This work reports the results obtained with an innovative configuration of a closed-static solar greenhouse for sludge drying. The novelty of the solar greenhouse configuration consisted in using a forced ventilation system to provide hot air for sludge drying and the utilization of solar irradiation for energy supply. Wet sewage sludge (97% humidity) was successfully dried up to a residual humidity close to 5% after 25 days during wintertime. The increase of the airflow rate supplied under the sludge bed improved the sludge drying rate. Moreover, the fraction of volatile suspended solids decreased from 70% to 41% after 13 days, indicating that air supply promoted the simultaneous stabilization of the sludge as a side-effect to the drying process. Overall, the specific energy consumption per ton of evaporated water was estimated to approximately 450 kWh/t, resulting in about 55% of energy demand lower than a conventional thermal drying system, while using only free solar energy. The achieved high weight reduction of up to 99% implies a noticeable reduction of the excess sludge handling costs, indicating that solar greenhouse drying is a highly interesting opportunity for sludge drying in medium-small sized WWTPs.

Alice Sorrenti, S.F.C. (2022). Enhanced Sewage Sludge Drying with a Modified Solar Greenhouse. CLEAN TECHNOLOGIES, 4(2), 407-419 [10.3390/cleantechnol4020025].

Enhanced Sewage Sludge Drying with a Modified Solar Greenhouse

Alice Sorrenti
Primo
Formal Analysis
;
Santo Fabio Corsino
Secondo
Conceptualization
;
Francesco Traina
Investigation
;
Gaspare Viviani
Writing – Review & Editing
;
Michele Torregrossa
Supervision
2022-05-12

Abstract

This work reports the results obtained with an innovative configuration of a closed-static solar greenhouse for sludge drying. The novelty of the solar greenhouse configuration consisted in using a forced ventilation system to provide hot air for sludge drying and the utilization of solar irradiation for energy supply. Wet sewage sludge (97% humidity) was successfully dried up to a residual humidity close to 5% after 25 days during wintertime. The increase of the airflow rate supplied under the sludge bed improved the sludge drying rate. Moreover, the fraction of volatile suspended solids decreased from 70% to 41% after 13 days, indicating that air supply promoted the simultaneous stabilization of the sludge as a side-effect to the drying process. Overall, the specific energy consumption per ton of evaporated water was estimated to approximately 450 kWh/t, resulting in about 55% of energy demand lower than a conventional thermal drying system, while using only free solar energy. The achieved high weight reduction of up to 99% implies a noticeable reduction of the excess sludge handling costs, indicating that solar greenhouse drying is a highly interesting opportunity for sludge drying in medium-small sized WWTPs.
12-mag-2022
Settore ICAR/03 - Ingegneria Sanitaria-Ambientale
Alice Sorrenti, S.F.C. (2022). Enhanced Sewage Sludge Drying with a Modified Solar Greenhouse. CLEAN TECHNOLOGIES, 4(2), 407-419 [10.3390/cleantechnol4020025].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/576650
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