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Improving Process Yield by Adding WPI to lactose During Crystallization and Spray Drying Under High-Humidity Conditions

机译:通过在高湿度条件下结晶和喷雾干燥过程中向乳糖中添加WPI来提高工艺产量

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摘要

This paper reports to dry and crystallize lactose in one process: spray drying. In order to achieve this, conditions in the spray-drying process have been optimized to create a high-humidity environment that promotes crystallization, and Whey Protein Isolate (WPI) has been added as a drying aid to increase the yield. In this study, low concentrations of WPI have been added to the lactose feed in order to maintain a high level of lactose purity in the final product, as well as enhancing crystallization by reducing the negative effects of protein addition in delaying the onset of crystallization. In a Buchi B-290 spray dryer, the introduction of WPI at only 0.5% (solid basis) concentration as a drying aid to increase the yield of spray-dried lactose was successful in increasing the yield from 20% to 60% in high-humidity drying conditions. XPS (X-ray photo-electron spectroscopy) results show that approximately 50% (by mass) surface coverage by WPI was obtained when the bulk concentration of WPI was only 0.5 wt%. Furthermore, the high-humidity, high-temperature drying environment utilized in the experiments enhanced the crystallization process. The spray-dried materials produced in these experiments displayed crystalline characteristics of high peak intensity counts during X-ray diffraction, lower moisture sorption peak heights, lower heats of crystallization, low glass-transition temperatures in thermal analysis using MDSC, and distinct signs of crystallization on the particle surfaces as observed from SEM imaging. It can be suggested that, at this "critical" concentration (0.5 wt%), WPI has the potential to promote high yields (more than 50%) of crystallized spray-dried lactose under the right conditions (65-70% relative humidity of the drying gas and inlet-gas temperature 210°C) with small-scale spray dryers, such as the Buchi B-290 used here.
机译:本文报道了通过一种方法干燥和结晶乳糖:喷雾干燥。为了实现此目的,已对喷雾干燥过程中的条件进行了优化,以创建促进结晶的高湿度环境,并添加了乳清蛋白分离物(WPI)作为干燥助剂,以提高产量。在这项研究中,低浓度的WPI已添加到乳糖饲料中,以维持最终产品中高水平的乳糖纯度,并通过减少蛋白质添加对延迟结晶开始的负面影响来增强结晶。在Buchi B-290喷雾干燥机中,仅引入0.5%(固体)浓度的WPI作为干燥助剂以提高喷雾干燥乳糖的收率就成功地将高糖精油的收率从20%提高到60%。湿度干燥条件。 XPS(X射线光电子能谱)结果表明,当WPI的总浓度仅为0.5 wt%时,WPI可获得约50%(质量)的表面覆盖率。此外,实验中使用的高湿度,高温干燥环境增强了结晶过程。在这些实验中生产的喷雾干燥材料显示出如下晶体特征:X射线衍射时具有高峰强度计数,较低的水分吸收峰高,较低的结晶热,使用MDSC进行热分析时的玻璃化转变温度较低以及明显的结晶迹象通过SEM成像观察到的颗粒表面可以建议,在此“临界”浓度(0.5 wt%)下,WPI有可能在正确的条件下(相对湿度为65-70%)提高结晶的喷雾干燥乳糖的高产率(超过50%)。使用小型喷雾干燥器(例如此处使用的Buchi B-290)干燥气体和入口气体温度为210°C)。

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