Open Access
Issue
E3S Web of Conf.
Volume 517, 2024
The 10th International Conference on Engineering, Technology, and Industrial Application (ICETIA 2023)
Article Number 05019
Number of page(s) 8
Section Sustainable Development
DOI https://doi.org/10.1051/e3sconf/202451705019
Published online 15 April 2024
  1. A. Maftouh et al., ‘The application of water–energy nexus in the Middle East and North Africa (MENA) region: a structured review’, Appl. Water Sci., 12, (5), pp. 1–21, (2022) [CrossRef] [Google Scholar]
  2. C. Bwire, G. Mohan, D. Karthe, S. Caucci, and J. Pu, ‘A Systematic Review of Methodological Tools for Evaluating the Water, Energy, Food, and One Health Nexus in Transboundary Water Basins’, Environ. Manage., 72, (3), pp. 598–613, (2023) [Google Scholar]
  3. T. Molefe and R. Inglesi-Lotz, ‘Examining the water–energy–food (WEF) nexus through an SDG lens for the big 5 African countries’, Environ. Dev. Sustain., 25, (12), pp. 14083–14100, (2022) [Google Scholar]
  4. A. Afshar, E. Soleimanian, H. Akbari Variani, M. Vahabzadeh, and A. Molajou, ‘The conceptual framework to determine interrelations and interactions for holistic Water, Energy, and Food Nexus’, Environ. Dev. Sustain., 24, (8), pp. 10119– 10140, (2022) [CrossRef] [Google Scholar]
  5. J. B. S. O. de Andrade Guerra et al., ‘A literature-based study on the water–energy–food nexus for sustainable development’, Stoch. Environ. Res. Risk Assess., 35, (1), pp. 95–116, (2021) [CrossRef] [Google Scholar]
  6. B. Sivakumar, ‘Water-energy-food nexus: challenges and opportunities’, Stoch. Environ. Res. Risk Assess., 35, (1), pp. 1–2, (2021) [CrossRef] [Google Scholar]
  7. D. Gondhalekar and J. E. Drewes, ‘Infrastructure shaming and consequences for the management of urban wef security nexus in China and India’, Water (Switzerland), 13, (3), (2021) [Google Scholar]
  8. A.-J. Ibrahim and N. S. Shirazi, ‘Energy-Water-Environment Nexus and the Transition Towards a Circular Economy: The Case of Qatar’, Circ. Econ. Sustain., 1, (3), pp. 835–850, (2021) [CrossRef] [Google Scholar]
  9. R. Wan and M. Ni, ‘Sustainable water–energy– environment nexus’, Environ. Sci. Pollut. Res., 28, (30), pp. 40049–40052, (2021) [CrossRef] [PubMed] [Google Scholar]
  10. E. Fernandes and R. Cunha Marques, ‘Review of Water Reuse from a Circular Economy Perspective’, Water (Switzerland), 15, (5), (2023) [Google Scholar]
  11. A. Delgado, D. J. Rodriguez, C. A. Amadei, and M. Makino, ‘Water in Circular Economy and Reselience (Wicer)’, Int. Bank Reconstr. Dev./World Bank, (2021) [CrossRef] [Google Scholar]
  12. P. Morseletto, C. E. Mooren, and S. Munaretto, ‘Circular Economy of Water: Definition, Strategies and Challenges’, Circ. Econ. Sustain., pp. 1463– 1477, (2022) [Google Scholar]
  13. Q. Wang and X. Zhang, ‘Dynamic evolution trend and key obstacle factors analysis on the cooperative security of water, energy, and food nexus: a Southwest China case study’, Stoch. Environ. Res. Risk Assess., 37, (8), pp. 3289–3304, (2023) [CrossRef] [Google Scholar]
  14. T. Zhang, J. Huang, and Y. Xu, ‘Evaluation of the Utilization Efficiency of Water Resources in China Based on ZSG-DEA: A Perspective of Water– Energy–Food Nexus’, Int. J. Comput. Intell. Syst., 15, (1), (2022) [Google Scholar]
