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Application and improvement methods of sludge alkaline fermentation liquid as a carbon source for biological nutrient removal: A review. | LitMetric

Application and improvement methods of sludge alkaline fermentation liquid as a carbon source for biological nutrient removal: A review.

Sci Total Environ

School of Energy and Environmental Engineering, Beijing Key Laboratory of Resource-Oriented Treatment of Industrial Pollutants, University of Science and Technology Beijing, Beijing 100083, China. Electronic address:

Published: May 2023

AI Article Synopsis

  • Alkaline fermentation decreases waste activated sludge and creates a valuable liquid (SAFL) rich in short-chain fatty acids (SCFAs), which can be used as a high-quality carbon source for biological nutrient removal (BNR).
  • SAFL offers advantages over traditional carbon sources, such as improved efficiency and cost-effectiveness, though its yield and composition can vary based on operating conditions.
  • Despite its benefits, SAFL contains refractory organics, ammonia, and phosphorus which limit its effectiveness; purifying SCFAs and combining different methods can enhance its usability in wastewater treatment.

Article Abstract

Alkaline fermentation can reduce the amount of waste activated sludge and prepare sludge alkaline fermentation liquid (SAFL) rich in short-chain fatty acids (SCFAs), which can be used as a high-quality carbon source for the biological nutrient removal (BNR) process. This review compiles the production method of SAFL and the progress of its application as a BNR carbon source. Compared with traditional carbon sources, SAFL has the advantages of higher efficiency and economy, and different operating conditions can influence the yield and structure of SCFAs in SAFL. SAFL can significantly improve the nutrient removal efficiency of the BNR process. Taking SAFL as the internal carbon source of BNR can simultaneously solve the problem of carbon source shortage and sludge treatment difficulties in wastewater treatment plants, and further reduce the operating cost. However, the alkaline fermentation process results in many refractory organics, ammonia and phosphate in SAFL, which reduces the availability of SAFL as a carbon source. Purifying SCFAs by removing nitrogen and phosphorus, directly extracting SCFAs, or increasing the amount of SCFAs in SAFL by co-fermentation or combining with other pretreatment methods, etc., are effective measures to improve the availability of SAFL.

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Source
http://dx.doi.org/10.1016/j.scitotenv.2023.162341DOI Listing

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