首页> 外文期刊>Journal of Agricultural and Food Chemistry >Carbohydrate and mineral removal during the production of low-phytate soy protein isolate by combined electroacidification and high shear tangential flow ultrafiltration
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Carbohydrate and mineral removal during the production of low-phytate soy protein isolate by combined electroacidification and high shear tangential flow ultrafiltration

机译:联合电酸化和高剪切切向流超滤技术生产低植酸大豆分离蛋白过程中的碳水化合物和矿物质去除

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摘要

In this work, soy protein isolates were produced by a combination of electroacidification and high shear tangential flow hollow fiber ultrafiltration with a 100 kDa membrane under constant pressure. The filtration performance was evaluated by comparing the filtration time and the final product composition for an electroacidified (pH 6) and a non-electroacidified (pH 9) soy protein extract. The removal of carbohydrates during the filtration was always consistent with the theoretical predictions (based on free permeability assumption) for both the electroacidified and the non-electroacidified feeds. A higher removal of calcium, magnesium, and phytic acid was achieved during the filtration of the electroacidified feed compared to the non-electroacidified feed. However, the electroacidification pretreatment had a negative impact on the permeate flux and resulted in more significant membrane fouling with correspondingly longer filtration times. A discontinuous diafiltration enhanced the removal of carbohydrates and minerals, thus yielding a product with higher protein content but was unable to improve the permeate flux for the electroacidified feed.
机译:在这项工作中,大豆蛋白分离物是通过在恒定压力下通过电酸化和高剪切切向流中空纤维超滤与100 kDa膜的组合来生产的。通过比较过滤时间和电酸化(pH 6)和非电酸化(pH 9)大豆蛋白提取物的最终产物组成来评估过滤性能。过滤过程中碳水化合物的去除始终与电酸化和非电酸化进料的理论预测(基于自由渗透率假设)一致。与未电酸化的进料相比,在电酸化的进料的过滤过程中,钙,镁和植酸的去除率更高。然而,电酸化预处理对渗透通量有负面影响,并导致更明显的膜污染和相应的更长的过滤时间。不连续的渗滤增强了碳水化合物和矿物质的去除,因此产生了具有更高蛋白质含量的产品,但无法改善电酸化饲料的渗透通量。

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