  15. S. Williams et al., ‘The water–energy–food nexus’, (2022) [Google Scholar]
  16. M. S. Hoosain, B. S. Paul, W. Doorsamy, and S. Ramakrishna, ‘The Influence of Circular Economy and 4IR Technologies on the Climate–Water– Energy–Food Nexus and the SDGs’, Water (Switzerland), 15, (4), pp. 1–18, (2023) [Google Scholar]
  17. P. Yapıcıoğlu and Ö. Demir, ‘Minimizing greenhouse gas emissions of an industrial wastewater treatment plant in terms of water–energy nexus’, Appl. Water Sci., 11, (12), pp. 1–14, (2021) [CrossRef] [Google Scholar]
  18. R. Prakash, S. Malode, J. C. Mohanta, A. K. Dubey, Jatin, and D. Husain, ‘Energy-water nexus for thermal power generation in India: challenges and opportunities’, Environ. Dev. Sustain., no. 0123456789, (2023) [Google Scholar]
  19. E. Kellner, ‘Identifying leverage points for shifting Water-Energy-Food nexus cases towards sustainability through the Networks of Action Situations approach combined with systems thinking’, Sustain. Sci., 18, (1), pp. 135–152, (2023) [CrossRef] [Google Scholar]
  20. Z. Wolde, W. Wu, H. Ketema, B. Karikari, and X. Liu, ‘Quantifying Sustainable Land-Water-Energy-Food Nexus: The Case of Sustainable Livelihoods in an East African Rift Valley’, Atmosphere (Basel)., 13, (4), (2022) [Google Scholar]
  21. Q. Yao, C. F. Chang, P. Joshi, and C. McDonald, ‘Climate change versus the water–energy–food nexus: the oldness or newness of the scientific issues as a factor in the deficit model and the hierarchy of response model’, Environ. Dev. Sustain., no. 0123456789, (2022) [Google Scholar]
  22. C. Lv, Y. Hu, M. Ling, A. Luo, and D. Yan, ‘Comprehensive evaluation and obstacle factors of coordinated development of regional water– ecology–energy–food nexus’, Environ. Dev. Sustain., no. 0123456789, (2023) [Google Scholar]
  23. Y. Shi, S. Liu, and H. Shi, ‘Analysis of the WaterFood-Energy Nexus and Water Competition Based on a Bayesian Network’, Water Resour. Manag., 36, (9), pp. 3349–3366, (2022) [CrossRef] [Google Scholar]
  24. M. Covarrubias, G. Spaargaren, and I. Boas, ‘Network governance and the Urban Nexus of water, energy, and food: Lessons from Amsterdam’, Energy. Sustain. Soc., 9, (1), pp. 1–11, (2019) [Google Scholar]
  25. D. Wahl, B. Ness, and C. Wamsler, ‘Implementing the urban food–water–energy nexus through urban laboratories: a systematic literature review’, Sustain. Sci., 16, (2), pp. 663–676, (2021) [CrossRef] [Google Scholar]
  26. C. Ramirez, Y. Almulla, B. Joyce, A. Huber-Lee, and F. F. Nerini, ‘An assessment of strategies for sustainability priority challenges in Jordan using a water–energy–food Nexus approach’, Discov. Sustain., 3, (1), (2022) [CrossRef] [Google Scholar]
  27. B. Feng, K. H. van Dam, M. Guo, N. Shah, S. Passmore, and X. Wang, ‘Planning of Food-Energy-Water-Waste (FEW2) nexus for sustainable development’, BMC Chem. Eng., 2, (1), pp. 1–19, (2020) [CrossRef] [Google Scholar]
  28. P. C. Slorach, H. K. Jeswani, R. Cuéllar-Franca, and A. Azapagic, ‘Environmental sustainability in the food-energy-water-health nexus: A new methodology and an application to food waste in a circular economy’, Waste Manag., 113, pp. 359– 368, (2020) [CrossRef] [PubMed] [Google Scholar]
