Pemetaan Potensi Pelaku Informal (Bengkel) Sepeda Motor Listrik yang Bersedia Melakukan Daur Ulang Limbah Baterai
DOI:
https://doi.org/10.61132/venus.v3i4.1045Keywords:
Battery Waste, Electric Motorcycles, Informal Actors, Mapping, Recycling PotentialAbstract
Batteries are the primary component in electric motorcycle propulsion systems, playing a crucial role in storing and supplying energy. However, batteries have a limited lifespan, potentially becoming waste after their useful life. Battery waste is categorized as hazardous and toxic waste (B3) because it contains heavy metals and chemical compounds that can negatively impact human health and the environment if not managed properly. As the adoption of electric motorcycles increases in Indonesia, particularly in the Special Region of Yogyakarta (DIY), the issue of battery waste management is becoming increasingly important. Currently, there are no electric motorcycle manufacturers openly willing to manage post-life battery waste, particularly through recycling activities. This situation creates a gap that informal actors could potentially exploit. Informal actors often possess flexibility and basic technical skills, but their capacity to manage battery waste safely and sustainably still needs to be mapped and strengthened. This study focused on mapping the potential capabilities of informal actors in the Special Region of Yogyakarta by 2025. The results indicate that the potential for informal actors capable of providing battery repair services is only around 1%. This figure is very small and therefore insufficient to support future battery waste management needs. Therefore, multi-stakeholder support is needed, from the government and manufacturers to the community, to encourage capacity building among informal actors. This effort is crucial to anticipate the success of the government's 2030 target for electric vehicle conversion, while also ensuring environmental sustainability.
References
Achmad, A. (2025, April 24). Jumlah kendaraan listrik naik 78% di 2024. TopBusiness.
Ahuja, J., Dawson, L., & Lee, R. (2020). A circular economy for electric vehicle batteries: Driving the change. Journal of Property, Planning and Environmental Law, 12(3), 231–249. https://doi.org/10.1108/JPPEL-02-2020-0011
Amahmoud, A., El Attar, M. M., & Meleishy, A. (2022). The evolution of life cycle assessment approach: A review of past and future prospects. IOP Conference Series: Earth and Environmental Science, 992(1), 012002. https://doi.org/10.1088/1755-1315/992/1/012002
Badan Pusat Statistik (BPS). (2020, June 15). Luas daerah dan jumlah pulau menurut kabupaten/kota di D.I. Yogyakarta. BPS Provinsi DIY.
Badan Pusat Statistik (BPS). (2024, May 28). Jumlah kendaraan bermotor menurut kabupaten/kota dan jenis kendaraan di D.I. Yogyakarta (unit), 2021–2023. BPS Provinsi DIY.
CNN Indonesia. (2023, January 5). Jumlah kendaraan Januari 2023 lebih setengah populasi warga Indonesia. CNN Indonesia. https://www.cnnindonesia.com/otomotif/20230105090933-579-896395/jumlah-kendaraan-januari-2023-lebih-setengah-populasi-warga-indonesia
CNN Indonesia. (2024, January 19). Sepi peminat, konversi motor listrik 2023 cuma 181 dari target 50 ribu. CNN Indonesia. https://www.cnnindonesia.com/otomotif/20240119113509-603-1051660/sepi-peminat-konversi-motor-listrik-2023-cuma-181-dari-target-50-ribu
Dawson, L., Ahuja, J., & Lee, R. (2021). Steering extended producer responsibility for electric vehicle batteries. Environmental Law Review, 23(2), 128–143. https://doi.org/10.1177/14614529211006069
Farhad, S., Gupta, R. K., Yasin, G., & Nguyen, T. A. (Eds.). (2022). Nanotechnology for battery recycling, remanufacturing, and reusing. Elsevier.
Girardi, P., Brambilla, C., & Mela, G. (2020). Life cycle air emissions external costs assessment for comparing electric and traditional passenger cars. Integrated Environmental Assessment and Management, 16(1), 140–150. https://doi.org/10.1002/ieam.4211
Goyal, M., Singh, K., & Bhatnagar, N. (2023). Circular economy conceptualization for lithium-ion batteries: Material procurement and disposal process. Chemical Engineering Science, 281, 119080. https://doi.org/10.1016/j.ces.2023.119080
Hua, Y., Liu, X., Zhou, S., Huang, Y., Ling, H., & Yang, S. (2020). Toward sustainable reuse of retired lithium-ion batteries from electric vehicles. Resources, Conservation and Recycling, 168, 105249. https://doi.org/10.1016/j.resconrec.2020.105249
Kementerian Energi dan Sumber Daya Mineral (ESDM). (2023, October 18). Kementerian ESDM selenggarakan sosialisasi konversi sepeda motor listrik di Daerah Istimewa Yogyakarta. BPSDM ESDM.
