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首页> 外文期刊>Journal of Food Research >Influence of Run Time and Aging on Fouling and Cleaning of Whey Protein Deposits on Heat Exchanger Surface
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Influence of Run Time and Aging on Fouling and Cleaning of Whey Protein Deposits on Heat Exchanger Surface

机译:运行时间和老化对换热器表面乳清蛋白沉积物结垢和清除的影响

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In the cleaning operations of heat exchange surfaces in dairy processing plants, the effect of heating/run time (HT) and aging on the fouling/cleaning of heat exchangers is not well understood. Longer heating time of the same deposit is expected to result in the formation of stronger and perhaps more cleaning resistant deposit. In this study, the phenomenon of heating and aging on the formation and cleaning of dairy fouling is investigated using the heat induced whey protein gels (HIWPG) produced in laboratory. The processes were also investigated with the whey protein deposits formed in pilot-scale plant trails. The HIWPGs were produced in tubular capsules for various heating (or run) times (60, 120, 240, 1440 and 2880 min respectively) and then dissolved in aqueous sodium hydroxide (0.5 wt %). The heating process here would have been of ‘pure’ aging. The dissolution rate was calculated based on the previously established UV Spectrophotometer analysis. The structure and texture of the gels were analysed using Scanning Electron Microscope (SEM) and texture analyser. In the pilot-scale plant study, whey protein fouling layers were generated by recirculating whey protein solution (6 wt %) for various heating periods (30, 60, and 90 min respectively). The deposit layers were then removed by recirculating aqueous sodium hydroxide (0.5 wt %) and the cleaning efficiency was monitored in the form of the recovery of heat transfer coefficient while both fluid electric conductivity and turbidity were recorded as indications of cleaning completion. It was found that increasing the HIWPG heating time significantly increased the gel hardness and dissolution time, implicating the difficulty in cleaning. Similarly to these results on gels, increasing the pilot-scale plant heating/run time increased the extent of fouling. The fouling layer formed next to the metal surface experienced the longest period of aging and the slope of the heat transfer coefficient increase seen at the final cleaning stage is related to this aging effect. The rate of cleaning for deposits formed initially on the metal surface is lower indicating a ‘pure’ aging effect of the deposit near surface.
机译:在乳品加工厂的换热表面的清洁操作中,加热/运行时间(HT)和老化对热交换器结垢/清洁的影响尚不清楚。预计相同沉积物的加热时间更长,将导致形成更坚固,甚至更耐清洁的沉积物。在这项研究中,使用实验室生产的热诱导乳清蛋白凝胶(HIWPG),研究了乳制品结垢形成和清洁过程中的加热和老化现象。还对中试规模的植物足迹中形成的乳清蛋白沉积物进行了研究。 HIWPGs在管状胶囊中产生各种加热(或运行)时间(分别为60、120、240、1440和2880分钟),然后溶解在氢氧化钠水溶液(0.5 wt%)中。此处的加热过程将是“纯”老化的。基于先前建立的UV分光光度计分析来计算溶解速率。凝胶的结构和质地使用扫描电子显微镜(SEM)和质地分析仪进行分析。在中试规模的工厂研究中,通过在各种加热时间段(分别为30、60和90分钟)中循环乳清蛋白溶液(6 wt%)来生成乳清蛋白结垢层。然后通过再循环氢氧化钠水溶液(0.5重量%)去除沉积层,并且以传热系数的恢复形式监测清洁效率,同时记录流体电导率和浊度两者作为清洁完成的指示。发现增加HIWPG加热时间显着增加了凝胶硬度和溶解时间,这暗示了清洁的困难。与这些凝胶结果相似,增加中试规模的工厂加热/运行时间会增加结垢程度。在金属表面附近形成的污垢层经历了最长的老化期,并且在最后清洁阶段看到的传热系数增加的斜率与这种老化效果有关。最初在金属表面形成的沉积物的清洁率较低,这表明沉积物在表面附近具有“纯”的时效作用。

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