  29. E. Soleimanian, A. Afshar, A. Molajou, and M. Ghasemi, Development of a Comprehensive Water Simulation Model for Water, Food, and Energy Nexus Analysis in Basin Scale, 37, (12), Springer Netherlands, (2023) [Google Scholar]
  30. C. Pahl-Wostl et al., ‘Scale-related governance challenges in the water–energy–food nexus: toward a diagnostic approach’, Sustain. Sci., 16, (2), pp. 615–629, (2021) [CrossRef] [Google Scholar]
  31. N. A. Elagib, S. A. Gayoum Saad, M. Basheer, A. E. Rahma, and E. D. L. Gore, ‘Exploring the urban water-energy-food nexus under environmental hazards within the Nile’, Stoch. Environ. Res. Risk Assess., 35, (1), pp. 21–41, (2021) [CrossRef] [Google Scholar]
  32. G. B. Simpson, G. P. W. Jewitt, T. Mabhaudhi, C. Taguta, and J. Badenhorst, ‘An African perspective on the Water-Energy-Food nexus’, Sci. Rep., 13, (1), pp. 1–13, (2023) [CrossRef] [Google Scholar]
  33. F. de A. Moreira et al., ‘Co-creating sustainability indicators for the local water–energy–food nexus’, Sustain. Sci., 17, (6), pp. 2315–2329, (2022) [CrossRef] [PubMed] [Google Scholar]
  34. T. Niet, N. Arianpoo, K. Kuling, and A. S. Wright, ‘Embedding the United Nations sustainable development goals into energy systems analysis: expanding the food–energy–water nexus’, Energy. Sustain. Soc., 11, (1), pp. 1–12, (2021) [Google Scholar]
  35. M. Hachaichi and J. Egieya, ‘Water-Food-Energy Nexus in Global Cities: Addressing Complex Urban Interdependencies’, Water Resour. Manag., 37, (4), pp. 1811–1825, (2023) [CrossRef] [Google Scholar]
  36. M. M. Tortorella et al., ‘A methodological integrated approach to analysing climate change effects in the agri-food sector: The TIMES waterenergy-food module’, Int. J. Environ. Res. Public Health, 17, (21), pp. 1–21, (2020) [Google Scholar]
  37. Lalawmpuii and P. K. Rai, ‘Role of water-energyfood nexus in environmental management and climate action’;, Energy Nexus, 11, (2023) [Google Scholar]
  38. F. Yazdandoost, ‘Water-Energy-Environment Nexus in Wetland Catchments’, Water Resour. Manag., 33, (1), pp. 2991–3009, (2019) [CrossRef] [Google Scholar]
  39. H. Nasrollahi, R. Shirazizadeh, R. Shirmohammadi, O. Pourali, and M. Amidpour, ‘Unraveling the Water-Energy-Food-Environment Nexus for Climate Change Adaptation in Iran: Urmia Lake Basin Case-Study’, Water, 13, (9), p. 1282, (2021) [CrossRef] [Google Scholar]
  40. A. Parsa, M. J. Van De Wiel, and U. Schmutz, ‘Intersection, interrelation or interdependence? The relationship between circular economy and nexus approach’, J. Clean. Prod., 313, (2021) [Google Scholar]
  41. S. D. Mancini et al., ‘Correction to Circular Economy and Solid Waste Management: Challenges and Opportunities in Brazil’, Circ. Econ. Sustain., 1, (2), pp. 785–785, (2021) [CrossRef] [Google Scholar]
  42. E. Fernandes and R. Cunha Marques, ‘Review of Water Reuse from a Circular Economy Perspective’, Water (Switzerland), 15, (5), (2023) [Google Scholar]
