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E-waste flow among selected institutions of higher learning using material flow analysis model

Author

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  • Agamuthu, P.
  • Kasapo, Pearson
  • Mohd Nordin, Nurul Ain

Abstract

Institutions of higher learning (universities) contribute significantly to the rapidly growing threat of e-waste. This research focused mainly on Information and Communication Technology (ICT) e-waste management in selected universities in the Klang Valley of Central Region, Malaysia. ICT equipments (computers, printers, copiers) are the most widely used and frequently replaced electronics in universities and if not soundly managed pose grave environmental hazards because of their components which contain toxic substances. The objective of the article is to analyze e-waste flow among selected institutions of higher learning using material flow analysis model. Material Flow Analysis (MFA) modeling was conducted to investigate e-waste management systems, from asset purchase, use, end-of-life and disposal. Furthermore, MFA also led to better system analysis which contributed to practical recommendations for sustainable e-waste management. STAN (subSTance flow ANalysis) 2.5 software was used to perform the MFA modeling providing graphical models of university e-waste management, data reconciliation, propagation of uncertainty and gross error detection. Findings of the research showed that some universities generated 100 tons of ICT e-waste in 2012 with an estimated market value of RM 0.3 million (US$98.500). The study also found that 7.5 tons of e-waste was discarded into the MSW stream thus contributing to heavy metal contamination in landfill or dump sites. Extended Producer Responsibility (EPR) options i.e. take-back in university systems were practically nonexistent in these universities.

Suggested Citation

  • Agamuthu, P. & Kasapo, Pearson & Mohd Nordin, Nurul Ain, 2015. "E-waste flow among selected institutions of higher learning using material flow analysis model," Resources, Conservation & Recycling, Elsevier, vol. 105(PA), pages 177-185.
  • Handle: RePEc:eee:recore:v:105:y:2015:i:pa:p:177-185
    DOI: 10.1016/j.resconrec.2015.09.018
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    References listed on IDEAS

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    1. Estrada-Ayub, Jesús. A. & Kahhat, Ramzy, 2014. "Decision factors for e-waste in Northern Mexico: To waste or trade," Resources, Conservation & Recycling, Elsevier, vol. 86(C), pages 93-106.
    2. Dwivedy, Maheshwar & Suchde, Pratik & Mittal, R.K., 2015. "Modeling and assessment of e-waste take-back strategies in India," Resources, Conservation & Recycling, Elsevier, vol. 96(C), pages 11-18.
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    Cited by:

    1. Dhiya Durani Sofian Azizi & Marlia M. Hanafiah & Kok Sin Woon, 2023. "Material Flow Analysis in WEEE Management for Circular Economy: A Content Review on Applications, Limitations, and Future Outlook," Sustainability, MDPI, vol. 15(4), pages 1-22, February.
    2. Gautam, Ayush & Shankar, Ravi & Vrat, Prem, 2022. "Managing end-of-life solar photovoltaic e-waste in India: A circular economy approach," Journal of Business Research, Elsevier, vol. 142(C), pages 287-300.
    3. Puca, Antonio & Carrano, Marco & Liu, Gengyuan & Musella, Dimitri & Ripa, Maddalena & Viglia, Silvio & Ulgiati, Sergio, 2017. "Energy and eMergy assessment of the production and operation of a personal computer," Resources, Conservation & Recycling, Elsevier, vol. 116(C), pages 124-136.
    4. Borthakur, Anwesha & Govind, Madhav, 2017. "Emerging trends in consumers’ E-waste disposal behaviour and awareness: A worldwide overview with special focus on India," Resources, Conservation & Recycling, Elsevier, vol. 117(PB), pages 102-113.
    5. Merve Sahan & Mehmet Ali Kucuker & Burak Demirel & Kerstin Kuchta & Andrew Hursthouse, 2019. "Determination of Metal Content of Waste Mobile Phones and Estimation of Their Recovery Potential in Turkey," IJERPH, MDPI, vol. 16(5), pages 1-14, March.

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