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Agglomeration of soy protein isolate in a pulsed fluidized bed: Experimental study and process optimization

机译:脉冲流化床中大豆分离蛋白的团聚:实验研究和工艺优化

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摘要

The soy protein isolate contains a high amount of protein and small fractions of fat, carbohydrates, and fiber. The food industry often employs this isolate as an additive, despite its drawbacks: it is a cohesive powder; its fluidi-zation culminates in cracks and channeling. In this paper we used the experimental design to establish the optimal operational conditions to produce agglomerated soy protein isolate in a pulsed fluidized bed. The bed operated with an air pulsation frequency of 600 rpm; the liquid binder consisted of an aqueous carboxymethyl cellulose solution. We employed a 2~3 complete factorial design with three central points to evaluate how the variables fluidizing air temperature (60-80 °C), fluidizing air velocity (0.51-0.67 m s~(-1)), and binder flow rate (1.2-2.0 mL min~(-1)) affected the mean particle diameter, process yield, and moisture content Surface response analysis pointed out the operational parameters that provided large granules with low moisture content and high process yield. Compared with the raw isolate, the agglomerated particles were more porous and irregular; they also presented good handling properties, reduced wetting time and cohesiveness, and improved free-flow. Moreover, agglomeration enhanced the functional properties of the powder such as water retention and foaming capacity.
机译:大豆分离蛋白含有大量的蛋白质和少量的脂肪,碳水化合物和纤维。尽管有缺点,但食品工业经常将这种隔离物用作添加剂:它是一种粘性粉末;它具有一定的粘性。其流态化最终导致裂缝和窜流。在本文中,我们使用实验设计建立了在脉冲流化床中生产附聚大豆蛋白分离物的最佳操作条件。该床以600 rpm的空气脉动频率运行;液体粘合剂由羧甲基纤维素水溶液组成。我们采用具有三个中心点的2〜3完整因子设计来评估变量如何流化空气温度(60-80°C),流化空气速度(0.51-0.67 ms〜(-1))和粘合剂流速(1.2 -2.0 mL min〜(-1))影响平均粒径,工艺收率和水分含量表面响应分析指出了可提供大颗粒,低水分含量和高工艺收率的操作参数。与原始分离物相比,附聚的颗粒更加多孔和不规则;它们还具有良好的处理性能,减少了润湿时间和内聚力,并改善了自由流动性。此外,附聚增强了粉末的功能性质,例如保水性和发泡能力。

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