Assessing Electronic Waste Disposal Practices as a Function of Reverse Logistics: Evidence from Kumasi Metropolis, Ghana

Authors

  • 1Emmanuel Kwabena Anin
  • 2Johnson Djan- Yeboah
  • 3Stephen Okyere

DOI:

https://doi.org/10.14738/abr.32.885

Abstract

The use of electronic products has grown substantially over the years. Modernity is constantly changing people’s life style and reflects in changes in tastes and preferences for electronic products and services. This contributes to generation of tonnes of electronic wastes which, due to their toxic content, pose serious challenges to human, wild and aquatic. This study assesses   electronic waste disposal system in the Kumasi metropolis of Ghana. This study was cross-sectional in nature and adopted qualitative approach. The study relied on primary data using interview and observation instruments. Electronic products repairers, scrap dealers and officials of Environmental Protection Agency (EPA) in Kumasi constituted the target population. Qualitative data collected was analysed through deduction in inferences. Findings from the study revealed that there seem to be no clear cut strategy of e-waste disposal being practised within the metropolis. It was also identified from the study that resource constraints faced by EPA for monitoring and education on e-waste disposal, ineffective collaboration between EPA and the law enforcement agencies and the other stakeholders for effective enforcement of the policy were the major challenges. We recommended the need to educate the public on the toxicity of e-waste and its harmful effects on human, wild and aquatic life. There should be clear and specific electronic waste policies in place to govern and regulate the disposal of electronic waste in Ghana. 

References

Adu-Gyamerah, E.(2013). Public Accounts Committee Sits Today[online], available at:www.modern Ghana.com/news/…/public-accounts-committee-sits-today.htm…[accessed on 15 May, 2014].

Advanced Tropical Environment (ATE)(2012). Identification of the Magnitude of ThElectrical and Electronic (E-Waste) Situation In South Africa: A Strategic Approach to International Chemicals Management (Saicm) E-Waste as an Emerging Policy Issue,The Africa Institute for Environmentally Sound Management of Hazardous and Other Wastes, and The Department of Environmental Affairs.

Anna O.W. and Leung (2008). Heavy Metals Concentrations of Surface Dust From E-Waste Recycling and its Human Health Implications in Southeast China. Environmental Science and Technology. 42, (7)2674-80.

Asente-Duah, D.K., Saccomanno, F.F. and Shortreed, J.H., (1992). The waste trade: can it

be controlled? ES & T features. Environmental Science & Technology 26 (9), 1684–1693.

BAN, (2005). The digital dump: exporting re-use and abuse to Africa. BaselAction Network. Jim Puckett (Editor). .

Brigden, K Labunska, I Santillo,D.and Allsopp,M. (2005). recycling of electronic waste in china andIndia , issue toxic tech. Brigden, K Labunska, I Santillo,D Allsopp,M Greenpeace

Research Laboratories, Department of Biological Sciences, University of Exeter, Exeter EX4 4PS, UK.

Brett H. Robinson, BH, (2009). E-Waste: An Assessment of Global Production and Environmental Impacts. Science of the Total Environment 408, (2), 183-91.

Carter, C.R. and Ellram, L.M. (1998). Reverse Logistics: A review of the literaturand framework for future investigation, Journal of Business Logistics, 19 (1), 85-102.

Furter, L., (2004). E-waste has dawned. Resource, 8–11. Greenpeace, Recycling of electronic waste in China and India. Workplace and environmental contamination. Greenpeace Report

Guptha, C.K.N, and Shekar, G.L. (2009). Electronic Waste Management System in Bangalore – A ReviewJK Journal of Management & Technology, ISSN 0975–0924. 1(1),11–24

Hadi,P., Barford, J. and McKay, G,(2013).Electronic Waste as a New Precursor for AbsorbentProduction. The SIJ Transactions on Industrial, Financial & Business Management (IFBM),1 (4),126-135.

Jun-Hui, Z,and Hang, M (2009). Eco-Toxicity and Metal Contamination of Paddy Soil in an E-

wastes Recycling Area, J. Hazard. Mater.165, 744–750.

Krikke, H.R.; Harten, A. and Schuur, P.C. (1999). Business case Roteb: recovery strategies for monitors. Computers and Industrial Engineering, 36 (4),739-757.

