464
Views
11
CrossRef citations to date
0
Altmetric
Reviews

A review on distillate water quality parameter analysis in solar still

, , , , &
Pages 1335-1342 | Received 06 Jul 2018, Accepted 20 Feb 2019, Published online: 13 Jun 2019

References

  • Abu-Hijleh, Bassam, and M. Rababa’h Hamzeh. 2003. “Experimental Study of a Solar Still with Sponge Cubes in Basin.” Energy Conversion and Management 44 (9): 1411–1418. doi:10.1016/S0196-8904(02)00162-0.
  • Ahsan, A., M. Imteaz, U. A. Thomas, M. Azmi, A. Rahman, and N. N. Nik Daud. 2014b. “Parameters Affecting the Performance of a Low Cost Solar Still.” Applied Energy 114: 924–930. doi:10.1016/j.apenergy.2013.08.066.
  • Ahsan, Amimul, Nur Syuhada, Eden Jolhi, Kh M. Darain, Md K. Rowshon, Md Jakariya, Suhaidi Shafie, and Abdul H. Ghazali. 2014a. “Assessment of Distillate Water Quality Parameters Produced by Solar Still for Potable Usage.” Fresenius Environmental Bulletin 23 (3 A): 859–866.
  • Al-Hassan, Ghassan A., and Salem A. Algarni. 2013. “Exploring of Water Distillation by Single Solar Still Basins.” American Journal of Climate Change 2: 57–51.
  • Almuhanna, Emad A. 2014. “Evaluation of Single Slope Solar Still Integrated with Evaporative Cooling System of Brackish Water Desalination.” Journal of Agricultural Science 6: 48–48.
  • Al-Sulttani, Ali O., Amimul Ahsan, Ammar N. Hanoon, A. Rahman, N. N. N. Daud, and S. Idrus. 2017. “Hourly Yield Prediction of a Double-Slope Solar Still Hybrid with Rubber Scrapers in Low-Latitude Areas Based on the Particle Swarm Optimization Technique.” Applied Energy 203: 280–303. doi:10.1016/j.apenergy.2017.06.011.
  • Arjunan, T. V., HŞ Aybar, and N. Nedunchezihan. 2011. “Effect of Sponge Liner on the Internal Heat Transfer Coefficients in a Simple Solar Still.” Desalination and Water Treatment 29: 271–284.
  • Arunkumar, T., D. Denkenberger, Amimul Ahsan, and R. Jayaprakash. 2013b. “The Augmentation of Distillate Yield by Using Concentrator Coupled Solar Still with Phase Change Material.” Desalination 314: 189–192. doi:10.1016/j.desal.2013.01.018.
  • Arunkumar, T., David Denkenberger, R. Velraj, Ravishankar Sathyamurthy, Hiroshi Tanaka, and K. Vinothkumar. 2015. “Experimental Study on a Parabolic Concentrator Assisted Solar Desalting System.” Energy Conversion and Management 105: 665–674. doi:10.1016/j.enconman.2015.08.021.
  • Arunkumar, T., R. Jayaprakash, Amimul Ahsan, D. Denkenberger, and M. S. Okundamiya. 2013a. “Effect of Water and Air Flow on Concentric Tubular Solar Water Desalting System.” Applied Energy 103: 109–115. doi:10.1016/j.apenergy.2012.09.014.
  • Arunkumar, T., R. Jayaprakash, D. Denkenberger, Amimul Ahsan, M. S. Okundamiya, kumar Sanjay, Hiroshi Tanaka, and H. Ş Aybar. 2012b. “An Experimental Study on a Hemispherical Solar Still.” Desalination 286: 342–348. doi:10.1016/j.desal.2011.11.047.
  • Arunkumar, T., and A. E. Kabeel. 2017. “Effect of Phase Change Material on Concentric Circular Tubular Solar Still-Integration Meets Enhancement.” Desalination 414: 46–50. doi:10.1016/j.desal.2017.03.035.
  • Arunkumar, T., A. E. Kabeel, K. Raj, D. Denkenberger, R. Sathyamurthy, P. Ragupathy, et al. 2018. “Productivity Enhancement of Solar Still by Using Porous Absorber with Bubble-Wrap Insulation.” Journal of Cleaner Production 195: 1149–1161. doi:10.1016/J.JCLEPRO.2018.05.199.
