Measuring the Impact of Reusing Raw Materials Produced from Recycling Telecommunications Equipment on Carbon Emissions Using the LCA Method: The Case of Mobile Phones
Öz
This study investigates the environmental impact of reusing raw materials obtained from recycling telecommunications equipment, focusing on mobile phone production. The main objective is to compare the environmental effects of virgin and recycled raw materials within a life cycle perspective, covering processes from raw material extraction to factory production stages. The analysis evaluates carbon emissions as the primary indicator while also considering energy and water consumption as supporting indicators. The research was carried out in two phases. First, a manual calculation approach was applied using data from existing literature to estimate environmental impacts per mobile phone. In the second phase, the same dataset was modeled with software to ensure consistency and validate the results. Findings show that recycling significantly reduces environmental impacts compared to virgin material production. In the virgin production scenario, the production of one smartphone generated 2.4074 kg CO₂-eq emissions, consumed 56.08 MJ of energy, and required 0.0524 m³ of water, whereas the recycling scenario reduced these values to 0.2596 kg CO₂-eq, 10.37 MJ, and 0.00482 m³, respectively. Overall, recycling achieved approximately 89.2% lower carbon emissions, 81.5% lower energy consumption, and 90.8% lower water use per phone. Among the materials examined, the highest emission reductions were observed in precious metals and aluminum. Overall, the results demonstrate that recycling plays a crucial role in lowering environmental burdens and conserving natural resources. The study highlights the importance of integrating recovered materials into smartphone manufacturing and provides quantitative evidence supporting recycling as an effective strategy for sustainable production and environmental protection.
Anahtar Kelimeler
- Carbon Emissions
- Circular Economy
- Environmental Impact
- Life Cycle Assessment
- Mobile Phone Production
- Recycling
Destekleyen Kurum
Proje Numarası
Etik Beyan
Teşekkür
Kaynakça
- [1]. Belkhir, L, Elmeligi, A. 2018. Assessing ICT global emissions footprint: Trends to 2040 and recommendations. Journal of Cleaner Production; 177: 448–463. https://doi.org/10.1016/j.jclepro.2017.12.239
- [2]. Harding, K. G. 2011. An Introduction to Life Cycle Assessment (LCA). Chemical Technology; 22-25.
- [3]. Gupta, N, Köpter, R S, & Sharma, S L. 2024. Life Cycle Assessment (LCA): A tool for sustainable development and environmental management of products. International Journal of Industrial and Product Design Engineering; 1(2): 16–25.
- [4]. International Organization for Standardization. 2006. Environmental management — Life cycle assessment — Principles and framework (ISO 14040:2006).
- [5]. International Organization for Standardization. 2006. Environmental management — Life cycle assessment — Requirements and guidelines (ISO 14044:2006).
- [6]. Finnveden, G, Hauschild, M Z, Ekvall, T, Guinée, J, Heijungs, R, Hellweg, S, Koehler, A, Pennington, D, Suh, S. 2009. Recent developments in life cycle assessment. Journal of Environmental Management; 91(1): 1–21. https://doi.org/10.1016/j.jenvman.2009.06.018
- [7]. Intergovernmental Panel on Climate Change (IPCC). 2015. Climate change 2014: Synthesis report. IPCC. https://www.ipcc.ch/site/assets/uploads/2018/02/SYR_AR5_FINAL_full.pdf (accessed at 28.11.2025).
- [8]. Ercan, M, Malmodin, J, Bergmark, P, Kimfalk, E, Nilsson, E. 2016. Life Cycle Assessment of a Smartphone. https://doi.org/10.2991/ict4s-16.2016.15
Ayrıntılar
Birincil Dil
İngilizce
Konular
Sistem Mühendisliği
Bölüm
Araştırma Makalesi
Yayımlanma Tarihi
30 Eylül 2026
Gönderilme Tarihi
3 Mart 2026
Kabul Tarihi
7 Temmuz 2026
Yayımlandığı Sayı
Yıl 2026 Cilt: 22 Sayı: 3