An Experimental Study on Improving Solar-Based Distillation Productivity Through the Utilization of Split AC-Condenser Heat
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Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-97-6639-0_9
Reference29 articles.
1. Dev R, Abdul-Wahab SA, Tiwari GN (2011) Performance study of the inverted absorber solar still with water depth and total dissolved solid. Appl Energy 88(1):252–264
2. Dev R, Kashyap Y, Tewari K, Pal P (2023) Solar distillation and water heating systems integration with photovoltaic technology. In: Renewable energy: accelerating the energy transition. Springer Nature Singapore, Singapore, pp 139–165
3. Elminshawy NA, Siddiqui FR, Sultan GI (2015) Development of a desalination system driven by solar energy and low grade waste heat. Energy Convers Manag 103:28–35
4. Fallahzadeh R, Aref L, Gholamiarjenaki N, Nonejad Z, Saghi M (2020) Experimental investigation of the effect of using water and ethanol as working fluid on the performance of pyramid-shaped solar still integrated with heat pipe solar collector. Sol Energy 207:10–21
5. Gemeda ST, Springer E, Gari SR, Birhan SM, Bedane HT (2021) The importance of water quality in classifying basic water services: the case of Ethiopia, SDG6. 1, and safe drinking water. PLoS ONE 16(8):e0248944
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