  • Arunkumar, T., R. Velraj, Amimul Ahsan, A. J. N. Khalifa, S. Shams, D. Denkenberger, and Ravishankar Sathyamurthy. 2016c. “Effect of Parabolic Solar Energy Collectors for Water Distillation.” Desalination and Water Treatment 57 (45): 21234–21242. doi:10.1080/19443994.2015.1119746.
  • Arunkumar, T., R. Velraj, D. C. Denkenberger, and Ravishankar Sathyamurthy. 2016d. “Influence of Crescent Shaped Absorber in Water Desalting System.” Desalination 398: 208–213. doi:10.1016/j.desal.2016.07.039.
  • Arunkumar, T., R. Velraj, D. C. Denkenberger, Ravishankar Sathyamurthy, K. Vinoth Kumar, and Amimul Ahsan. 2016a. “Productivity Enhancements of Compound Parabolic Concentrator Tubular Solar Stills.” Renewable Energy 88: 391–400. doi:10.1016/j.renene.2015.11.051.
  • Arunkumar, T., R. Velraj, D. Denkenberger, Ravishankar Sathyamurthy, K. Vinothkumar, K. Porkumaran, and Amimul Ahsan. 2016b. “Effect of Heat Removal on Tubular Solar Desalting System.” Desalination 379: 24–33. doi:10.1016/j.desal.2015.10.007.
  • Arunkumar, T., K. Vinothkumar, Amimul Ahsan, R. Jayaprakash, and Sanjay Kumar. 2012a. “Experimental Study on Various Solar Still Designs.” ISRN Renewable Energy 2012: 1–10. doi:10.5402/2012/569381.
  • Asadi, Rada Zarasvand, Fatihah Suja, Farhad Mashhoon, and Samad Rahimi. 2011. “Feasibility Studies for Using a Solar Still on Sarkhon Gas Refinery Wastewater Recovery.” Desalination and Water Treatment 30 (1–3): 154–160. doi:10.5004/dwt.2011.1948.
  • Bhardwaj, R., M. V. Ten Kortenaar, and R. F. Mudde. 2015. “Maximized Production of Water by Increasing Area of Condensation Surface for Solar Distillation.” Applied Energy 154: 480–490. doi:10.1016/j.apenergy.2015.05.060.
  • Bilal, Hamza, Abdul Ghafoor, and Anjum Munir. 2016. “Desalination of Brackish Water Using Dual Acting Solar Still.” Journal of Engineering Research 4 (4): 178–193.
  • BIS water quality standard report-2010: http://bis.org.in/sf/fad/FAD25(2047)C.pdf.
  • Chendake, A., S. Patil, P. Kamble, A. Mane, and S. Mane. 2016. “Design and Performance Evaluation of Inverted Pyramid Type Solar Still Distillation Unit.” International Journal of Scientific Research and Development 4: 19–12.
  • Dev, Rahul, Sabah A. Abdul-Wahab, and G. N. Tiwari. 2011. “Performance Study of the Inverted Absorber Solar Still with Water Depth and Total Dissolved Solid.” Applied Energy 88 (1): 252–264. doi:10.1016/j.apenergy.2010.08.001.
  • Diriba Gurmu, Chala, Belay Woldeyes, and Belachew Melese. 2017. “Experimental Evaluation of Basin Type Solar Still for Saline and Fluoride Water Purification (A Case on Giby-Deep Well Water, Dupti, Afar-Ethiopia).” American Journal of Environmental and Resource Economics 2 (1): 27–36.
  • Dutt, D. K., Ashok Kumar, J. D. Anand, and G. N. Tiwari. 1989. “Performance of a Double-Basin Solar Still in the Presence of Dye.” Applied Energy 32 (3): 207–223. doi:10.1016/0306-2619(89)90030-5.
  • Edwin, M., and S. Joseph Sekhar. 2015. “Performance and Chemical Analysis of Distilled Saline Water Production Using Solar Distillation System.” International Journal of ChemTech Research 8 (4): 1632–1637.
  • El-Agouz, S. A. 2014. “Experimental Investigation of Stepped Solar Still with Continuous Water Circulation.” Energy Conversion and Management 86: 186–193. doi:10.1016/j.enconman.2014.05.021.
