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益生菌包埋喷雾干燥脱脂奶粉的流化床制粒:流化助剂、水分活化和脱水的影响

Fluidized-Bed Granulation of Probiotics-Encapsulated Spray-Dried Skim Milk Powder: Effects of a Fluidizing Aid, Moisture-Activation and Dehydration.

作者信息

Lim Dong-Hyun, Letona Andres, Lee Minjeong, Lim Dayoung, Han Nam-Soo, Chung Donghwa

机构信息

Food Technology Major, Graduate School of International Agricultural Technology, Seoul National University, Pyeongchang 25354, Korea.

Institute of Food Industrialization, Institutes of Green Bio Science and Technology, Seoul National University, Pyeongchang 25354, Korea.

出版信息

Foods. 2021 Jul 9;10(7):1600. doi: 10.3390/foods10071600.

Abstract

A probiotic powder of poor flowability with high dust content, prepared by spray drying reconstituted skim milk fermented with GG (LGG), was granulated by fluidized-bed granulation (FBG). The effects of the addition of skim milk powder (SMP) as a fluidizing aid, and of simple moisture-activation with or without dehydration, were investigated with respect to the performance of the FBG process. A fine, poorly fluidizable LGG powder (Geldart Group C) could be fluidized and granulated, with a 4- to 5-fold increase in particle size ( = 96-141 μm), by mixing with SMP (30-50%), which has larger, fluidizable particles belonging to Geldart Group A. Moisture-activation after the mixing, followed by fluidized-bed dehydration with hot air to remove excess moisture, further improved the FBG; the yield of the granules increased from 42% to 61% and the particle size distribution became much narrower, although the average particle size remained almost the same ( = 142 μm). These granules showed a popcorn-type structure in scanning electron microscopy images and encapsulated a sufficient level of viable LGG cells (1.6 × 10 CFU g). These granules also exhibited much better flowability and dispersibility than the spray-dried LGG powder.

摘要

一种流动性差且粉尘含量高的益生菌粉末,由用鼠李糖乳杆菌(LGG)发酵的复原脱脂乳喷雾干燥制备而成,通过流化床制粒(FBG)进行造粒。研究了添加脱脂奶粉(SMP)作为流化助剂以及进行简单的加湿活化(有或没有脱水)对FBG工艺性能的影响。通过与属于Geldart A组、具有较大可流化颗粒的SMP(30 - 50%)混合,可以使一种细小的、流化性差的LGG粉末(Geldart C组)流化并造粒,粒径增加4至5倍( = 96 - 141μm)。混合后进行加湿活化,然后用热风进行流化床脱水以去除多余水分,进一步改善了FBG;颗粒的产率从42%提高到61%,粒径分布变得更窄,尽管平均粒径几乎保持不变( = 142μm)。这些颗粒在扫描电子显微镜图像中呈现出爆米花型结构,并包封了足够水平的活LGG细胞(1.6 × 10 CFU g)。这些颗粒还表现出比喷雾干燥的LGG粉末更好的流动性和分散性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ea1/8304935/a2f99ccc90a7/foods-10-01600-g001.jpg

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