields of 17.3% and 17.2% at 20 min and 120° C were achieved by microwave extraction as compared to 11.3% and 12.4% using control extraction for soybeans and rice bran, respectively. The major advantage of microwave-assisted solvent extraction is the reduced time of extraction required to obtain -95% of total recoverable oil, with corresponding reduction in energy consumption costs per unit of oil extracted.
机译:微波辅助溶剂萃取有可能取代传统溶剂从多种原料中萃取油脂的潜力。这项研究的目的是从两种原料(大豆和米糠)优化间歇式微波系统的油提取参数。在同时进行磁力搅拌的同时,将溶剂-原料混合物暴露于微波辐射下,时间范围从60°C至120°C,持续时间长达20分钟。所使用的溶剂(乙醇)与原料的比例为3∶1。萃取后,在真空过滤器中进行固液分离,并在真空离心机中从滤液中蒸发出乙醇。结果表明,油的产率随温度而变化,并在相对较短的时间内(几分钟)达到最大值。在这段时间之后连续暴露并没有增加油的产率。结果与传统的溶剂萃取相比非常好,尤其是考虑到极短的萃取时间(min vs. h)时。通过微波萃取在20分钟和120°C时可获得的最高油产率为17.3%和17.2%,而对于大豆和米糠而言,采用对照萃取的最高油产率分别为11.3%和12.4%。微波辅助溶剂萃取的主要优点是减少了获得-95%的总可采油所需的萃取时间,并相应地降低了单位萃取油的能耗成本。

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