  • El-Sebaii, A. A., and S. M. Shalaby. 2015. “Parametric Study and Heat Transfer Mechanisms of Single Basin V-Corrugated Solar Still.” Desalination and Water Treatment 55 (2): 285–296. doi:10.1080/19443994.2014.913998.
  • Eltawil, Mohamed A., and Zhao Zhengming. 2009. “Wind Turbine-Inclined Still Collector Integration with Solar Still for Brackish Water Desalination.” Desalination 249 (2): 490–497. doi:10.1016/j.desal.2008.06.029.
  • EPA water quality standard report -2014: https://www.epa.ie/pubs/advice/drinkingwater/2015_04_21_ParametersStandaloneDoc.pdf.
  • Flendrig, L. M., B. Shah, N. Subrahmaniam, and V. Ramakrishnan. 2009. “Low Cost Thermoformed Solar Still Water Purifier for D&E Countries.” Physics and Chemistry of the Earth, Parts A/B/C 34 (1–2): 50–54. doi:10.1016/j.pce.2008.03.007.
  • Hansen, R. Samuel, and K. Kalidasa Murugavel. 2017. “Enhancement of Integrated Solar Still Using Different New Absorber Configurations: An Experimental Approach.” Desalination 422: 59–67. doi:10.1016/j.desal.2017.08.015.
  • Hansen, R. Samuel, C. Surya Narayanan, and K. Kalidasa Murugavel. 2015. “Performance Analysis on Inclined Solar Still with Different New Wick Materials and Wire Mesh.” Desalination 358: 1–8. doi:10.1016/j.desal.2014.12.006.
  • Janarthanan, B., J. Chandrasekaran, and S. Kumar. 2005. “Evaporative Heat Loss and Heat Transfer for Open- and Closed-Cycle Systems of a Floating Tilted Wick Solar Still.” Desalination 180 (1–3): 291–305. doi:10.1016/j.desal.2005.01.010.
  • Janarthanan, B., J. Chandrasekaran, and S. Kumar. 2006. “Performance of Floating Cum Tilted-Wick Type Solar Still with the Effect of Water Flowing Over the Glass Cover.” Desalination 190 (1–3): 51–62. doi:10.1016/j.desal.2005.08.005.
  • Joshi, Poonam, and G. N. Tiwari. 2018. “Energy Matrices, Exergo-Economic and Enviro-Economic Analysis of an Active Single Slope Solar Still Integrated with a Heat Exchanger: A Comparative Study.” Desalination 443: 85–98.
  • Joy, Nivin, Alphonsa Antony, and A. Anderson. 2017. Experimental Study on Improving the Performance of Solar Still Using air Blower.” International Journal of Ambient Energy 39: 613–616.
  • Kabeel, A. E. 2009. “Performance of Solar Still with a Concave Wick Evaporation Surface.” Energy 34 (10): 1504–1509. doi:10.1016/j.energy.2009.06.050.
  • Kabeel, A. E., Y. A. F. El-Samadony, and Wael M. El-Maghlany. 2018. “Comparative Study on the Solar Still Performance Utilizing Different PCM.” Desalination 432: 89–96.
  • Kalbande, S. R., Sneha Deshmukh, and V. P. Khambalkar. 2017. “Evaluation Study of Solar Water Desalination System for Saline Track Area of Vidharba Region.” International Journal of Applied and Natural Sciences (IJANS) 6 (1): 55–64. http://www.iaset.us/view_archives.php?year=2016_27_2&id=73&jtype=2&page=6.
  • Karimi Estahbanati, M. R., Amimul Ahsan, Mehrzad Feilizadeh, Khosrow Jafarpur, Seyedeh Saba Ashrafmansouri, and Mansoor Feilizadeh. 2016. “Theoretical and Experimental Investigation on Internal Reflectors in a Single-Slope Solar Still.” Applied Energy 165: 537–547. doi:10.1016/j.apenergy.2015.12.047.
  • Kaushal, A. K., M. K. Mittal, and D. Gangacharyulu. 2016. “Development and Experimental Study of an Improved Basin Type Vertical Single Distillation Cell Solar Still.” Desalination 398: 121–132. doi:10.1016/j.desal.2016.07.017.
