Review

Environmental studies for various simple and hybrid solar still configurations: A comprehensive review

Volume: 10 Number: 6 November 19, 2024
EN

Environmental studies for various simple and hybrid solar still configurations: A comprehensive review

Abstract

In this review article the results for the last three years are given with regard to the energy payback time, the embodied energy, the emissions of carbon dioxide (CO2), conversion efficiency of life cycle, attenuation of the CO2 and the carbon credit earned (CCE). The study parameters are relatively difficult to follow their evolution according to the experimental prototype studied and the materials used. All depend on the nature of the design and the economic part. The findings demonstrated that embodied energy ranges from 30 to 100 percent of the total life cycle consumed. EPT typically depends on the location and the equipment used, and it has the least negative environmental effects when used in products with an average shelf life of 10 years or less, regardless of the type of solar still. Desalination methods attain their optimum efficiency very quickly in terms of sustainability, according to LCCE. CO2 mitigation is more likely to occur with active systems than with passive ones. The system (CSS + WM + PTC) with the highest embodied energy value among the systems under study has a value that is approximately 54% greater than that of CSS.

Keywords

References

  1. [1] Chauhan PS, Kumar A, Nuntadusit C. Thermo-environomical and drying kinetics of bitter gourd flakes drying under north wall insulated greenhouse dryer. Solar Energy 2018;162:205–216. [CrossRef]
  2. [2] Vijayan S, Arjunan TV, Kumar A. Exergo-environmental analysis of an indirect forced convection solar dryer for drying bitter gourd slices. Renewable Energy 2019;146:2210–2223. [CrossRef]
  3. [3] Tiwari S, Sahdev RK, Kumar M, Chhabra D, Tiwari P, Tiwari GN. Environmental and economic sustainability of PVT drying system: A heat transfer approach. Environ Prog Sustain Energy. 2020;40:e13535. [CrossRef]
  4. [4] Kumar M, Sahdev RK, Tiwari S, Manchanda H, Chhabra D, Panchal H, et al. Thermal performance and kinetic analysis of vermicelli drying inside a greenhouse for sustainable development. Sustain Energy Technol Assess 2021;44:101082. [CrossRef]
  5. [5] Kumar G, Pal P, Agarwal P, Dev R, Chauhan AK. Embodied energy, pay-back period and cost analysis of triple slope solar still integrated with glass-glass PV module. J Energy Environ Sustain 2020;9:7–12. [CrossRef]
  6. [6] Sahota L, Tiwari GN. Energy matrices, enviroeconomic and exergoeconomic analysis of passive double slope solar still with water-based nanofluids. Desalination 2017;409:66–79. [CrossRef]
  7. [7] Reddy KS, Sharon H. Active multi-effect vertical solar still: Mathematical modeling, performance investigation and enviro-economic analyses. Desalination 2016;395:99–120. [CrossRef]
  8. [8] BanyMousa O, Kara S, Taylor RA. Comparative energy and greenhouse gas assessment of industrial rooftop-integrated PV and solar thermal collectors. Appl Energy 2019;239:122060. [CrossRef]

Details

Primary Language

English

Subjects

Thermodynamics and Statistical Physics

Journal Section

Review

Publication Date

November 19, 2024

Submission Date

November 16, 2023

Acceptance Date

February 13, 2024

Published in Issue

Year 2024 Volume: 10 Number: 6

APA
Hidouri, K., Togun, H., Rashid, F. L., Abed, A. M., Hussein, A. K., Ali, B., Rout, S., Hamida, M. B. B., & Biswal, U. (2024). Environmental studies for various simple and hybrid solar still configurations: A comprehensive review. Journal of Thermal Engineering, 10(6), 1698-1714. https://izlik.org/JA66EL95AT
AMA
1.Hidouri K, Togun H, Rashid FL, et al. Environmental studies for various simple and hybrid solar still configurations: A comprehensive review. Journal of Thermal Engineering. 2024;10(6):1698-1714. https://izlik.org/JA66EL95AT
Chicago
Hidouri, Khaoula, Hussein Togun, Farhan Lafta Rashid, et al. 2024. “Environmental Studies for Various Simple and Hybrid Solar Still Configurations: A Comprehensive Review”. Journal of Thermal Engineering 10 (6): 1698-1714. https://izlik.org/JA66EL95AT.
EndNote
Hidouri K, Togun H, Rashid FL, Abed AM, Hussein AK, Ali B, Rout S, Hamida MBB, Biswal U (November 1, 2024) Environmental studies for various simple and hybrid solar still configurations: A comprehensive review. Journal of Thermal Engineering 10 6 1698–1714.
IEEE
[1]K. Hidouri et al., “Environmental studies for various simple and hybrid solar still configurations: A comprehensive review”, Journal of Thermal Engineering, vol. 10, no. 6, pp. 1698–1714, Nov. 2024, [Online]. Available: https://izlik.org/JA66EL95AT
ISNAD
Hidouri, Khaoula - Togun, Hussein - Rashid, Farhan Lafta - Abed, Azher M. - Hussein, Ahmed Kadhim - Ali, Bagh - Rout, Sachindra - Hamida, Mohamed Bechir Ben - Biswal, Uddhaba. “Environmental Studies for Various Simple and Hybrid Solar Still Configurations: A Comprehensive Review”. Journal of Thermal Engineering 10/6 (November 1, 2024): 1698-1714. https://izlik.org/JA66EL95AT.
JAMA
1.Hidouri K, Togun H, Rashid FL, Abed AM, Hussein AK, Ali B, Rout S, Hamida MBB, Biswal U. Environmental studies for various simple and hybrid solar still configurations: A comprehensive review. Journal of Thermal Engineering. 2024;10:1698–1714.
MLA
Hidouri, Khaoula, et al. “Environmental Studies for Various Simple and Hybrid Solar Still Configurations: A Comprehensive Review”. Journal of Thermal Engineering, vol. 10, no. 6, Nov. 2024, pp. 1698-14, https://izlik.org/JA66EL95AT.
Vancouver
1.Khaoula Hidouri, Hussein Togun, Farhan Lafta Rashid, Azher M. Abed, Ahmed Kadhim Hussein, Bagh Ali, Sachindra Rout, Mohamed Bechir Ben Hamida, Uddhaba Biswal. Environmental studies for various simple and hybrid solar still configurations: A comprehensive review. Journal of Thermal Engineering [Internet]. 2024 Nov. 1;10(6):1698-714. Available from: https://izlik.org/JA66EL95AT

IMPORTANT NOTE: JOURNAL SUBMISSION LINK http://eds.yildiz.edu.tr/journal-of-thermal-engineering