Full recycling of citric acid wastewater through anaerobic digestion, air-stripping and pH control

Author:

Wang Jiang-Bo1,Zhang Rui-Jing1,Mao Zhong-Gui2,Xue Dong-Sheng1,Zhu Zheng-Jun1,Yu Han-Chao1,Cai Feng-Jiao1,Cai Lin-Yang1,Bao Jia-Wei2,Xu Jian12

Affiliation:

1. Key Laboratory of Fermentation Engineering (Ministry of Education), Hubei Provincial Cooperative Innovation Center of Industrial Fermentation, Hubei Key Laboratory of Industrial Microbiology, School of Food and Biological Engineering, Hubei University of Technology, 28 Nanli Road, Wuhan, 430068, China

2. Key Laboratory of Industrial Biotechnology (Ministry of Education), School of Biotechnology, Jiangnan University, 1800 Lihu Road, Wuxi 214122, China

Abstract

Abstract Anaerobic digestion effluent (ADE) from the anaerobic digestion treatment of citric acid wastewater can be reused as a potential substitute for process water in the citric acid fermentation. However, excessive sodium contained in ADE significantly decreases citric acid production. In this paper, the inhibition mechanism of sodium on citric acid fermentation was investigated. We demonstrated that excessive sodium did not increase oxidative stress for Aspergillus niger, but reduced the pH of the medium significantly over the period 4–24 h, which led to lower activities of glucoamylase and isomaltase secreted by A. niger, with a decrease of available sugar concentration and citric acid production. ADE was pretreated by air-stripping prior to recycle and 18 g/L calcium carbonate was added at the start of fermentation to control the pH of the medium. The inhibition caused by ADE was completely alleviated and citric acid production substantially increased from 118.6 g/L to 141.4 g/L, comparable to the fermentation with deionized water (141.2 g/L). This novel process could decrease wastewater discharges and fresh water consumption in the citric acid industry, with benefit to the environment.

Funder

Scientific Research Foundation for PhD, Hubei University of Technology

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference23 articles.

1. Systemic analysis of the response of Aspergillus niger to ambient pH;Genome Biol.,2009

2. Bao J. W . 2017Study on the Mechanism of Inhibition and Elimination with Sodium in the Integrated Citric Acid-Methane Fermentation System. ME dissertation, Jiangnan University, Wuxi, Jiangsu, China.

3. Citric acid: emerging applications of key biotechnology industrial product;Chem. Cent. J.,2017

4. Anaerobic digestion of high-sulphate-content wastewater from the industrial production of citric acid;Water Sci. Technol.,1994

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