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首页> 外文期刊>European Journal of Lipid Science and Technology >Interactions Between Hammer Mill Crushing Variables and Malaxation Time During Continuous Olive Oil Extraction
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Interactions Between Hammer Mill Crushing Variables and Malaxation Time During Continuous Olive Oil Extraction

机译:连续橄榄油萃取过程中锤磨机破碎变量与疟原虫时间之间的相互作用

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摘要

Hammer mill crushing variables and malaxation time are studied through a two-level factor factorial experimental design in order to assess the impact of these parameters and their interactions on olive oil extraction efficiency, overall quality, and minor components composition. Extraction efficiency is mainly affected by the interaction between hammer mill grid size and malaxation time; higher yields are obtained when smaller grid sizes are combined with longer malaxation times. Regarding quality parameters and volatile compounds, the main effect is caused by malaxation time. Phenolic compounds are affected by all the studied parameters, hammer mill grid size has the highest impact on their final concentration in the oil. The results show that the effect of malaxation time on the studied variables is conditioned by the crushing parameters used during paste preparation.Practical Applications: Traditionally, the impact of processing variables on olive oil composition has been studied following a one-variable-at-a-time approach. A factor factorial experimental design allows the interactions among crushing conditions and malaxation time to be determined, as well as the individual contributions to extraction efficiency and minor components composition of these variables. Considering a more holistic approach to the study of olive oil extraction might provide processors with a wider spectrum of tools to maximize both yield and quality during olive oil processing. Interaction of grid size, rotor speed, and malaxation time during olive oil extraction affects extraction efficiency, volatiles, and phenolics.
机译:通过两级因子因子阶乘实验设计研究了锤磨机破碎变量和发病时间,以评估这些参数的影响及其对橄榄油提取效率,整体质量和次要成分组成的影响。提取效率主要受锤磨机栅格尺寸和疟原时间之间相互作用的影响;当较小的栅格尺寸与较长的疟原发射时间结合时,获得较高的产量。关于质量参数和挥发性化合物,主要效果是由疟疾时间引起的。酚醛化合物受到所有研究的所有参数的影响,锤式磨机栅格尺寸对其在油中的最终浓度的影响最高。结果表明,浆料制备期间使用的破碎参数调节疟疾时间对所研究变量的影响。施加的应用:传统上,在一个可变的AT-A AT-A的一个可变AT-A后,研究了处理变量对橄榄油组合物的影响 - 时间方法。因子因子阶乘实验设计允许确定破碎条件和疟疾时间之间的相互作用,以及对这些变量的提取效率和少量组分组成的个体贡献。考虑到橄榄油提取研究的更加整体方法可以提供具有更广泛的工具的处理器,以最大限度地提高橄榄油加工过程中的产量和质量。橄榄油萃取过程中网格尺寸,转子速度和疟原虫时间的相互作用影响提取效率,挥发物和酚类。

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