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Optimization of Spray-Drying Process of Jerusalem artichoke Extract for Inulin Production

机译:用于菊粉生产的菊芋提取物喷雾干燥工艺的优化

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摘要

Jerusalem artichoke is an important natural matrix for inulin production. In this experiment, response surface methodology (RSM) was employed to optimize the spray-drying parameters in order to determine the maximal inulin yield. For this study, three independent variables (heating temperature (Tª, 110–120 °C), creep speed (V, 18–22 rpm) and pressure (P, 0.02–0.04 MPa)) were used in the experimental design. Using the Box–Behnken design, the optimal parameters obtained were: drying temperature 114.6 °C, creep speed 20.02 rpm, and pressure: 0.03 MPa. The inulin yield, water content and particle size of inulin obtained by spray-drying and freeze-drying were compared. In this regard, the spray-dried inulin consisted of a white powder having a fine particle size, and the freeze-dried inulin had a pale-yellow fluffy floc. On the other hand, the drying methods had a great influence on the appearance and internal structure of inulin powder, since the spray-dried inulin had a complete and uniform shape and size, whereas the freeze-dried inulin had a flocculated sheet structure. The analysis showed that the spray-drying led to a higher inulin yield, lower water content and better surface structure than freeze-drying.
机译:菊芋是菊粉生产的重要天然基质。在该实验中,采用响应面法(RSM)优化喷雾干燥参数,以确定最大菊粉产量。对于这项研究,在实验设计中使用了三个独立变量(加热温度(Tª,110-120°C),蠕变速度(V,18-22 rpm)和压力(P,0.02-0.04 MPa))。使用Box–Behnken设计,获得的最佳参数为:干燥温度114.6°C,蠕变速度20.02 rpm和压力:0.03 MPa。比较了通过喷雾干燥和冷冻干燥获得的菊粉的菊粉产量,水含量和粒径。在这方面,喷雾干燥的菊粉由具有细粒度的白色粉末组成,并且冷冻干燥的菊粉具有浅黄色的蓬松絮状物。另一方面,干燥方法对菊粉粉末的外观和内部结构有很大的影响,因为喷雾干燥的菊粉具有完整和均匀的形状和大小,而冷冻干燥的菊粉具有絮凝的片状结构。分析表明,与冷冻干燥相比,喷雾干燥导致菊粉产量更高,水分含量更低和表面结构更好。

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