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Gas assisted mechanical expression of oilseeds:Influence of process parameters on oil yield

机译:气体辅助油料种子机械表达:工艺参数对油料产量的影响

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摘要

Gas assisted mechanical expression(GAME)utilizes the solubility of supercritical CO2 in vegetable oils to enhance the oil yields of mechanical expression of oil seeds.The general applicability of GAME was demonstrated with experiments with sesame,linseed,rapeseed,palm kernel and jatropha(hulled and dehulled)at 40°C and varying mechanical pressures(10-70 MPa).Furthermore,the influence of moisture content,temperature and CO2-pressure on oil yield and rate of seedbed compaction was investigated.Yields obtained with GAME were up to 30wt.% higher than conventional expression at the same effective mechanical pressure and temperature.GAME yields for hulled and dehulled seeds were very similar,despite the lower yields for hulled seeds in conventional expression.Up to 10 MPa CO2 yield increased significantly with CO2-pressure.The displacement of oil by dissolved CO2 was identified as the major cause of increased oil yields for both hulled and dehulled seeds.The entrainment of oil during CO2 depressurization is another major cause of increasing oil yield for hulled seeds.
机译:气体辅助机械表达(GAME)利用超临界CO2在植物​​油中的溶解度来提高油料种子机械表达的出油率。通过芝麻,亚麻籽,油菜籽,棕榈仁和麻疯树(去壳)的实验证明了GAME的普遍适用性。在40°C和变化的机械压力(10-70 MPa)下进行脱壳。此外,研究了水分含量,温度和CO2压力对油料产量和苗床压实率的影响.GAME获得的收率最高为30wt在相同的有效机械压力和温度下,脱壳种子的GAME产量非常相似,尽管在常规表达中脱壳种子的产量较低。高达10 MPa的CO2产量随CO2压力显着增加。溶解的CO2驱油被认为是脱壳和脱壳种子油产量增加的主要原因。再硫化是增加去壳种子含油量的另一个主要原因。

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