The handling of healthcare waste analysis with an interval-valued Fermatean fuzzy-based decision-making technique

Medical waste risks people and the environment because it can be infectious and contain hazardous substances. For patients to receive medical attention and recover in a safe environment, garbage must be disposed of correctly. Improper medical waste disposal poses a severe risk to society, which can...

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Main Authors: Murat Kirişci, Serdar Kuzu, Ali Kablan
Format: Article
Language:English
Published: Elsevier 2025-06-01
Series:Sustainable Futures
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Online Access:http://www.sciencedirect.com/science/article/pii/S2666188825001510
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author Murat Kirişci
Serdar Kuzu
Ali Kablan
author_facet Murat Kirişci
Serdar Kuzu
Ali Kablan
author_sort Murat Kirişci
collection DOAJ
description Medical waste risks people and the environment because it can be infectious and contain hazardous substances. For patients to receive medical attention and recover in a safe environment, garbage must be disposed of correctly. Improper medical waste disposal poses a severe risk to society, which can accelerate the development of various pandemics and epidemics. In this case, medical waste disposal should be handled appropriately. This study presents an integrated multi-criteria decision-making method based on an interval-valued Fermatean fuzzy set. In interval-valued Fermatean fuzzy set, the set of all closed intervals in the unit interval [0,1] is used, and membership and non-membership interval values are taken, making it possible to cover many more elements. The study used entropy, Step-wise Weight Assessment Ratio Analysis (SWARA), and Weighted Aggregated Sum Product Assessment (WASPAS) methods defined with interval-valued Fermatean fuzzy numbers. To calculate the criteria weights, the combined entropy-SWARA method is used to compute the objective and subjective weights, respectively. Furthermore, the WASPAS model is utilized to rank alternatives to healthcare waste disposal techniques. After determining the weights of the experts, the rankings of the criteria and alternatives were determined. This method can guarantee high safety and security for health practitioners and society through effective modeling and ranking of risks associated with medical waste disposal. Five alternatives and eight criteria were determined. The analysis for healthcare waste found that incineration ranked highest among other criteria, followed by electromagnetic wave sterilization, disinfection with chemicals, landfill, and encapsulation. In addition, the work’s findings demonstrated that the integrated approach was efficient and helpful in selecting the best disposal technique in healthcare institutions and healthcare waste service companies for healthcare waste management. The performance was then assessed and validated using a sensitivity analysis. For Sensitivity Analysis, experts can adjust the model’s sensitivity by changing the ϑ values. In addition, the study’s findings and their consequences for lawmakers, businesspeople, technologists, and practitioners are examined. In the future, these stakeholders can concentrate on these deficiencies and provide long-term remedies.
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spelling doaj-art-a62c85ec81b741f89e84fb2d718814b42025-08-20T03:45:34ZengElsevierSustainable Futures2666-18882025-06-01910058110.1016/j.sftr.2025.100581The handling of healthcare waste analysis with an interval-valued Fermatean fuzzy-based decision-making techniqueMurat Kirişci0Serdar Kuzu1Ali Kablan2Istanbul University-Cerrahpaşa, Department of Biostatistics and Medical Informatics, Istanbul, Turkiye; Corresponding author.Istanbul University-Cerrahpaşa, Accounting and Tax Department, Istanbul, TurkiyeIstanbul University-Cerrahpaşa, Department of Foreign Trade, Istanbul, TurkiyeMedical waste risks people and the environment because it can be infectious and contain hazardous substances. For patients to receive medical attention and recover in a safe environment, garbage must be disposed of correctly. Improper medical waste disposal poses a severe risk to society, which can accelerate the development of various pandemics and epidemics. In this case, medical waste disposal should be handled appropriately. This study presents an integrated multi-criteria decision-making method based on an interval-valued Fermatean fuzzy set. In interval-valued Fermatean fuzzy set, the set of all closed intervals in the unit interval [0,1] is used, and membership and non-membership interval values are taken, making it possible to cover many more elements. The study used entropy, Step-wise Weight Assessment Ratio Analysis (SWARA), and Weighted Aggregated Sum Product Assessment (WASPAS) methods defined with interval-valued Fermatean fuzzy numbers. To calculate the criteria weights, the combined entropy-SWARA method is used to compute the objective and subjective weights, respectively. Furthermore, the WASPAS model is utilized to rank alternatives to healthcare waste disposal techniques. After determining the weights of the experts, the rankings of the criteria and alternatives were determined. This method can guarantee high safety and security for health practitioners and society through effective modeling and ranking of risks associated with medical waste disposal. Five alternatives and eight criteria were determined. The analysis for healthcare waste found that incineration ranked highest among other criteria, followed by electromagnetic wave sterilization, disinfection with chemicals, landfill, and encapsulation. In addition, the work’s findings demonstrated that the integrated approach was efficient and helpful in selecting the best disposal technique in healthcare institutions and healthcare waste service companies for healthcare waste management. The performance was then assessed and validated using a sensitivity analysis. For Sensitivity Analysis, experts can adjust the model’s sensitivity by changing the ϑ values. In addition, the study’s findings and their consequences for lawmakers, businesspeople, technologists, and practitioners are examined. In the future, these stakeholders can concentrate on these deficiencies and provide long-term remedies.http://www.sciencedirect.com/science/article/pii/S2666188825001510Healthcare wasteInterval-valued Fermatean fuzzy setDecision-makingEntropyStep-wise Weight Assessment Ratio AnalysisWeighted Aggregated Sum Product Assessment
spellingShingle Murat Kirişci
Serdar Kuzu
Ali Kablan
The handling of healthcare waste analysis with an interval-valued Fermatean fuzzy-based decision-making technique
Sustainable Futures
Healthcare waste
Interval-valued Fermatean fuzzy set
Decision-making
Entropy
Step-wise Weight Assessment Ratio Analysis
Weighted Aggregated Sum Product Assessment
title The handling of healthcare waste analysis with an interval-valued Fermatean fuzzy-based decision-making technique
title_full The handling of healthcare waste analysis with an interval-valued Fermatean fuzzy-based decision-making technique
title_fullStr The handling of healthcare waste analysis with an interval-valued Fermatean fuzzy-based decision-making technique
title_full_unstemmed The handling of healthcare waste analysis with an interval-valued Fermatean fuzzy-based decision-making technique
title_short The handling of healthcare waste analysis with an interval-valued Fermatean fuzzy-based decision-making technique
title_sort handling of healthcare waste analysis with an interval valued fermatean fuzzy based decision making technique
topic Healthcare waste
Interval-valued Fermatean fuzzy set
Decision-making
Entropy
Step-wise Weight Assessment Ratio Analysis
Weighted Aggregated Sum Product Assessment
url http://www.sciencedirect.com/science/article/pii/S2666188825001510
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