Correction: Hani et al. Sensitivity Analysis for Multi-Criteria Decision Analysis Framework for Site Selection of Aquifer Recharge with Reclaimed Water. Sustainability 2023, 15, 5399
withTo determine the best type for the development of MAR projects in Delta, an assessment was conducted using a MAR data-driven selection tool developed by the International Groundwater Resources Assessment Centre (IGRAC) [30].
To determine the best type for the development of MAR projects in Delta, an assessment was conducted using a MAR data-driven selection tool developed by the Research Group INOWAS of the Department of Hydrosciences of the Faculty of Environmental Sciences at Technische Universität (TU) Dresden (INOWAS), Germany [30].
withBased on the analyzed data for the selected case study using the IGRAC tool, the use of spreading methods or infiltration basins seems to result in low infrastructure demand and enables the infiltration and maintenance of large quantities of water at relatively low cost, which will result in a relatively simple anti-clogging procedure and will enable the removal of pollutants contained in the sources water by the soil.
Based on the data analyzed for the selected case study using the INOWAS tool [30], the use of spreading methods or infiltration basins seems to result in low infrastructure demand and enables the infiltration and maintenance of large quantities of water at relatively low cost, which will result in a relatively simple anti-clogging procedure and will enable the removal of pollutants contained in the source water by the soil.
withThe determination of influencing criteria for MAR suitability mapping for the West Delta site using reclaimed water and utilizing infiltration basins was determined based on an intensive literature review conducted by IGRAC [30] for about 66 scientific case studies from more than 18 countries.
The determination of influencing criteria for MAR suitability mapping for the West Delta site using reclaimed water and utilizing infiltration basins was determined based on an intensive literature review conducted by INOWAS [30] for about 66 scientific case studies from more than 18 countries.
Reference
- Hani, H.M.; Nour El Din, M.M.; Khalifa, A.; Elalfy, E. Sensitivity Analysis for Multi-Criteria Decision Analysis Framework for Site Selection of Aquifer Recharge with Reclaimed Water. Sustainability 2023, 15, 5399. [Google Scholar] [CrossRef]
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Hani, H.M.; Nour El Din, M.M.; Khalifa, A.; Elalfy, E. Correction: Hani et al. Sensitivity Analysis for Multi-Criteria Decision Analysis Framework for Site Selection of Aquifer Recharge with Reclaimed Water. Sustainability 2023, 15, 5399. Sustainability 2023, 15, 10570. https://doi.org/10.3390/su151310570
Hani HM, Nour El Din MM, Khalifa A, Elalfy E. Correction: Hani et al. Sensitivity Analysis for Multi-Criteria Decision Analysis Framework for Site Selection of Aquifer Recharge with Reclaimed Water. Sustainability 2023, 15, 5399. Sustainability. 2023; 15(13):10570. https://doi.org/10.3390/su151310570
Chicago/Turabian StyleHani, Heba Mohamed, Mohamed M. Nour El Din, Abdelkawi Khalifa, and Ezzat Elalfy. 2023. "Correction: Hani et al. Sensitivity Analysis for Multi-Criteria Decision Analysis Framework for Site Selection of Aquifer Recharge with Reclaimed Water. Sustainability 2023, 15, 5399" Sustainability 15, no. 13: 10570. https://doi.org/10.3390/su151310570
APA StyleHani, H. M., Nour El Din, M. M., Khalifa, A., & Elalfy, E. (2023). Correction: Hani et al. Sensitivity Analysis for Multi-Criteria Decision Analysis Framework for Site Selection of Aquifer Recharge with Reclaimed Water. Sustainability 2023, 15, 5399. Sustainability, 15(13), 10570. https://doi.org/10.3390/su151310570