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基于氧化还原电位的前置反硝化过程中氮去除的模糊控制

Fuzzy control of nitrogen removal in predenitrification process using ORP.

作者信息

Peng Y, Ma Y, Wang S, Wang X

机构信息

College of Energy and Environmental Engineering, Beijing University of Technology, Beijing 100022, China.

出版信息

Water Sci Technol. 2005;52(12):161-9.

Abstract

In order to meet increasingly stringent discharge standards, new applications and control strategies for the sustainable removal of nitrogen from wastewater have to be implemented. In the past years, numerous studies have been carried out dealing with the application of fuzzy logic to improve the control of the activated sludge process. In this paper, fuzzy control strategies of predenitrification systems are presented that could lead to better effluent quality and, in parallel, to a reduction of chemicals consumption. Extensive experimental investigations on lab scale plant studies have shown that there was excellent correlation between nitrate concentration and ORP value at the end of the anoxic zone. Results indicated that ORP could be used as an on-line fuzzy control parameter of nitrate recirculation and external carbon addition. The optimal value of ORP to control nitrate recirculation and external carbon addition was - 86 +/- 2 mV and - 90 +/- 2 mV, respectively. The results obtained with real wastewater also showed the good performance and stability of the fuzzy controllers independently from external disturbances. The integrated control structure of nitrate recirculation and external carbon addition in the predenitrification system is also presented.

摘要

为了满足日益严格的排放标准,必须实施用于可持续去除废水中氮的新应用和控制策略。在过去几年中,已经开展了大量关于应用模糊逻辑来改善活性污泥法控制的研究。本文提出了前置反硝化系统的模糊控制策略,该策略可带来更好的出水水质,同时减少化学药剂的消耗。在实验室规模的装置研究中进行的广泛实验调查表明,缺氧区末端的硝酸盐浓度与氧化还原电位(ORP)值之间存在极好的相关性。结果表明,ORP可作为硝酸盐回流和外部碳添加的在线模糊控制参数。控制硝酸盐回流和外部碳添加的ORP最佳值分别为-86±2 mV和-90±2 mV。用实际废水获得的结果还表明,模糊控制器具有良好的性能和稳定性,不受外部干扰的影响。本文还介绍了前置反硝化系统中硝酸盐回流和外部碳添加的综合控制结构。

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