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首页> 外文期刊>Biochemical Engineering Journal >Investigation of how agitation during precipitation, and subsequent processing affects the particle size distribution and separation of #alpha#-lactalbumin enriched whey protein precipitates
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Investigation of how agitation during precipitation, and subsequent processing affects the particle size distribution and separation of #alpha#-lactalbumin enriched whey protein precipitates

机译:研究沉淀过程中的搅动以及后续加工如何影响粒径分布和富集#alpha#乳白蛋白的乳清蛋白沉淀物的分离

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摘要

In this work, #alpha#-lactalbumin (#alpha#-la) rich precipitate particles are formed and aged in a batch stirred-tank from a whey protein concentrate (WPC) dispersion. Precipitation of the proteins occurs during a period of acid-addition followed by an ageing period. This study investigates how stirred-tank impeller agitation and subsequent processing by means of passing precipitate suspensions through a capillary tube or a partially open ball-valve, affect particle size and composition. Precipitate particles are largely unaffected when subjected to laminar capillary tube flow. However, as flow becomes transitional and thereafter turbulent, particle breakage increases, especially for precipitates formed and aged under mild agitation conditions. Precipitates passed through the ball-valve experience even geater particle size reduction as a sharp geometrical transition results in highly turbulent flow. Moreover, particles formed and aged under low shear conditions, though initially larger, are in fact weaker and fragment to a greater extent during turbulent processing through the ball-valve. This has process design implications for separation processes where particle size is important, as shear history can influence particle toughness. Substantial size reduction of particles can best be mitigated by identifying regions of high turbulence or sudden changes in flow geometry, and by redesigning these regions so as to reduce these effects.
机译:在这项工作中,富含乳清蛋白浓缩物(WPC)的#α#-乳清蛋白(#alpha#-1a)沉淀颗粒形成并在间歇搅拌罐中老化。蛋白质的沉淀发生在加酸阶段和随后的老化阶段。这项研究研究了通过将沉淀物悬浮液通过毛细管或部分打开的球阀来进行搅拌罐式叶轮搅拌和随后的处理如何影响粒径和组成。进行层流毛细管流动时,沉淀颗粒基本不会受到影响。然而,随着流动的过渡以及随后的湍流,颗粒的破裂增加,特别是对于在温和的搅拌条件下形成和老化的沉淀物而言。通过球形阀的沉淀物甚至会减小食肉动物的颗粒尺寸,因为急剧的几何过渡会导致高度湍流。此外,在低剪切条件下形成和老化的颗粒,尽管最初较大,但实际上在通过球阀的湍流处理过程中较弱,并且更大程度地破碎。这对颗粒大小很重要的分离过程具有过程设计的意义,因为剪切历史会影响颗粒的韧性。通过确定湍流高或流动几何形状突然变化的区域,并通过重新设计这些区域以减少这些影响,可以最大程度地减轻颗粒的尺寸减少。

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