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Performance of a stepped solar still using porous materials experimentally

Author

Listed:
  • Milad Setareh

    (Jundi-Shapur University of Technology)

  • Mohammad Reza Assari

    (Jundi-Shapur University of Technology
    Alzahra University)

  • Hassan Basirat Tabrizi

    (Amirkabir University of Technology)

  • Mohammad Alizadeh

    (Jundi-Shapur University of Technology)

Abstract

Shortage of available freshwater has been becoming a critical issue, recently. For this matter, different types of solar still have been used to supply freshwater in rural places; however, their low performance is the main restriction. In this research, a stepped solar still is designed and built, and the steps are covered by wick porous material. This is a novel strategy for the stepped solar still. The distilled water productivity, the temperature of the internal space, first, middle and bottom steps as well as energy and exergy efficiencies are investigated experimentally. Experiments are carried out with porous material thicknesses of 4, 6, 8, and 12 mm and without porous materials in winter. Results indicate that the stepped solar still with a thicker porous medium has higher freshwater productivity and efficiency, and the temperature of internal space is affected by the presence of porous material as compared to no porous material. In addition, results show that the efficiency of stepped solar still with porous material thickness of 4, 8, 10, and 12 mm is 2.41%, 2.7%, 6.44% and 7.02% higher than the efficiency of the unmodified solar still, respectively. As a result, the porous material with a thickness of 12 mm is the optimal porous medium with productivity of one liter and thermal and exergy efficiencies of 24.71% and 3.528%. Graphical abstract

Suggested Citation

  • Milad Setareh & Mohammad Reza Assari & Hassan Basirat Tabrizi & Mohammad Alizadeh, 2024. "Performance of a stepped solar still using porous materials experimentally," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 26(11), pages 28519-28538, November.
  • Handle: RePEc:spr:endesu:v:26:y:2024:i:11:d:10.1007_s10668-023-03822-9
    DOI: 10.1007/s10668-023-03822-9
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    References listed on IDEAS

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    1. El-Sebaii, A.A. & Al-Ghamdi, A.A. & Al-Hazmi, F.S. & Faidah, Adel S., 2009. "Thermal performance of a single basin solar still with PCM as a storage medium," Applied Energy, Elsevier, vol. 86(7-8), pages 1187-1195, July.
    2. Sadineni, S.B. & Hurt, R. & Halford, C.K. & Boehm, R.F., 2008. "Theory and experimental investigation of a weir-type inclined solar still," Energy, Elsevier, vol. 33(1), pages 71-80.
    3. D'Adamo, Idiano & Mammetti, Marco & Ottaviani, Dario & Ozturk, Ilhan, 2023. "Photovoltaic systems and sustainable communities: New social models for ecological transition. The impact of incentive policies in profitability analyses," Renewable Energy, Elsevier, vol. 202(C), pages 1291-1304.
    4. Dhivagar, Ramasamy & Shoeibi, Shahin & Parsa, Seyed Masoud & Hoseinzadeh, Siamak & Kargarsharifabad, Hadi & Khiadani, Mehdi, 2023. "Performance evaluation of solar still using energy storage biomaterial with porous surface: An experimental study and environmental analysis," Renewable Energy, Elsevier, vol. 206(C), pages 879-889.
    5. Torchia-Núñez, J.C. & Porta-Gándara, M.A. & Cervantes-de Gortari, J.G., 2008. "Exergy analysis of a passive solar still," Renewable Energy, Elsevier, vol. 33(4), pages 608-616.
    6. Kabeel, A.E., 2009. "Performance of solar still with a concave wick evaporation surface," Energy, Elsevier, vol. 34(10), pages 1504-1509.
    7. Ighball Baniasad Askari & Hossein Ghazizade-Ahsaee & Mehran Ameri, 2022. "Thermo-economic analysis of a solar-powered absorption refrigeration integrated with a humidification–dehumidification desalination," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 24(5), pages 6153-6196, May.
    8. Rashidi, Saman & Esfahani, Javad Abolfazli & Rashidi, Abbas, 2017. "A review on the applications of porous materials in solar energy systems," Renewable and Sustainable Energy Reviews, Elsevier, vol. 73(C), pages 1198-1210.
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