  43. S. Sauvé, S. Lamontagne, J. Dupras, and W. Stahel, ‘Circular economy of water: Tackling quantity, quality and footprint of water’, Environ. Dev., 39, (2021) [Google Scholar]
  44. L. Dong, Z. Liu, and Y. Bian, ‘Match Circular Economy and Urban Sustainability: Re-investigating Circular Economy Under Sustainable Development Goals (SDGs)’, Circ. Econ. Sustain., 1, (1), pp. 243–256, (2021) [CrossRef] [Google Scholar]
  45. V. A. Tzanakakis, A. G. Capodaglio, and A. N. Angelakis, ‘Insights into Global Water Reuse Opportunities’, Sustain., 15, (17), (2023) [Google Scholar]
  46. Q. Liu, L. Yang, and M. Yang, ‘Digitalisation for Water Sustainability: Barriers to Implementing Circular Economy in Smart Water Management’, pp. 1–28, (2021) [Google Scholar]
  47. J. Salminen et al., ‘Water-smart circular economy – Conceptualisation, transitional policy instruments and stakeholder perception’, J. Clean. Prod., 334, no. December 2021, (2022) [Google Scholar]
  48. E. Rodias, E. Aivazidou, C. Achilles, D. Aidonis, and D. Bochtis, ‘Water-energy-nutrients synergies in the agrifood sector: A circular economy framework’, Energies, 14, (1), (2021) [Google Scholar]
  49. C.-E. Nika et al., ‘Validating circular performance indicators: The interface between circular economy and stakeholders’, Water (Switzerland), 13, (16), (2021) [Google Scholar]
  50. M. Tanveer, S. A. R. Khan, M. Umar, Z. Yu, M. J. Sajid, and I. U. Haq, ‘Waste management and green technology: future trends in the circular economy leading towards environmental sustainability’, Environ. Sci. Pollut. Res., pp. 80161–80178, (2022) [CrossRef] [PubMed] [Google Scholar]
  51. F. H. Al Hamedi, K. Kandhan, Y. Liu, M. Ren, A. Jaleel, and M. A. M. Alyafei, ‘Wastewater Irrigation: A Promising Way for Future Sustainable Agriculture and Food Security in the United Arab Emirates’, Water (Switzerland), 15, (12), pp. 1–18, (2023) [Google Scholar]
  52. M. A. Abdelzaher, E. M. Farahat, H. M. Abdel-Ghafar, B. A. A. Balboul, and M. M. Awad, ‘Environmental Policy to Develop a Conceptual Design for the Water–Energy–Food Nexus: A Case Study in Wadi-Dara on the Red Sea Coast, Egypt’, Water (Switzerland), 15, (4), (2023) [Google Scholar]
  53. A. Rani, S. W. Snyder, H. Kim, Z. Lei, and S.-Y. Pan, ‘Pathways to a net-zero-carbon water sector through energy-extracting wastewater technologies’, npj Clean Water, 5, (1), (2022) [Google Scholar]
  54. C. Samberger, ‘The role of water circularity in the food-water-energy nexus and climate change mitigation’, Energy Nexus, 6, (2022) [Google Scholar]
  55. E. Rezvani Ghomi, F. Khosravi, M. A. Tahavori, and S. Ramakrishna, ‘Circular Economy: a Comparison Between the Case of Singapore and France’, Mater.Circ. Econ., 3, (1), (2021) [CrossRef] [Google Scholar]
  56. F.-Z. Lahlou, H. R. Mackey, and T. Al-Ansari, ‘Wastewater reuse for livestock feed irrigation as a sustainable practice: A socio-environmentaleconomic review’, J. Clean. Prod., 294, (2021) [Google Scholar]
  57. F. Valenti and A. Toscano, ‘A gis-based model to assess the potential of wastewater treatment plants for enhancing bioenergy production within the context of the water-energy nexus’, Energies, 14, (10), (2021) [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.