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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 B: Interaction between multiple spraying levels
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Agglomeration in counter-current spray drying towers. Part B: Interaction between multiple spraying levels

机译:逆流喷雾干燥塔中的团聚。 B部分:多个喷涂水平之间的相互作用

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A new experimental method is developed here to investigate agglomeration in spray drying towers operating with multiple nozzles. It allows studying independently the contribution of each spray to the product and obtaining a valuable insight into the agglomeration processes. The paper studies a two level swirl counter-current dryer of detergent in a full-scale production system. It shows that operation with two nozzle levels increases the energy efficiency compared to the use of single sprays, but in turn promotes both agglomeration and elutriation of powder from the top of the dryer. The product size distribution becomes bi-modal and the composition and porosity of the product more heterogeneous due to the different thermal histories experienced by droplets from each spray. The method described here controls the air temperature and humidity nearby the nozzles to quantify the agglomerates resulting from particle contacts within each individual spray or from their interaction. Particle agglomeration is shown to be suppressed at the bottom of the dryer where the heat transfer rates are highest and promoted at the top spray, which originates a second coarse mode in the size distribution. Both levels do not operate Independently; the powder elutriated upwards from the bottom nozzle is captured entirely by the top spray when it is centrally located. By isolating the independent impact of each nozzle in a dryer, the method provides powerful data to correlate the agglomeration behaviour with local process conditions, and so facilitate the development and validation of spray dryer models. (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:这里开发了一种新的实验方法,以研究在使用多个喷嘴的喷雾干燥塔中的团聚。它允许独立研究每种喷雾剂对产品的贡献,并获得有关附聚过程的宝贵见解。本文研究了在大规模生产系统中的二级涡流逆流干燥机。结果表明,与使用单个喷雾器相比,使用两个喷嘴级别进行操作可提高能源效率,但又可促进干燥器顶部粉末的团聚和淘析。由于每次喷雾的液滴经历的热历史不同,产品尺寸分布变为双峰,产品的组成和孔隙率更加不均匀。这里描述的方法控制喷嘴附近的空气温度和湿度,以量化由于每个单独喷雾内的颗粒接触或它们的相互作用而导致的附聚物。在干燥器底部传热速率最高的情况下,颗粒团聚被抑制,而在顶部喷雾处的颗粒团聚得到促进,这在尺寸分布中产生了第二个粗糙模式。这两个级别都不独立运行。从底部喷嘴向上淘析的粉末在位于中央时完全被顶部喷雾捕获。通过隔离干燥器中每个喷嘴的独立影响,该方法提供了强大的数据,可将团聚行为与本地工艺条件相关联,从而有助于喷雾干燥器模型的开发和验证。 (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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