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首页> 外文期刊>Dairy science & technology >Influence of surface modification on the composition of a calcium phosphate-rich whey protein deposit in a plate heat exchanger.
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Influence of surface modification on the composition of a calcium phosphate-rich whey protein deposit in a plate heat exchanger.

机译:表面改性对板式换热器中富含磷酸钙的乳清蛋白沉积物组成的影响。

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摘要

The unwanted formation of deposits during the thermal treatment of milk and milk products is an unresolved problem for the dairy industry. A method to reduce fouling on heat transfer surfaces is the defined modification of the energetic surface properties. However, an anti-fouling surface, approved for use in the food industry, easy to clean, that is resistant in operation, and stays effective over the lifetime of a plant is still a challenge. The present work aims to investigate the influence of diamond-like carbon (DLC, a-C:H) and Si-doped DLC (a-C:H:Si and a-C:H:Si:O) coatings with particular high mechanical hardness, wear resistance, and chemical inertness, against milk fouling. Experiments were conducted using a pilot-scale plate heat exchanger with a calcium phosphate-rich whey protein solution as model fluid. The results showed that surface modification directly affected the formation of deposits, their composition, as well as their adhesive strength. Lower protein content on DLC and SICAN (a-C:H:Si) and lower mineral deposition on SICAN were measured. Further analysis showed that original energetic properties were changing during several fouling and cleaning cycles. Furthermore, the electron-donor component ( gamma -) was the main differentiating factor determining the extension of fouling. A quadratic relationship between the deposit protein content respectively the final fouling resistance and gamma - was found, suggesting an optimum value of gamma - for which fouling is minimal. The results should lead to a better understanding of the fouling process and demonstrates the potential of the DLC coatings to enhance operational effectiveness.
机译:乳和乳制品的热处理过程中不希望的沉积物形成是乳业无法解决的问题。减少传热表面结垢的一种方法是对高能表面特性进行明确的修改。然而,经批准用于食品工业,易于清洁,耐操作且在植物的整个生命周期内保持有效的防污表面仍然是一个挑战。本工作旨在研究类金刚石碳(DLC,aC:H)和掺Si的DLC(aC:H:Si和aC:H:Si:O)涂层的影响,这些涂层具有特别高的机械硬度,耐磨性,和化学惰性,防止牛奶结垢。使用中试规模的板式热交换器,以富含磷酸钙的乳清蛋白溶液作为模型流体进行实验。结果表明,表面改性直接影响沉积物的形成,沉积物的组成以及粘附强度。测量了DLC和SICAN(a-C:H:Si)上较低的蛋白质含量,SICAN上较低的矿物质沉积。进一步的分析表明,原始的能量特性在多个结垢和清洁循环中正在改变。此外,电子给体组分(γ-)是决定结垢时间延长的主要区别因素。发现沉积蛋白含量分别为最终结垢阻力和γ-之间的二次关系,这表明结垢最小的最佳γ-值。结果应能使人们更好地了解结垢过程,并证明DLC涂层具有增强操作效率的潜力。

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