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Top-spray fluidized bed coating: Effect of process variables on coatingefficiency

机译:顶喷流化床涂层:工艺变量对涂层效率的影响

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摘要

The effects of several process variables on the coating efficiency of top-spray fluidized bed coating were evaluated. Sodium chloride crystals were coated with protein concentrates as a model system in a laboratory top-spray fluidized bed unit. It was established that a higher coating mass of sodium caseinate is obtained at a lower average particle size and that the highest coating mass is obtained at a critical inlet air temperature of approximately 74 degrees C. The nozzle atomization pressure was demonstrated to act as more than a droplet size influencing factor: The highest coating efficiency of sodium caseinate was achieved at a high atomization pressure, the latter having the combined effect of producing smaller droplets with a higher velocity and decreasing the bed temperature. The functional and compositional properties of protein concentrates clearly influence the coating efficiency when these products are used as a coating material in a top-spray fluid-bed process as was observed in studies using sodium, caseinate, lysozyme and blood plasma concentrate. In conclusion, coating losses may be drastically reduced by choosing appropriate processing conditions.
机译:评估了几个工艺变量对顶喷流化床涂层的涂层效率的影响。在实验室顶喷流化床装置中,将氯化钠晶体用浓缩蛋白包被作为模型系统。已经确定,在较低的平均粒度下获得了更高的酪蛋白酸钠涂层质量,并且在大约74摄氏度的临界进气温度下获得了最高涂层质量。事实证明喷嘴雾化压力大于液滴尺寸的影响因素:酪蛋白酸钠的最高涂覆效率是在高雾化压力下获得的,后者具有产生较高速度产生较小液滴并降低床温的综合效果。如在使用钠,酪蛋白酸钠,溶菌酶和血浆浓缩物的研究中观察到的那样,当这些产品用作顶喷流化床工艺的包衣材料时,蛋白浓缩物的功能和组成特性会明显影响包衣效率。总之,通过选择适当的加工条件可以大大减少涂层损失。

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