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Denaturation Kinetics of Whey Protein Isolate Solutions and Fouling Mass Distribution in a Plate Heat Exchanger

机译:板式换热器中乳清蛋白分离液的变性动力学和结垢质量分布

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Few investigations have attempted to connect the mechanism of dairy fouling to the chemical reaction of denaturation (unfolding and aggregation) occurring in the bulk The objective of this study is to contribute to this aspect in order to propose innovative controls to limit fouling deposit formation. Experimental investigations have been carried out to observe the relationship between the deposit mass distribution generated in plate heat exchangers (PHE) by a whey protein isolate (WPI) mainly composed of β-lactoglobulin (β-Lg) and the ratio between the unfolding and aggregation rate constants. Experiments using a PHE were carried out at a pilot scale to identify the deposit distribution of a model fouling solution with different calcium contents. In parallel, laboratory experiments were performed to determine the unfolding/aggregation rate constants. Data analysis showed that (i) β-Lg denaturation is highly dependent on the calcium content, (ii) for each fouling solution, irrespective of the imposed temperature profile, the deposit mass in each channel and the ratio between the unfolding and aggregation rate constants seem to be well correlated. This study demonstrates that both the knowledge of the thermal profile and the β-Lg denaturation rate constants are required in order to predict accurately the deposit distribution along the PHE.
机译:很少有研究试图将乳制品结垢的机理与大量发生的变性(展开和聚集)的化学反应联系起来。本研究的目的是对此方面做出贡献,以便提出创新的控制措施以限制结垢沉积物的形成。已进行实验研究以观察主要由β-乳球蛋白(β-Lg)组成的乳清蛋白分离物(WPI)在板式换热器(PHE)中产生的沉积物质量分布与展开和聚集比率之间的关系速率常数。在中试规模上使用PHE进行了实验,以确定具有不同钙含量的模型污垢溶液的沉积物分布。平行地,进行实验室实验以确定展开/聚集速率常数。数据分析表明(i)β-Lg变性高度依赖于钙含量;(ii)对于每种污垢溶液,无论施加的温度曲线如何,每个通道中的沉积质量以及解折叠速率和聚集速率常数之间的比率如何似乎相关性很好。这项研究表明,为了准确预测沿PHE的沉积物分布,需要了解热剖面和β-Lg变性速率常数。

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