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Intensified degumming of crude soybean oil using cavitational reactors

机译:利用空化反应器强化大豆油的脱胶

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A novel cavitation assisted degumming approach for the purification of crude soybean oil in terms of the removal of the total phospholipid content has been reported in the work with a detailed study into the effect of operating parameters such as temperature, hydrogen peroxide loading and introduction of ozone gas at Varying flow rate. Ultrasonic horn, ultrasonic bath and hydrodynamic cavitation reactors have been used for comparing the efficacy of different types of cavitational reactors. Initially, extent of degumming was quantified at different temperatures and 60 degrees C was established as optimum to give significant extent of degumming in terms of phospholipids removal. Degumming in the presence of ozone gas gave unsatisfactory results because of the specific physical and chemical properties of crude soybean oil. Combination of ultrasound and hydrogen peroxide resulted in complete phospholipid degradation at capacity of 250 ml at optimized temperature in 100 min of treatment. Ultrasonic horn and bath were also used at 1 L operating volume and the extent of degumming was found to be 90.81% and 93.50% respectively. For large scale studies, hydrodynamic cavitation was operated at 4 bar pressure using slit venturi as the cavitating device which gave 93.65% as the extent of degumming. Overall, intensified degumming approach for processing of crude soybean oil was demonstrated to yield high quality oil in terms of the reduced phospholipids content. Cavitation based degumming process can be an excellent alternative approach to the conventional method with major benefits like reduction in time and energy requirements as demonstrated in the present work. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项工作中,已经报道了一种新颖的空化辅助脱胶方法,用于纯化大豆粗油,以去除总磷脂含量,并对操作参数如温度,过氧化氢负荷和引入臭氧的影响进行了详细研究。流量变化的气体。超声喇叭,超声浴和水力空化反应器已用于比较不同类型的空化反应器的功效。最初,在不同温度下对脱胶程度进行定量,并确定60℃为最佳,以在去除磷脂方面提供显着的脱胶程度。由于粗制大豆油的特定物理和化学性质,在臭氧气体存在下进行脱胶的结果不尽人意。超声和过氧化氢的组合在100分钟的处理温度下,在最佳温度下以250 ml的容量完全降解了磷脂。超声波喇叭和浴缸也以1 L的工作量使用,脱胶程度分别为90.81%和93.50%。对于大规模研究,使用狭缝文丘里管作为空化装置在4 bar压力下进行水力空化,其脱胶程度为93.65%。总体而言,就降低的磷脂含量而言,事实证明,强化的脱胶工艺可用于加工粗制大豆油,从而可制得高质量的油。基于气穴的脱胶工艺可以是传统方法的一种很好的替代方法,其主要优点是如减少时间和能源需求,如本工作所示。 (C)2017 Elsevier Ltd.保留所有权利。

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