Nitrification Kinetics and Its RBC Application

Ching-San Huang
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引用次数: 10

Abstract

The surface reaction model for the mechanism of mass transfer-metabolism in the fixed-film nitrification process is investigated and discussed for the design of trickling filter systems and rotating biological contactor (RBC) systems. Two experimental studies are performed. The first study, using a stationary fixed-film reactor to simulate the trickling filter process, reveals that the surface reaction kinetics follow a pseudo-homogeneous model. The second study, using a bench-scale RBC unit, indicates that the pseudo-homogeneous model is also applicable to the rotating fixed-film process. The effective slime thickness of an RBC system can be estimated from this model by locating the optimum NH3-N removal rotating speed and finding the corresponding liquid film thickness at that rotating speed.
硝化动力学及其在红细胞中的应用
研究了固定膜硝化过程中传质代谢机理的表面反应模型,并对滴流过滤系统和旋转生物接触器(RBC)系统的设计进行了探讨。进行了两项实验研究。第一项研究使用固定式固定膜反应器模拟滴滤过程,发现表面反应动力学遵循伪均相模型。第二项研究使用了一个实验规模的RBC装置,表明伪均匀模型也适用于旋转固定膜过程。通过确定最佳NH3-N去除转速,并求出在该转速下相应的液膜厚度,可根据该模型估算出RBC体系的有效黏液厚度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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