Knowledge Agora



Similar Articles

Title Desalination and fate of nutrient transport in domestic wastewater using electrodialysis membrane process
ID_Doc 7730
Authors Nur, HM; Yüzer, B; Aydin, MI; Aydin, S; Öngen, A; Selçuk, H
Title Desalination and fate of nutrient transport in domestic wastewater using electrodialysis membrane process
Year 2019
Published
Abstract The use of domestic wastewater (DWW) in irrigation offers numerous advantages because of its nutrient compositions. However, the direct use of DWW is risky to both human health and the environment. Hence to comply with circular economy principles, designing a strategy for treating and capturing nutrients from DWW is imperative. Electrodialysis (ED) is a promising technology to achieve this objective. This study investigated the effect of pH and potential difference (voltage) on the performance of the ED. The desalination and transport fate of some nutrients on real DWW is also monitored. The ED system attained an optimum desalination performance of 0.469 mS/cm in 20 min at voltage 15 V and pH 7. Under these conditions, the system achieved 90% nitrate and nitrite removal, while phosphate removal was at 67%. Under continuous flow conditions, the system managed to concentrate the target nutrients in a subsequent chamber. The removal of some organics was also attained.
PDF

Similar Articles

ID Score Article
14677 Cerrillo-Gonzalez, MD; Villen-Guzman, M; Rodriguez-Maroto, JM; Paz-Garcia, JM Metal Recovery from Wastewater Using Electrodialysis Separation(2024)Metals, 14, 1
2460 Cournoyer, A; Bazinet, L Electrodialysis Processes an Answer to Industrial Sustainability: Toward the Concept of Eco-Circular Economy?-A Review(2023)Membranes, 13, 2
20676 Liu, FB; Moustafa, H; Hassouna, MSE; He, Z Effective nutrient recovery from digester centrate assisted by in situ production of acid/base in a novel electrochemical membrane system(2022)
14174 Tufa, RA; Noviello, Y; Di Profio, G; Macedonio, F; Ali, A; Drioli, E; Fontananova, E; Bouzek, K; Curcio, E Integrated membrane distillation-reverse electrodialysis system for energy-efficient seawater desalination(2019)
10424 Escudier, JL; Gillery, B; Ojeda, H; Etchebarne, F Managing irrigation water salinity in viticulture(2019)
21611 Lejarazu-Larrañaga, A; Molina, S; Ortiz, JM; Riccardelli, G; García-Calvo, E Influence of acid/base activation treatment in the performance of recycled electromembrane for fresh water production by electrodialysis(2020)
22276 Reig, M; Valderrama, C; Gibert, O; Cortina, JL Selectrodialysis and bipolar membrane electrodialysis combination for industrial process brines treatment: Monovalent-divalent ions separation and acid and base production(2016)
15493 Wei, CY; Pan, SY; Lin, YI; Cao, TND Anaerobic swine digestate valorization via energy-efficient electrodialysis for nutrient recovery and water reclamation(2022)
21196 Pompa-Pernía, A; Molina, S; Lejarazu-Larrañaga, A; Landaburu-Aguirre, J; García-Calvo, E Validation of Recycled Nanofiltration and Anion-Exchange Membranes for the Treatment of Urban Wastewater for Crop Irrigation(2022)Membranes, 12.0, 8
25038 Ruiz-Barriga, P; Serralta, J; Bouzas, A; Carrillo-Abad, J Boosting nutrient recovery from AnMBR effluent by means of electrodialysis technology: Operating parameters assessing(2024)
Scroll