Solar still, desalination, solar energy, purification, technologies.
Abstract
Fresh water is becoming scarce with time, leading to severe water crisis in many parts of the world. Growing demands of freshwater resources are creating an urgent need to develop self-sustained system to meet the demand of fresh water. Among the available purification technologies, solar distillation process proves to be a suitable solution for resolving this existing crisis. The sun’s energy heat increases the rate of evaporation. As the water evaporates, water vapor rises and condenses on the glass surface for collection. Among the various methods of purification of water solar distillation is more prominent. The distillation is one of the important methods of getting pure water from brackish water using solar energy. An experimental work is conducted on a double slope single basin solar still. So in this paper, the characteristics and working principles of double slope still introduced and the current researches in the field are described from the viewpoint of experimental tests, theoretical analyses as well as practical application.
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IJRTI — journal style
"Methods of Performance enhancement in solar still distillation: A Review", IJRTI - International Journal for Research Trends and Innovation (www.ijrti.org), ISSN:2456-3315, Vol.4, Issue 6, page no.35 - 42, June-2019, Available :https://ijrti.org/papers/IJRTI1906005.pdf
APA — 7th edition
Prajapati, U. K., Gupta, B., & Bhalavi, J. (2019). Methods of Performance enhancement in solar still distillation: A Review. International Journal for Research Trends and Innovation, 4(6), 35 - 42. https://ijrti.org/viewpaperforall.php?paper=IJRTI1906005
MLA — 9th edition
Prajapati, Uday Kumar, et al. "Methods of Performance enhancement in solar still distillation: A Review." International Journal for Research Trends and Innovation, vol. 4, no. 6, 2019, pp. 35 - 42, https://ijrti.org/viewpaperforall.php?paper=IJRTI1906005.
Chicago — 17th, bibliography
Prajapati, Uday Kumar, Bhupendra Gupta, and Jyoti Bhalavi. "Methods of Performance enhancement in solar still distillation: A Review." International Journal for Research Trends and Innovation 4, no. 6 (2019): 35 - 42. https://ijrti.org/viewpaperforall.php?paper=IJRTI1906005.
Harvard — author–date
Prajapati, U.K., Gupta, B. and Bhalavi, J. (2019) 'Methods of Performance enhancement in solar still distillation: A Review', International Journal for Research Trends and Innovation, 4(6), pp. 35 - 42. Available at: https://ijrti.org/viewpaperforall.php?paper=IJRTI1906005
IEEE — numbered reference
U. K. Prajapati, B. Gupta and J. Bhalavi, "Methods of Performance enhancement in solar still distillation: A Review," IJRTI, vol. 4, no. 6, pp. 35 - 42, Jun. 2019.
Vancouver — biomedical
Prajapati UK, Gupta B, Bhalavi J. Methods of Performance enhancement in solar still distillation: A Review. IJRTI. 2019 Jun;4(6):35 - 42.
AMA — 11th edition
Prajapati UK, Gupta B, Bhalavi J. Methods of Performance enhancement in solar still distillation: A Review. IJRTI. 2019;4(6):35 - 42. Accessed at https://ijrti.org/viewpaperforall.php?paper=IJRTI1906005
BibTeX — Zotero, Mendeley, LaTeX
@article{IJRTI1906005,
author = {Uday Kumar Prajapati and Bhupendra Gupta and Jyoti Bhalavi},
title = {Methods of Performance enhancement in solar still distillation: A Review},
journal = {International Journal for Research Trends and Innovation},
volume = {4},
number = {6},
pages = {35 - 42},
year = {2019},
month = {June},
issn = {2456-3315},
url = {https://ijrti.org/viewpaperforall.php?paper=IJRTI1906005}
}
RIS — EndNote, RefWorks
TY - JOUR
AU - Prajapati, Uday Kumar
AU - Gupta, Bhupendra
AU - Bhalavi, Jyoti
TI - Methods of Performance enhancement in solar still distillation: A Review
T2 - International Journal for Research Trends and Innovation
JA - IJRTI
VL - 4
IS - 6
PY - 2019
SN - 2456-3315
UR - https://ijrti.org/viewpaperforall.php?paper=IJRTI1906005
SP - 35
EP - 42
ER -
International Journal for Research Trends and InnovationPublished by IJRTI (JW Publication)
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Declarations
Funding
No external funding was received for this study.
Conflict of Interest
The authors declare that they have no conflict of interest.
Acknowledgements
The authors would like to thank the reviewers and the editorial board of International Journal for Research Trends and Innovation for their careful reading and constructive comments, and all colleagues who supported the preparation of this manuscript.