首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Agglomeration in counter-current spray drying towers. Part A: Particle growth and the effect of nozzle height
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Agglomeration in counter-current spray drying towers. Part A: Particle growth and the effect of nozzle height

机译:逆流喷雾干燥塔中的团聚。 A部分:颗粒生长和喷嘴高度的影响

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Agglomeration of particles and droplets is critical to the operation of spray dryers, however it remains relatively unexplored. This paper studies the effect of the nozzle height on product properties, wall deposits and dryer conditions in a counter-current spray drying tower of detergent with a swirling air flow. The process efficiency is driven by changes in particle agglomeration. To interpret the results and facilitate the study of swirl towers, it is useful to subdivide these units according to the sources of growth in (a) spray region(s), (b) concentrated near-wall region(s) and (c) wall deposits. The particles formed are very heterogeneous and show a size dependent composition. In this case, particle properties are driven by the separation of solid and liquid phases during atomization and the formation of a heterogeneous set of droplets. Agglomeration serves to homogenise the product and create a distinct source of porosity. The capacity and energy consumption of the dryer are also determined by the evolution of the particle size, as fine powder is elutriated from the tower top and coarse particles are removed from the product. When the nozzle is moved to lower positions in the tower the increased temperature near the spray suppresses agglomeration, however the residence time is shortened and ultimately it leads to creation of wet coarse granules. An optimum location is found high enough to maintain the drying efficiency but sufficiently far from the top exit to minimise the loss of fine particles. In this way, a capacity ratio (i.e. product vs spray dried powder) C>90% can be obtained and energy efficiency maximised. (C) 2016 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
机译:颗粒和液滴的团聚对于喷雾干燥机的运行至关重要,但是仍未得到充分研究。本文研究了旋流气流在洗涤剂的逆流喷雾干燥塔中喷嘴高度对产品性能,壁沉积物和干燥条件的影响。颗粒团聚的变化决定了工艺效率。为了解释结果并方便旋流塔的研究,根据一个或多个喷雾区域,(b)集中的近壁区域和(c)的增长来源将这些单位细分是有用的。墙沉积物。形成的颗粒非常不均匀,并且显示出尺寸依赖性的组成。在这种情况下,颗粒特性是由雾化过程中固相和液相的分离以及液滴的异质集的形成驱动的。团聚用于使产品均质化并产生独特的孔隙源。干燥机的容量和能耗还取决于颗粒尺寸的变化,因为从塔顶淘洗了细粉,从产品中去除了粗颗粒。当喷嘴移至塔中较低的位置时,喷雾附近的温度升高会抑制团聚,但是停留时间会缩短,最终会导致形成湿的粗颗粒。发现最佳位置足够高以保持干燥效率,但是离顶部出口足够远以使细颗粒的损失最小化。以这种方式,可以获得C> 90%的容量比(即产品与喷雾干燥粉末),并且使能量效率最大化。 (C)2016作者。由Elsevier B.V.发布。这是CC BY许可下的开放获取文章(http://creativecommons.org/licenses/by/4.0/)。

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