Review

A Solution to Waste Economy and Water Scarcity; Air Conditioning Wastewater

Volume: 8 Number: 2 March 15, 2025
EN TR

A Solution to Waste Economy and Water Scarcity; Air Conditioning Wastewater

Abstract

The waste economy, which is based on the use of wastes that are previously produced and/or produced during the production/consumption process and contain valuable substances for production and pose a significant threat to nature, humans and other living beings, as an alternative to depleting production resources, is a mandatory activity that must be implemented. The waste economy is the process of obtaining production inputs necessary to meet human needs from wastes. The aim of this study is to examine whether wastewater produced by air conditioners at zero cost can be used as an alternative water source to meet the increasing water demand. The study method is the literature review method and scientific studies on the subject, academic publications, digital resources, documents, reports, opinions and evaluations published by authorized and expert national/international persons, institutions and organizations on the subject were used as the study material. The study findings support the fact that waste is an important source of raw materials when evaluated correctly, and that the costs incurred to manage these wastes are instantly transformed into production investments (waste recycling revenue in the world in 2020 was 135 billion dollars). Similarly, the study findings support the fact that evaluating air conditioning wastewater will create significant economic value. Tons of water produced by approximately 2 billion air conditioners in the world (a 1-ton air conditioner produces 1.10 litres of wastewater per hour) and used for various purposes such as drinking and irrigation, which should be used for the economy, are wasted. According to the study findings, wastes (water, plastic, electronics, organic, etc.), which could provide significant economic gains but are not evaluated and cause great economic losses and costs, provide strong evidence that they will be a source of raw materials that meet our needs.

Keywords

Supporting Institution

None

Project Number

None

Thanks

None

References

  1. Abdullah MA, Mursalin R. 2021. Condensed water recycling in an air conditioning unit. IJRDO, 18(3): 13-19. https://doi.org/10.9790/1684-1803021319
  2. Akram MW, Mursalin R, Hassan MM, Islam MR, Choudhury SK. 2018. Recycling of condensed water from an air conditioning unit. In: Proceedings of the 2018 International Conference on Computer, Communication, Chemical, Material and Electronic Engineering (IC4ME2), 8-9 February, Rajshahi, Bangladesh, pp: 1-5. https://doi.org/10.1109/IC4ME2.2018.8465612
  3. AlGhamdi SA, Alromi D, Jambi E, Alzughaibi T, Al-Ansari A. 2024. Heavy metals and microbial assessment of air conditioning condensate water in Jeddah city-Saudi Arabia: concept of sustainable water resources. Sustain. Water Resour Manag, 2024: 1-10. https://doi.org/10.1007/s40899-024-01122-2
  4. Ali S, Shirazi F. 2023. The Paradigm of circular economy and an effective electronic waste management. Sustainabil, 15(3): 1998. https://doi.org/10.3390/su15031998
  5. Alom MdM, Ahsanb A, Imteaz M. 2021. Quantity and quality of condensate air conditioner water for potential use in drinking purpose. Desalination Water Treat, 210: 164–169. https://doi.org/10.5004/dwt.2021.26571
  6. ATO, 2023. Su raporu. Ankara Ticaret Borsası (ATO). URL: https://www.ankaratb.org.tr/lib_upload/Su%20raporu.pdf (accessed date: August 28, 2024)
  7. Bastos CS, Calmon JL. 2013. Using condensed water of air conditioners for toilet flushing: A Case Study in Brazil J Archit Civ Eng, 7(1): 98-104. URL: https://www.davidpublisher.com/Public/uploads/Contribute/5553107865bb7.pdf (accessed date: August 28, 2024)
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Details

Primary Language

English

Subjects

Waste Management, Reduction, Reuse and Recycling

Journal Section

Review

Publication Date

March 15, 2025

Submission Date

September 28, 2024

Acceptance Date

January 14, 2025

Published in Issue

Year 2025 Volume: 8 Number: 2

APA
Sayğı, H. (2025). A Solution to Waste Economy and Water Scarcity; Air Conditioning Wastewater. Black Sea Journal of Engineering and Science, 8(2), 546-557. https://doi.org/10.34248/bsengineering.1557501
AMA
1.Sayğı H. A Solution to Waste Economy and Water Scarcity; Air Conditioning Wastewater. BSJ Eng. Sci. 2025;8(2):546-557. doi:10.34248/bsengineering.1557501
Chicago
Sayğı, Hülya. 2025. “A Solution to Waste Economy and Water Scarcity; Air Conditioning Wastewater”. Black Sea Journal of Engineering and Science 8 (2): 546-57. https://doi.org/10.34248/bsengineering.1557501.
EndNote
Sayğı H (March 1, 2025) A Solution to Waste Economy and Water Scarcity; Air Conditioning Wastewater. Black Sea Journal of Engineering and Science 8 2 546–557.
IEEE
[1]H. Sayğı, “A Solution to Waste Economy and Water Scarcity; Air Conditioning Wastewater”, BSJ Eng. Sci., vol. 8, no. 2, pp. 546–557, Mar. 2025, doi: 10.34248/bsengineering.1557501.
ISNAD
Sayğı, Hülya. “A Solution to Waste Economy and Water Scarcity; Air Conditioning Wastewater”. Black Sea Journal of Engineering and Science 8/2 (March 1, 2025): 546-557. https://doi.org/10.34248/bsengineering.1557501.
JAMA
1.Sayğı H. A Solution to Waste Economy and Water Scarcity; Air Conditioning Wastewater. BSJ Eng. Sci. 2025;8:546–557.
MLA
Sayğı, Hülya. “A Solution to Waste Economy and Water Scarcity; Air Conditioning Wastewater”. Black Sea Journal of Engineering and Science, vol. 8, no. 2, Mar. 2025, pp. 546-57, doi:10.34248/bsengineering.1557501.
Vancouver
1.Hülya Sayğı. A Solution to Waste Economy and Water Scarcity; Air Conditioning Wastewater. BSJ Eng. Sci. 2025 Mar. 1;8(2):546-57. doi:10.34248/bsengineering.1557501

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