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Incorporation of high intensity ultrasound (HIU) to a scraped surface heat exchanger: Effect of HIU position

机译:将高强度超声(HIU)掺入刮刮表面热交换器:HIU位置的效果

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The objective of this work was to introduce high-intensity ultrasound (HIU) in different positions within a scraped surface heat exchanger (SSHE) and evaluate the crystallization behavior and physical properties of a low saturated, soybean-based fat. The SSHE in this study was composed of one pump (flow rate of 11 L/h), two crystallization barrels (32 degrees C, 344 rpm), and one pin worker (208 rpm). HIU was placed before the first crystallization step, or barrel 1 (HIU-0), between the two barrels (HIU-1), between barrels 2 and the pin worker (HIU-2) and after complete crystallization in the SSHE (HIU-3). HIU amplitudes of 20% or 50% using 5-s pulses were used. Physical properties of the crystallized material such as microstructure, solid fat content, oil binding capacity (OBC), viscoelasticity, hardness, and melting behavior were evaluated. HIU induced crystallization and improved all physical properties when positioned at HIU-2 and HIU-3 using 50% amplitude, but in HIU-3 the effect was more pronounced than in HIU-2. Samples sonicated using 50% amplitude at HIU-3 position showed the following improvements (p 0.05): OBC increased from 63% to 86%, elasticity (G') values increased from 23 kPa to 97 kPa, and hardness from 2.2 N to 3.7 N. With these results, we can conclude that HIU can be used in combination with a SSHE and that the point at which HIU is incorporated is important. The position that produced the best results was when HIU was placed after primary nucleation had occurred in the SSHE and when using higher power levels (50% amplitude).
机译:这项工作的目的是将高强度超声(HIU)引入刮刮表面热交换器(SSHE)内的不同位置,并评估低饱和的大豆脂肪的结晶行为和物理性质。本研究中的SSHE由一个泵(11L / h的流速)组成,两个结晶桶(32摄氏度,344rpm)和一个单针(208rpm)。在第一结晶步骤之前,在两个桶(HIU-1)之间,在桶2和销工人(HIU-2)之间以及在SSHE中完全结晶后(HIU- 3)。使用使用5-S脉冲20%或50%的Hiu振幅。评估结晶材料的物理性质,如微观结构,固体脂肪含量,油结合能力(OBC),粘弹性,硬度和熔化行为。 HIU诱导结晶和改善所有物理性质,当定位在HIU-2和HIU-3使用50%振幅时,但在HIU-3中,效果比HIU-2更明显。在HIU-3位置使用50%振幅超声的样品显示下列改进(P <0.05):OBC从63%增加到86%,弹性(G')值从23kPa增加到97kPa,并且硬度从2.2 n增加到2.2 n至3.7 N.通过这些结果,我们可以得出结论,HIU可以与SSHE组合使用,并且HIU被纳入的点是重要的。产生最佳结果的位置是在SSHE中发生原发性成核后置于HIU的位置,并且使用更高的功率水平(50%幅度)。

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