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首页> 外文期刊>Journal of water reuse and desalination >Optimisation of micro-processes for shear-assisted solid-liquid separation in a rotatory batch flow vortex reactor
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Optimisation of micro-processes for shear-assisted solid-liquid separation in a rotatory batch flow vortex reactor

机译:旋转间歇流涡流反应器中剪切辅助固液分离微工艺的优化

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摘要

This paper reports the study of micro-processes in a novel pre-treatment technique using a pellet forming batch flow vortex reactor of cylindrical shape that consists of axially revolving rotor plates between fixed stator plates. The suspension was first mixed with high molecular weight synthetic polymers by stirring for approximately 50 seconds and then agitated for 20 minutes. The process was optimised for a number of operating conditions including polymer type and dosing regimen, rotation speed, wall-plate gap distance, residence time and suspension filling method. The results of the investigation show that optimising a number of process variables that influence floc formation and growth, along with specific apparatus construction and geometry, help to maintain the suspension in a metastable state that is crucial for the formation of pellet-like compact agglomerates with better dewaterability and uniform aggregate size. A maximum dry solids content of 28.3% after gravity dewatering through a 0.5 mm sieve was recorded during the investigation, with a maximum particle removal efficiency of 97.5%.
机译:本文报道了一种新颖的预处理技术中的微处理技术研究,该技术使用圆柱形的丸粒成形间歇流涡流反应器,该反应器由固定定子板之间的轴向旋转转子板组成。首先通过搅拌约50秒将悬浮液与高分子量合成聚合物混合,然后搅拌20分钟。该工艺针对多种操作条件进行了优化,包括聚合物类型和计量方案,转速,壁板间隙距离,停留时间和悬浮液填充方法。调查结果表明,优化影响絮凝物形成和生长的许多工艺变量,以及特定的设备构造和几何形状,有助于将悬浮液保持在亚稳态,这对于形成颗粒状致密团聚物至关重要。更好的脱水性和均匀的骨料尺寸。在研究期间记录了重力通过0.5 mm筛子脱水后的最大干固体含量为28.3%,最大颗粒去除效率为97.5%。

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