The effect of sludge retention time (SRT) on the Nitrifier typical kinetics at ambient temperature under the low ammonia density

Author:

Li Yifan1,Wu Jinzhu1,Liu Yongjie2,Chen Feiyong1,Guan Jie2,Shao Yuanyuan1,Wang Jing1,Zhang Lijie1,Goel Rajeev3,Sun Xiuqin4,Wang Quanyong5,Zhang Ruina6,Song Hengyu1,Liu Bing1

Affiliation:

1. Resources and Environment Innovation Institute, School of Municipal and Environmental Engineering, Shandong Jianzhu University, Jinan 250101, China

2. Shandong Institute for Product Quality Inspection, Jinan, 250102, China

3. Hydromantis Environmental Software Solutions, Inc., 407 King Street West, Hamilton, Ontario, Canada

4. Nuclear Engineering Lihua Technology Engineering Co. Ltd, Beijing, China

5. Shandong Branch of China Urban Construction Research Institute, No. 1299, Xinluo Street, Jinan, China

6. Shanghai Environmental & Sanitary Engineering Design Institute Co., Ltd, No.11, 345 Lane, Shilong RD, Shanghai, China

Abstract

Abstract Sludge retention time (SRT) regulation is one of the essential management techniques for refined control of the main-sidestream treatment process under the low ammonia density. It is indispensable to understand the effect of SRTs changes on the Nitrifier kinetics to obtain the functional separation of the Nitrifier and the refined control of the nitrification process. In this study, Nitrifier was cultured with conditions of 35 ± 0.5 °C, pH 7.5 ± 0.2, DO 5.0 ± 0.5 mg-O/L, and SRTs were controlled for 40 d, 20 d, 10 d, and 5 d. The net growth rate (), decay rate (), specific growth rate (), the yield of the Nitrifier (), temperature parameter (), and inhibition coefficient () have been measured and extended with the SRT decreases. Instead, the half-saturation coefficient () decreased. In addition, the limited value of pH inhibition occurs (), and the pH of keeping 5% maximum reaction rate () was in a relatively stable state. The trade of kinetics may be induced by the change of species structure of Nitrifier. The Nitrosomonas proportion was increased, and the Nitrospira was contrary with the SRT decreasing. It is a match for the functional separation of Nitrifier when SRTs was 20 d at ambient temperature under the low ammonia density. The kinetics of ammonia-oxidizing organisms (AOO) and nitrite-oxidizing organisms (NOO) in Nitrifier under different SRT conditions should be measured respectively to the refined control of the partial nitrification process in future study.

Funder

Science Foundation of Shandong Jianzhu University Grant

Natural Science Foundation of Shandong Province

National science foundation of Shandong Province

National Natural Science Foundation of China

Youth Innovation Technology Project of Higher School in Shandong Province

Technology innovation and level promotion project of Shanghai State-owned assets supervision and Administration Commission

PATHHorizontal Program

National Key R&D Program of China

Science and Technology Innovative Research Team in Higher Educational Institutions of Hunan Province

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

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