4.7 Article

Comprehensive role of thermal combined ultrasonic pre-treatment in sewage sludge disposal

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 789, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.scitotenv.2021.147862

关键词

Sewage sludge; Antibiotics; Thermal pre-treatment; Ultrasonic pre-treatment; Dissolved organic matters

资金

  1. National Natural Science Foundation of China [52070130]
  2. Shuguang Project of Shanghai (Education and Scientific Research Project of Shanghai) [18SG45]

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The study found that the combined thermal and ultrasonic pre-treatment method was more effective in promoting the dissolution of organic matters in sludge, improving the performance of anaerobic digestion, and had a clear advantage in degrading antibiotics.
Thermal/ultrasonic pre-treatment of sludge has been proven to break the hydrolysis barriers of sewage sludge (SS) and improve the performance of anaerobic digestion (AD). In this study, the objective was to investigate whether the combination of two pre-treatment methods can achieve better results on the AD of SS. The results indicated that, compared with the control group and separate pre-treatment groups, the thermal combined ultrasonic pre-treatment presented more obvious solubilization of soluble proteins, polysaccharides, and other organic matters in SS. The combined method promoted the dissolution of protein-like substances more effectively, with biogas production increased by 19% and the volatile solid (VS) removal rate improved to above 50% compared with the control group. The capillary suction time is reduced by about 85%, which greatly improved the dewatering performance of SS. In addition, the combined method has advantages in degrading sulfonamide antibiotics, roxithromycin and tetracycline. Particularly, by analyzing the interaction between the degradation of different antibiotics and the composition of dissolved organic matters (DOMs), it was found that the composition of DOMs could affect the degradability of different antibiotics. Among them, the high content of tyrosine-like and tryptophan-like was conducive to the degradation of sulfamethoxazole, and the high content of fulvic acid-like and humic acid-like was conducive to the degradation of roxithromycin and tetracycline. This work evaluated the comprehensive effect of thermal combined ultrasonic pre-treatment on SS disposal and provided useful information for its engineering. (C) 2021 Elsevier B.V. All rights reserved.

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