Optimizing waste activated sludge disintegration by investigating multiple electrochemical pretreatment conditions: Performance, mechanism and modeling.

Sci Total Environ

School of Environmental Science and Engineering, Huazhong University of Science and Technology (HUST), Key Laboratory of Water and Wastewater Treatment (HUST), MOHURD, Wuhan 430074, China. Electronic address:

Published: April 2023

AI Article Synopsis

  • The study focuses on improving the disintegration of waste activated sludge (WAS) using electrochemical pretreatment (EPT) by exploring various factors like different electrolytes, dosage, current, and time.
  • Results indicated that sodium chloride (NaCl) was the most effective electrolyte, and optimizing conditions such as higher dosage, current, and duration significantly enhanced the release of biodegradable organic materials and the destruction of harmful extracellular polymeric substances (EPS).
  • A predictive model identified the best conditions for EPT as 2.75 g/L NaCl, 2.0 A current, and 30 min duration, resulting in a 42% increase in economic benefits for WAS treatment compared to traditional methods.

Article Abstract

The complex and rigid floc structure often limits the reutilization of waste activated sludge (WAS). Electrochemical pretreatment (EPT) is one of the most effective technologies that can enhance WAS disintegration. But a comprehensive investigation into how multiple EPT conditions work was rarely reported. The study evaluated the effects of multiple EPT conditions, i.e., different electrolytes (NaCl, NaSO, and CaCl), electrolytes dosage (0 g/L, 0.5 g/L, 1.0 g/L, and 3.0 g/L), EPT current (0 A, 0.5 A, 1.0 A, and 3.0 A) and EPT time (0 min, 30 min, 60 min, and 90 min) on WAS disintegration. The results showed that NaCl was outstanding from other electrolytes in promoting more WAS disintegration. Besides, a relatively higher NaCl dosage, a higher EPT current, and a longer EPT time promoted more reactive chlorine species (RCS), thus enhancing WAS disintegration in terms of extracellular polymeric substances (EPS) structure destruction and biodegradable organic matter release. After EPT for 60 min at NaCl dosage of 1.0 g/L and current of 1.0 A, the EPS multilayer structure destruction, biodegradable organic matters release, and soluble chemical oxygen demand (SCOD) increase in the supernatant were enhanced by 17.2 %, 130.5 %, and 238.7 %, respectively. Then a predictive quadratic model was established and the impact significance of the above EPT factors for enhancing WAS disintegration followed dosage of NaCl > current > EPT time. Furthermore, response surface methodology (RSM) suggested NaCl dosage of 2.75 g/L, current of 2.0 A, and EPT time of 30 min were the optimal EPT conditions, bringing a 42.0 % increase in the net economic benefit of WAS treatment compared to without EPT.

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http://dx.doi.org/10.1016/j.scitotenv.2023.162025DOI Listing

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