  • Kumar, Ashish, Prashant Anthony, and Mohd Asghar Zaidi. 2014. “Distillate Water Quality Analysis and Economic Steady of a Passive Solar Still.” Recent Research in Science and Technology 6: 128–130.
  • Kumar, Shiv, and G. N. Tiwari. 2009. “Life Cycle Cost Analysis of Single Slope Hybrid (PV/T) Active Solar Still.” Applied Energy 86 (10): 1995–2004. doi:10.1016/j.apenergy.2009.03.005.
  • Madani, A. A., and G. M. Zaki. 1995. “Yield of Solar Stills with Porous Basins.” Applied Energy 52 (2–3): 273–281. doi:10.1016/0306-2619(95)00044-S.
  • Madhlopa, Amos. 2009. Development of an Advanced Passive Solar Still With Separate Condenser.” PhD Thesis, University of Strathclyde Glasgow, United Kingdom.
  • Mashaly, Ahmed F., A. A. Alazba, and A. M. Al-Awaadh. 2016. “Assessing the Performance of Solar Desalination System to Approach Near-ZLD Under Hyper Arid Environment.” Desalination and Water Treatment 57 (26): 12019–12036. doi:10.1080/19443994.2015.1048738.
  • Minasian, A. N., and A. A. Al-Karaghouli. 1995. “An Improved Solar Still: The Wick-Basin Type.” Energy Conversion and Management 36 (3): 213–217. doi:10.1016/0196-8904(94)00053-3.
  • Mohamed Iqbal, S., K. Karthik, and Michael Jee Joe. 2018. Performance Analysis on Improved Efficiency in a Hybrid Solar Still and Solar Heater.” International Journal of Ambient Energy 1–8.doi:10.1080/01430750.2018.1517685.
  • Naroei, Mehrnaz, Faramarz Sarhaddi, and Fatemeh Sobhnamayan. 2018. “Efficiency of a Photovoltaic Thermal Stepped Solar Still: Experimental and Numerical Analysis.” Desalination 441: 87–95.
  • Okeke, C. E., S. U. Egarievwe, and A. O. E. Animalu. 1990. “Effects of Coal and Charcoal on Solar-Still Performance.” Energy 15 (11): 1071–1073. doi:10.1016/0360-5442(90)90035-Z.
  • Omara, Z. M., Mohamed A. Eltawil, and ElSayed A. ElNashar. 2013. “A New Hybrid Desalination System Using Wicks/Solar Still and Evacuated Solar Water Heater.” Desalination 325: 56–64. doi:10.1016/j.desal.2013.06.024.
  • Palpandi, K., and R. Prem Raj. 2015. “Performance Test on Solar Still for Various TDS Water and Phase Change Materials.” International Journal of Innovative Research in Science. Engineering and Technology 4: 451–461.
  • Pillai, Rohit, A. T. Libin, and M. Mani. 2015. “Study Into Solar-Still Performance Under Sealed and Unsealed Conditions.” International Journal of Low-Carbon Technologies 10 (4): 354–364. doi:10.1093/ijlct/ctt045.
  • Prof. Suryasarathi Bose, Dept. of Materials Engineering, Indian Institute of Science (IISC), Bangalore proved the antibacterial property of copper coated membrane, http://www.thehindu.com/sci-tech/science/iisc-copper-coated-membrane-makes-drinking-water-safe/article19524569.ece.
  • Rajaseenivasan, T., K. Kalidasa Murugavel, and T. Elango. 2015. “Performance and Exergy Analysis of a Double-Basin Solar Still with Different Materials in Basin.” Desalination and Water Treatment 55 (7): 1786–1794. doi:10.1080/19443994.2014.928800.
  • Raza, Saleem, K. C. Mukwana, and M. M. Tunio. 2014. “Experimental Study of Desalination Technologies and Timer-Based Solar PV Tracking System.” Quaid-e-Awam University Research Journal of Engineering, Science & Technology 13 (1): 1–6.
  • Riahi, A., K. Wan Yusof, B. S. Mahinder Singh, M. H. Isa, E. Olisa, and N. A. M. Zahari. 2016. “Sustainable Potable Water Production Using a Solar Still with Photovoltaic Modules-AC Heater.” Desalination and Water Treatment 57 (32), doi:10.1080/19443994.2015.1070285.