Leung, A., Cai, Z.W. and Wong, M.H. (2004). Environmental contamination from e-waste recycling at Guiyu, Southeast China. In: Proceedings of the 3rd Workshop on Material Cycles and Waste Management in Asia, Tokyo, 14 (15),73–84.

Lincoln, J.D., Ogunseitan, O.A., Shapiro A. A., and Saphores J.D.M. (2007). assessments ofHazardous Materials in Cellular Telephones. Environmental Science and Technology 41(7), 2572 2578.Available :http://pubs3.acs.org/acs/journals/doilookup?in_doi=10.1021/es0610479

Luo, C., Liu, C., Wang, Y., Liu, X., Li, F. and Zhang (2011). “Heavy Metal Contamination in Soils and Vegetables near an E-waste Processing Site, South China”, J. Hazard. Mater., 186, 481-490.

Mehra, H.C. (2004). PC waste leaves toxic taste, The Tribune, 22nd March.[online], available at:http//www.ijmbr.org/pdf¬_1782¬_46bce76e3a370791e65fa55ce28ff0bd.html [accessed on 20 April 2014].

Musson, S.E.,Vann, Y.C. Jang, S., Mutha, A. Jordan, B. and Pearson, K.N. (2006). “RCRA Toxicity Characterization of Discarded Electronic Devices”, Environ. Sci. Technol. 40, 2721-2726

Musson, S.E., Jang, Y.-C., Townsend, T.G. and Chung, I.-H., (2000). Characterization of lead

leachability from cathode ray tubes using the toxicity characterization leaching procedure. Environmental Science & Technology, 34, 4376–4381.

Noon,M.S, Lee, S.J,and Cooper, J.S. (2011), “A Life Cycle Assessment of End-of-Life ComputerMonitor Management in the Seattle Metropolitan Region”, Resources, Conservation and Recycling, 57, 22–29.

Nnorom, IC, Osibanjo, O (2007). Electronic waste (e-waste): Material flows and management

practices in Nigeria. Waste Management 28 1472–1479

Roman, L.S. and Puckett, J. (2002). E-scrap Exportation: Challenges and Considerations. In:Proc. International Symposium on Electronics and the Environment 2002 IEEE. San Francisco CA USA. 79-84.

Sinha, D. (2004). The Management Of Electronic Waste: A Comparitive Study On India And

Switzerland. A University of St.Gallen Master Thesis in Cooperation with EMPA

Stock, J.R. (1998). Development and Implementation of Reverse Logistics Programs. Council of Logistics Management.

Taye, M. and Kanda, W. (2011), E-waste management in Botswana. Master Degree Thesis,

Division of Environmental Technology and Management, Linkoping University, Sweden, 1-74.

Thierry, M., Salomon, M., Nunnen, J. and Wassenhove, L. (1995). Strategic issues in Product

Recovery Management. California Management review,Winter, 37(2), 114-135.

Tibben-Lembke, R. S.and Rogers, D. S.(2002), Differences between forward and reverse

logistics in a retail environment.Supply Chain Management: An International Journal,7(5), 271 – 282.

Ritchie, L., Burnes, B.; Whittle, P. and Hey, R. (2000). The benefits of Reverse Logistics: the case of Manchester Royal Infirmary Pharmacy. Supply Chain Management: an international

Journal, 5 (5), 226-233.

Rogers, D.S. and Tibben-Lembke, R.S.(1998), “Going Backwards: Reverse Logistics Trends and Practices”, RLEC Press, Pittsburgh, PA., 283

Rogers, D.S. and Tibben-Lembke, R. S. (2002). Differences between forward and reverse

logistics in a retail environment. Supply Chain Management: An International Journal, 7(5), 271 - 282.

Rupnow, P. (2006). Increase Profits using the Reverse Logistics Cost Equation, ReverseLogistics Magazine, 30-32.

World Bank (2007). Ghana Country Environmental Analysis, Report No. 36985-GH, 2. 11

Wu, (2008). Electronic Waste Management in India-Issues and Strategies [online],

available at: http//www.ijrmbss.com/assets/pdf/vol. 1 less 1/9a.pdf

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Published

2015-04-26

How to Cite

Anin, 1Emmanuel K., Yeboah, 2Johnson D.-., & Okyere, 3Stephen. (2015). Assessing Electronic Waste Disposal Practices as a Function of Reverse Logistics: Evidence from Kumasi Metropolis, Ghana. Archives of Business Research, 3(2). https://doi.org/10.14738/abr.32.885