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Waste 4.0 : blockchain-enabled peer-to-peer communication among medical waste stakeholders

Mohamed, Nurul Hamizah ; Goddanti, Jayashri ; Khan, Samir and Jagtap, Sandeep LU orcid (2026) In Sustainability 18(9).
Abstract
Medical waste management has been receiving increasing attention in recent years. The National Health Service (NHS) of the United Kingdom has started planning its waste strategy to comply with its Net Zero Goals. Waste management does not only involve waste disposal; the process includes segregation, collection, storage, and the transportation of waste from one point to another. Unusual characteristics of waste from the healthcare industry are that waste can be infectious and needs special storage conditions and specific transportation criteria to maintain the waste’s quality. However, entities working with the waste lack knowledge about the waste they receive and need assistance to verify the quality of the waste as well. Limited... (More)
Medical waste management has been receiving increasing attention in recent years. The National Health Service (NHS) of the United Kingdom has started planning its waste strategy to comply with its Net Zero Goals. Waste management does not only involve waste disposal; the process includes segregation, collection, storage, and the transportation of waste from one point to another. Unusual characteristics of waste from the healthcare industry are that waste can be infectious and needs special storage conditions and specific transportation criteria to maintain the waste’s quality. However, entities working with the waste lack knowledge about the waste they receive and need assistance to verify the quality of the waste as well. Limited knowledge can lead to injuries, contamination, or the spread of pathogens. The global monitoring guidelines of medical waste are studied to understand the monitoring requirements and the stakeholders who are working with the waste. Application and research contributions to the digitisation of medical waste monitoring are scrutinised to look for the monitoring gaps. This paper proposes a digital system designed to connect all waste stakeholders within a blockchain environment, supported by automated data collection. A framework for stakeholder communication with data is designed. The data gathered from transporters is analysed before sending the status to the blockchain. Furthermore, the paper outlines a dashboard showcasing the digitisation of waste management, backed by a case study used for validation. A hypothetical case study in managing waste using existing manual waste monitoring in the United Kingdom is compared with monitoring using the system. By employing a proving method of all activities approach with blockchain technology, this method has achieved a 25.17% improvement in medical waste management time-taken efficiency and a 27.85% improvement while virtually eliminating the risk of fraudulent documentation. (Less)
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author
; ; and
organization
publishing date
type
Contribution to journal
publication status
published
subject
in
Sustainability
volume
18
issue
9
article number
4558
pages
31 pages
publisher
MDPI AG
ISSN
2071-1050
DOI
10.3390/su18094558
language
English
LU publication?
yes
id
b84dfd0a-8eb3-4183-a458-a999cf98a38e
date added to LUP
2026-05-06 08:51:26
date last changed
2026-06-02 10:24:14
@article{b84dfd0a-8eb3-4183-a458-a999cf98a38e,
  abstract     = {{Medical waste management has been receiving increasing attention in recent years. The National Health Service (NHS) of the United Kingdom has started planning its waste strategy to comply with its Net Zero Goals. Waste management does not only involve waste disposal; the process includes segregation, collection, storage, and the transportation of waste from one point to another. Unusual characteristics of waste from the healthcare industry are that waste can be infectious and needs special storage conditions and specific transportation criteria to maintain the waste’s quality. However, entities working with the waste lack knowledge about the waste they receive and need assistance to verify the quality of the waste as well. Limited knowledge can lead to injuries, contamination, or the spread of pathogens. The global monitoring guidelines of medical waste are studied to understand the monitoring requirements and the stakeholders who are working with the waste. Application and research contributions to the digitisation of medical waste monitoring are scrutinised to look for the monitoring gaps. This paper proposes a digital system designed to connect all waste stakeholders within a blockchain environment, supported by automated data collection. A framework for stakeholder communication with data is designed. The data gathered from transporters is analysed before sending the status to the blockchain. Furthermore, the paper outlines a dashboard showcasing the digitisation of waste management, backed by a case study used for validation. A hypothetical case study in managing waste using existing manual waste monitoring in the United Kingdom is compared with monitoring using the system. By employing a proving method of all activities approach with blockchain technology, this method has achieved a 25.17% improvement in medical waste management time-taken efficiency and a 27.85% improvement while virtually eliminating the risk of fraudulent documentation.}},
  author       = {{Mohamed, Nurul Hamizah and Goddanti, Jayashri and Khan, Samir and Jagtap, Sandeep}},
  issn         = {{2071-1050}},
  language     = {{eng}},
  month        = {{05}},
  number       = {{9}},
  publisher    = {{MDPI AG}},
  series       = {{Sustainability}},
  title        = {{Waste 4.0 : blockchain-enabled peer-to-peer communication among medical waste stakeholders}},
  url          = {{https://lup.lub.lu.se/search/files/249354717/sustainability-18-04558-v2.pdf}},
  doi          = {{10.3390/su18094558}},
  volume       = {{18}},
  year         = {{2026}},
}