Koroma, M. S., Costa, D., Philippot, M., Cardellini, G., Hosen, M. S., Coosemans, T., & Messagie, M. (2022). Life cycle assessment of battery electric vehicles: Implications of future electricity mix and different battery end-of-life management. Science of the Total Environment, 831, 154859. https://doi.org/10.1016/j.scitotenv.2022.154859
Kurdve, M., Zackrisson, M., Johansson, M. I., Ebin, B., & Harlin, U. (2019). Considerations when modelling EV battery circularity systems. Batteries, 5(2), 40. https://doi.org/10.3390/batteries5020040
Kurniawan, R., & Maulana, A. (2023, February 27). Indonesia belum punya perusahaan pengolahan limbah baterai kendaraan. Kompas.com. https://otomotif.kompas.com/read/2023/02/27/181200415/indonesia-belum-punya-perusahaan-pengolahan-limbah-baterai-kendaraan
Lazuardi, M. H. (2021, August 5). Dua cara pemerintah bisa kelola limbah baterai kendaraan listrik. The Conversation. https://theconversation.com/dua-cara-pemerintah-bisa-kelola-limbah-baterai-kendaraan-listrik-155715
Nordelöf, A., Messagie, M., Tillman, A. M., Söderman, M. L., & Van Mierlo, J. (2014). Environmental impacts of hybrid, plug-in hybrid, and battery electric vehicles: What can we learn from life cycle assessment? International Journal of Life Cycle Assessment, 19(11), 1866–1890. https://doi.org/10.1007/s11367-014-0788-0
Nordelöf, A., Poulikidou, S., Chordia, M., Alatalo, M., & Zackrisson, M. (2019). Methodological approaches to end-of-life modelling in life cycle assessments of lithium-ion batteries. Batteries, 5(3), 51. https://doi.org/10.3390/batteries5030051
Peraturan Presiden Republik Indonesia Nomor 55 Tahun 2019 tentang percepatan program kendaraan bermotor listrik berbasis baterai (battery electric vehicle) untuk transportasi jalan. (2019). Lembaran Negara Republik Indonesia Tahun 2019 Nomor 55.
Purwani, A. (2023, May 5). Baterai listrik bekas jadi limbah atau berkah? Espos.id. https://kolom.espos.id/baterai-listrik-bekas-jadi-limbah-atau-berkah-1614408
Purwani, A., Sutopo, W., Hisjam, M., & Widiyanto, A. (2025). Approach for determining cut-off values for electric motorcycle swap battery before the end-of-life in the recycling classification. Journal of Applied Science and Engineering, 28(4), 811–820. https://doi.org/10.6180/jase.202504_28(4).0013
Rasdianto, F. Y. (2023, December 27). Jauh mimpi motor listrik subsidi. DetikX. https://news.detik.com/x/detail/spotlight/20231227/Jauh-Mimpi-Motor-Listrik-Subsidi
Satria, G., & Kurniawan, A. (2024, September 5). Per Agustus 2024, populasi motor listrik diklaim tembus 130.000 unit. Kompas.com. https://otomotif.kompas.com/read/2024/09/05/100200215/per-agustus-2024-populasi-motor-listrik-diklaim-tembus-130.000-unit
Shahjalal, M., Roy, P. K., Shams, T., Fly, A., Chowdhury, J. I., Ahmed, M. R., & Liu, K. (2022). A review on second-life of Li-ion batteries: Prospects, challenges, and issues. Energy, 241, 122881. https://doi.org/10.1016/j.energy.2021.122881
Shokohyar, S., Mansour, S., & Karimi, B. (2014). A model for integrating services and product EOL management in sustainable product service system (S-PSS). Journal of Intelligent Manufacturing, 25(3), 427–440. https://doi.org/10.1007/s10845-012-0694-x
Slattery, M., Dunn, J., & Kendall, A. (2021). Transportation of electric vehicle lithium-ion batteries at end-of-life: A literature review. Resources, Conservation and Recycling, 174, 105755. https://doi.org/10.1016/j.resconrec.2021.105755
Temporelli, A., Carvalho, M. L., & Girardi, P. (2020). Life cycle assessment of electric vehicle batteries: An overview of recent literature. Energies, 13(11), 2864. https://doi.org/10.3390/en13112864
Undang-Undang Republik Indonesia Nomor 23 Tahun 1997 tentang pengelolaan lingkungan hidup. (1997). Lembaran Negara Republik Indonesia Tahun 1997 Nomor 23.
United Motor. (2023). What is the trend in electric motorcycle sales in Indonesia? Check here! United Motor Blog. https://unitedmotor.co.id/what-is-the-trend-in-electric-motorcycle-sales-in-indonesia-check-here
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