The life-cycle assessment of greenhouse gas emissions and life-cycle costs of e-waste management in Thailand

Author:

Mangmeechai AweewanORCID

Abstract

AbstractThere is no clear direction in the management of electrical and electronic waste products (e-waste), as there are no regulations on ways to do so. This research attempts to understand the trade-off between the economic value and the environmental effects of the current disposal of e-waste to find ways to optimize waste management, focusing on cellphones, television cathode ray tubes, desktop computers, and air conditioners. A life cycle greenhouse gas and life cycle costs were conducted. Under the e-waste management status quo, most household e-waste is kept in houses because owners do not know where to discard it. In addition, informal sectors, such as domestic farmers or workers, have been actively involved in collecting and dismantling e-waste for more than a decade, leading to poor management standards for both health and the environment. Without e-waste management regulations, informal dismantlers of products gain slight profits by collecting and selling parts and discarding all non-recyclable waste in municipal garbage dumps. The current practice actually adds greenhouse gas to the atmosphere mainly due to improper logistics management and discarding of refrigerants. The logistics are inefficient because the dismantling communities and recycling locations are far apart. Most e-waste is generated, and most recycling industries are located in the central region (the richest areas), while the dismantling communities are located in the northeastern region (the poorest areas). Furthermore, the life cycle of greenhouse gas and the life cycle costs of e-waste are affected by transportation, and not all e-waste parts can be recycled within the country. High-tech mineral extraction cannot be practiced in the country, and thus, circuit boards and batteries are exported for recycling. To promote a circular economy, e-waste management regulations should be implemented, the costs of proper e-waste management should be internalized, and a full recycling industry should be established in the country.

Funder

Thailand Science Research and Innovation

Publisher

Springer Science and Business Media LLC

Subject

Pollution,Waste Management and Disposal,Water Science and Technology,Renewable Energy, Sustainability and the Environment,Environmental Engineering

Reference40 articles.

1. Pariatamby A, Victor D. Policy trends of e-waste management in Asia. J Mater Cycles Waste. 2013;15:411–9.

2. Osibanjo O, Nnorom IC. The challenge of electronic waste (e-waste) management in developing countries. Waste Manage Res. 2007;25:489–501.

3. Manomaiwiboon P, Dokmaingam P. The review of solid waste management cost and the analysis of life cycle costing of solid waste management systems: principles and customization for local governments in Thailand. Chiangmai: Public Policy Studies Institute Foundation; 2018.

4. PCD. Community hazardous waste management planning guide for executives of local government. Bangkok: Pollution Control Department; 2017. https://www.pcd.go.th/hazards/3-aug-2017-%E0%B8%84%E0%B8%B9%E0%B9%88%E0%B8%A1%E0%B8%B7%E0%B8%AD%E0%B8%81%E0%B8%B2%E0%B8%A3%E0%B8%A7%E0%B8%B2%E0%B8%87%E0%B9%81%E0%B8%9C%E0%B8%99%E0%B8%9A%E0%B8%A3%E0%B8%B4%E0%B8%AB%E0%B8%B2/.

5. PCD. Report of the situation of hazardous waste from the community in 2019. Bangkok: Pollution Control Department; 2019. http://infofile.pcd.go.th/haz/wsthazcom_annual62.pdf?CFID=122178&CFTOKEN=36563060

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