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Parameters affecting enzyme-assisted aqueous extraction of extruded sunflower meal

机译:影响膨化向日葵粉酶促水提取的参数

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摘要

Microscopic observation of sunflower meal before and after extraction indicated that extensive cellular disruption was achieved by extrusion, but that unextracted oil remained sequestered as coalesced oil within the void spaces of disrupted cotyledon cells. A full factorial design experiment was defined to develop aqueous extraction processing (AEP) with and without enzymes to improve vegetable oil extraction yields of extruded sunflower meal. This experimental design studied the influence of four parameters, agitation, liquid/solid (L/S) ratio, and cellulase and protease addition, on extraction yield of lipid and protein. Agitation and addition of cellulases increased oil extraction yield, indicating that emulsification of oil and alteration of the geometry of the confining cellular matrix were important mechanisms for improving yields. Protease and liquid-solid ratio of the extraction mixture did not have significant effects, indicating key differences with previously established soy oil extraction mechanisms. Maximum yields attained for oil and protein extraction were 39% and 90%, respectively, with the aid of a surfactant.
机译:提取前后向日葵粉的显微镜观察表明,通过挤压可实现广泛的细胞破坏,但未提取的油仍被分离为子叶细胞空隙空间中的聚结油。定义了一个完整的析因设计实验,以开发使用和不使用酶的水提取工艺(AEP),以提高葵花籽粕的植物油提取率。该实验设计研究了搅拌,液/固(L / S)比以及纤维素酶和蛋白酶添加四个参数对脂质和蛋白质提取率的影响。搅动和添加纤维素酶增加了油提取的产量,表明油的乳化和限制细胞基质的几何形状的改变是提高产量的重要机制。提取混合物中的蛋白酶和液固比没有显着影响,表明与先前建立的豆油提取机理之间存在关键差异。借助表面活性剂,提取油和蛋白质的最大收率分别为39%和90%。

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