  • Saha, Sharvil, Nayan Mistry, Iqbal Husein, and Jujara Nilesh. 2017. “Design and Construction of Solar Water Distillation System.” International Journal of Scientific Research in Science Engineering and Technology 3: 606–610.
  • Sakthivel, M., S. Shanmugasundaram, and T. Alwarsamy. 2010. “An Experimental Study on a Regenerative Solar Still with Energy Storage Medium - Jute Cloth.” Desalination 264 (1–2): 24–31. doi:10.1016/j.desal.2010.06.074.
  • Sampathkumar, K., and P. Senthilkumar. 2012. “Utilization of Solar Water Heater in a Single Basin Solar Still-An Experimental Study.” Desalination 297: 8–19. doi:10.1016/j.desal.2012.04.012.
  • Saxena, Abhishek, and Navneet Deval. 2016. “A High Rated Solar Water Distillation Unit for Solar Homes.” Journal of Engineering (United States) 2016: 1–8.
  • Sengar, S. H., Y. P. Khandetod, and A. G. Mohod. 2012. “New Innovation of Low Cost Solar Still.” European Journal of Sustainable Development 1 (2): 315–352.
  • Sengar, S. H., A. G. Mohod, Y. P. Khandetod, S. P. Modak, and D. K. Gupta. 2011. “Design and Development of Wick Type Solar Distillation System.” Journal of Soil Science and Environmental Management 2 (7): 125–133. http://www.academicjournals.org/JSSEM.
  • Shanmugasundaram, K. 2016. “Experimental Study on Different Designs of Solar Still and its Uses.” International Journal of Trend in Research and Development 32: 559–562.
  • Shatat, M. I. M., K. Mahkamov, and K. Johnson. 2009. “Experimental and Theoretical Investigations of Performance of Multi-Stage Solar Still Water Desalination Unit Coupled with an Evacuated Tube Solar Collector.” 2008 Proceedings of the 2nd International Conference on Energy Sustainability, ES 2008 2: 655–664.
  • Shukla, S. K., and V. P. S. Sorayan. 2005. “Thermal Modeling of Solar Stills: An Experimental Validation.” Renewable Energy 30 (5): 683–699. doi:10.1016/j.renene.2004.03.009.
  • Siddiqqui, Mohammed Tahir, and Ankit Jain Satyapal. 2015. “Analysis of Solar Still with Reflector.” International Journal for Technological Research in Engineering 2: 1211–1216.
  • Sivakumar, V., and E. Ganapathy Sundaram. 2016. “Experimental Studies on Quality of Desalinated Water Derived From Single Slope Passive Solar Still.” Desalination and Water Treatment 57 (57): 1–11. doi:10.1080/19443994.2016.1176963.
  • Sodha, M. S., A. Kumar, G. N. Tiwari, and G. C. Pandey. 1980. “Effects of Dye on the Performance of a Solar Still.” Applied Energy 7 (1–3): 147–162. doi:10.1016/0306-2619(80)90055-0.
  • Srivastava, Pankaj K., and S. K. Agrawal. 2013. “Experimental and Theoretical Analysis of Single Sloped Basin Type Solar Still Consisting of Multiple Low Thermal Inertia Floating Porous Absorbers.” Desalination 311: 198–205. doi:10.1016/j.desal.2012.11.035.
  • Tanaka, Hiroshi. 2011. “Solar Thermal Collector Augmented by Flat Plate Booster Reflector: Optimum Inclination of Collector and Reflector.” Applied Energy 88 (4): 1395–1404. doi:10.1016/j.apenergy.2010.10.032.
  • Thirugnanasambantham, Arunkumar, Jayaprakash Rajan, Amimul Ahsan, and Vinothkumar Kumar. 2013. “Effect of Air Flow on Tubular Solar Still Efficiency.” Iranian Journal of Environmental Health Science and Engineering 10: 31. doi:10.1186/1735-2746-10-31.
  • Vinoth Kumar, K., and R. Kasturi Bai. 2008. “Performance Study on Solar Still with Enhanced Condensation.” Desalination 230 (1–3): 51–61. doi:10.1016/j.desal.2007.11.015.
  • WHO water quality standard report-2017: http://apps.who.int/iris/bitstream/10665/254637/1/9789241549950-eng.pdf.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.