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Comparison of freeze drying and spray drying to obtain porous nanostructured granules from nanosized suspensions

机译:比较冷冻干燥和喷雾干燥以从纳米尺寸悬浮液获得多孔纳米结构颗粒

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摘要

This work studies the spray drying and freeze drying of different nanosized ceramic materials and the physicochemical characteristics of the obtained granules. Colloidal suspensions of alumina, titania, and a 87/13 mixture were studied. The influence of temperature, pressure, nozzle diameter, and solids loading on the morphology and characteristics of dried granules were evaluated. It was demonstrated that these processing parameters have practically no influence, and the only parameter determining the granules characteristics is the solids content of the suspensions, in both processes. Spray drying leads to a monomodal distribution with higher granule size, while freeze drying produces more porous granules, with a bimodal intragranular distribution. The flowability of spray-dried powder is better than that of the freeze-dried powder and suit better the requirements of a feedstock targeted to obtain coatings by plasma thermal spraying whereas freeze drying can produce high porosity, softer granules
机译:这项工作研究了不同纳米尺寸陶瓷材料的喷雾干燥和冷冻干燥以及所得颗粒的理化特性。研究了氧化铝,二氧化钛和87/13混合物的胶体悬浮液。评估了温度,压力,喷嘴直径和固体负载量对干燥颗粒的形态和特性的影响。已经证明,这些工艺参数实际上没有影响,并且确定颗粒特性的唯一参数是两种方法中悬浮液的固体含量。喷雾干燥导致具有更大颗粒尺寸的单峰分布,而冷冻干燥产生具有双峰颗粒内分布的更多多孔颗粒。喷雾干燥粉末的流动性优于冻干粉末,并且更适合用于通过等离子热喷涂获得涂层的原料要求,而冻干可以产生高孔隙率,较软的颗粒

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