Volatile fatty acids accumulation and rhamnolipid generation in situ from waste activated sludge fermentation stimulated by external rhamnolipid addition |
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Affiliation: | 1. Key Laboratory of Environmental Biotechnology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China;2. University of Chinese Academy of Sciences, Beijing 100049, China;3. Sino-Danish College, University of Chinese Academy of Sciences, Beijing 100049, China;4. Sino-Danish Center for Education and Research, Beijing 100190, China;5. State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology (SKLUWRE, HIT), Harbin 150090, China |
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Abstract: | The solubilization and acidification of waste activated sludge (WAS) were apparently enhanced by external rhamnolipid (RL) addition. The maximum solute carbohydrate concentrations increased linearly from 48 ± 5 mg COD L−1 in the un-pretreated WAS (blank) to 566 ± 19 mg COD L−1, and protein increased from 1050 ± 8 to 3493 ± 16 mg COD L−1 at RL dosage of 0.10 g g−1 TSS. The highest VFAs concentration peaked at 3840 mg COD L−1 at RL dosage of 0.04 g g−1 TSS, which was 4.24-fold higher than the blank test. RL was generated in situ during WAS fermentation when external RL was added. It was detected that RL concentration was increased from initial 880 ± 92 mg L−1 to 1312 ± 7 mg L−1 at the end of 96 h with RL dosage of 0.04 g g−1 TSS, which was increased to 1.49-fold. Meanwhile, methane production was notably reduced to a quite low level of 2.0 mL CH4 g−1 VSS, showing effective inhibition of methanogens by RL (58.8 mL CH4 g−1 VSS in the blank). In addition, the activity of hydrolytic enzymes (protease and α-glucosidase) was enhanced accordingly. VFAs accumulation and RL generation in situ demonstrated that the additional RL substantially performed enhanced biological effects for waste activated sludge fermentation. |
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Keywords: | Waste treatment Anaerobic digestion Activated sludge Biomass Volatile fatty acids Rhamnolipid |
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