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Modeling particle-size distribution dynamics in a shear-induced breakage process with an improved breakage kernel: Importance of the internal bonds

机译:使用改进的断裂核对剪切诱导的断裂过程中的粒度分布动力学进行建模:内部键的重要性

摘要

An improved aggregate breakage kernel was developed that accounts for the effects of both the internal bonding forces between particles within an aggregate and the fluid shear stress exerted on the aggregate. The ratio of the two opposite forces regulates the probability of aggregate breakage. Using the improved breakage kernel, together with the sectional modeling technique, the dynamics of particle breakage induced by fluid shear was well simulated. The results show that the internal bonding forces determine the strength of the aggregates, and the hydrophobic bonding forces are much stronger than van der Waals' forces for holding the aggregates against shear breakage. The simulations compared fairly well with the experimental results in terms of PSD evolution during the breakage of latex particle aggregates and activated sludge flocs. For the latex particle aggregates, van der Waals' forces apparently are the main internal bonding force between particles. However, for activated sludge flocs, the non-DLVO hydrophobic forces are shown to play an important role in maintaining a stronger structure of the flocs. (C) 2014 Elsevier B.V. All rights reserved.
机译:开发了一种改进的骨料破损核,该核既考虑了骨料内颗粒之间的内部结合力的影响,又考虑了施加在骨料上的流体剪切应力。两种相反的力之比调节聚集体破裂的可能性。使用改进的破碎核,结合截面建模技术,很好地模拟了流体剪切引起的颗粒破碎动力学。结果表明,内部键合力决定了骨料的强度,疏水键合力比范德华力更强,以保持骨料抗剪切断裂。在乳胶颗粒聚集体和活性污泥絮体破碎过程中,PSD的演变过程与PSD的模拟结果相当吻合。对于乳胶颗粒聚集体,范德华力显然是颗粒之间的主要内部结合力。但是,对于活性污泥絮凝物,非DLVO疏水力在保持絮凝物更牢固的结构中起着重要作用。 (C)2014 Elsevier B.V.保留所有权利。

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