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- W2594264811 abstract "The influence of sequential ultrasound and low-temperature (55 °C) thermal pretreatment on sewage sludge solubilization, enzyme activity and anaerobic digestion was assessed. The pretreatment led to significant increases of 427–1030% and 230–674% in the soluble concentrations of carbohydrates and proteins, respectively, and 1.6–4.3 times higher enzymatic activities in the soluble phase of the sludge. Optimal conditions for chemical oxygen demand solubilization were determined at 59.3 kg/L total solids (TS) concentration, 30,500 kJ/kg TS specific energy and 13 h thermal treatment time using response surface methodology. The methane yield after pretreatment increased up to 50% compared with the raw sewage sludge, whereas the maximum methane production rate was 1.3–1.8 times higher. An energy assessment showed that the increased methane yield compensated for energy consumption only under conditions where 500 kJ/kg TS specific energy was used for ultrasound, with up to 24% higher electricity recovery." @default.
- W2594264811 created "2017-03-16" @default.
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- W2594264811 date "2017-06-01" @default.
- W2594264811 modified "2023-10-17" @default.
- W2594264811 title "Sequential ultrasound and low-temperature thermal pretreatment: Process optimization and influence on sewage sludge solubilization, enzyme activity and anaerobic digestion" @default.
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- W2594264811 doi "https://doi.org/10.1016/j.biortech.2017.03.029" @default.
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