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首页> 外文期刊>Drying technology: An International Journal >Effect of Maltodextrin Addition during Spray Drying of Tomato Pulp in Dehumidified Air: I. Drying Kinetics and Product Recovery
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Effect of Maltodextrin Addition during Spray Drying of Tomato Pulp in Dehumidified Air: I. Drying Kinetics and Product Recovery

机译:番茄纸浆在除湿空气中喷雾干燥过程中添加麦芽糊精的影响:I.干燥动力学和产品回收率

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This work investigates the effect of maltodextrin addition on the drying kinetics and the stickiness during spray drying of tomato pulp in dehumidified air. A pilot-scale spray dryer was employed for the spray-drying process. The modification made to the original design consisted in connecting the spray dryer inlet air intake to an absorption air dryer. Twenty-seven different experiments were conducted varying the dextrose equivalent (DE) of the maltodextrin, the ratio (tomato pulp solids)/(maltodextrin solids), and the inlet air temperature. Data for the residue remaining on the walls were gathered. Furthermore, the effect of maltodextrin addition on the drying kinetics and the stickiness of the product was investigated using a numerical simulation of the spray-drying process modeled with the computational fluid dynamics (CFD) code Fluent. The code was used to determine the droplet moisture content and temperature profiles during the spray-drying experiments conducted in this work. The stickiness was determined by comparing the droplet temperature with its surface layer glass transition temperature (T_g). The T_g was determined using a weighted mean rule based on the moisture content profiles calculated by the CFD code and the experimental data of T_g, which were obtained for the different tomato pulp and maltodextrin samples and fitted to the Gordon and Taylor model.
机译:这项工作研究了麦芽糊精添加对除湿空气中番茄浆喷雾干燥过程中干燥动力学和粘性的影响。中试规模的喷雾干燥器用于喷雾干燥过程。对原始设计的修改在于将喷雾干燥器的进气口与吸收式空气干燥器相连。进行了27个不同的实验,改变了麦芽糖糊精的葡萄糖当量(DE),比率(番茄果肉固体含量)/(麦芽糖糊精固体含量)和进气温度。收集残留在墙上的残留数据。此外,使用以计算流体力学(CFD)代码Fluent为模型的喷雾干燥过程的数值模拟,研究了麦芽糖糊精添加对干燥动力学和产品粘性的影响。该代码用于在这项工作中进行的喷雾干燥实验中确定液滴的水分含量和温度曲线。通过将液滴温度与其表面层玻璃化转变温度(T_g)进行比较来确定粘性。 T_g是根据CFD代码计算出的水分含量分布图和T_g实验数据,使用加权平均值法确定的,该水分含量分布图是针对不同的番茄浆和麦芽糊精样品获得的,并拟合到Gordon和Taylor模型中。

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