Mitigasi Karbon Melalui Pemanfaatan Sampah Plastik Menjadi Paving Blok Plastik: Pendekatan Ekonomi Sirkular untuk Pembangunan Berkelanjutan

Authors

  • Rifo Nur Laksana Restu Laksana Universitas Sains Indonesia
  • Rahmat Rahmat Universitas Sains Indonesia
  • Dean Anggara Putra Universitas Sains Indonesia
  • Jefri Imron Universitas Sains Indonesia
  • Marhaendra Natawibawa Universitas Sains Indonesia
  • Hery Sumardiyanto Universitas Sains Indonesia

DOI:

https://doi.org/10.51903/s5djt007

Keywords:

Carbon Mitigation, Plastic Waste, Paving Block, Circular Economy, Sustainable Development, Carbon Footprint

Abstract

Global climate change driven by greenhouse gas (GHG) emissions, particularly carbon dioxide (CO₂), has become the greatest challenge of this century. At the same time, the accumulation of plastic waste has emerged as a massive environmental crisis. This paper examines the potential utilization of plastic waste into paving blocks as a carbon mitigation strategy and a waste management solution. This approach not only reduces the volume of plastic waste in the environment but also has the potential to lower the carbon footprint of conventional construction material production and contribute to the circular economy. The analysis involves a comparison of the carbon footprint between plastic-based and conventional paving blocks, as well as an estimation of the carbon mitigation potential at various scales of implementation. The findings indicate that material substitution and the incorporation of plastic into durable products offer significant contributions to emission reduction and foster sustainable development.

References

Bakhtiar, A. (2009). Studi peningkatan mutu paving-block dengan penambahan abu sekam padi. Jurnal Portal , 1(No.2), 73–80.

Fauziah, Z., & Bait, M. (2020). Optimalisasi Lahan Pekarangan Sebagai Upaya Pemenuhan Kebutuhan Pangan Keluarga. Al-Umron : Jurnal Pengabdian Kepada Masyarakat, 1(1), 28–34. https://ejournal.sunan-giri.ac.id/index.php/AL-UMRON/article/download/257/223

Geyer, R., Jambeck, J. R., & Law, K. L. (2017). “Production , use , and fate of all plastics ever made” CA 93106; Bren School of Environmental Science and Management, University of California, Santa Barbara, Santa Barbara, USA. Science Advances, 3(July), 25–29.

Hartono, E. F., & Rachmat, N. (2022). Klasifikasi Jenis Plastik HDPE, LDPE, dan PS Berdasarkan Tekstur Menggunakan Metode Support Vector Machine. JATISI (Jurnal Teknik Informatika Dan Sistem Informasi), 9(2), 1403–1412. https://doi.org/10.35957/jatisi.v9i2.2470

Jeswani, H., Krüger, C., Russ, M., Horlacher, M., Antony, F., Hann, S., & Azapagic, A. (2021). Life cycle environmental impacts of chemical recycling via pyrolysis of mixed plastic waste in comparison with mechanical recycling and energy recovery. Science of the Total Environment, 769. https://doi.org/10.1016/j.scitotenv.2020.144483

Labaran, Y. H., Mathur, V. S., Muhammad, S. U., & Musa, A. A. (2022). Carbon footprint management: A review of construction industry. Cleaner Engineering and Technology, 9(May), 100531. https://doi.org/10.1016/j.clet.2022.100531

Le, V. Van, Esterhuizen, M., Tran, Q. G., Yun, J. H., Jung, M. Y., & Lee, S. A. (2025). Harnessing microalgae to mitigate the environmental impact of the cement industry: Emission reduction and bio-cement production. Carbon Capture Science and Technology, 16(April), 100448. https://doi.org/10.1016/j.ccst.2025.100448

Lu, H., Masanet, E., Price, L., & Berkeley, L. (2009). Evaluation of Life-Cycle Assessment Studies of Chinese Cement Production : Challenges and Opportunities The Development of Life Cycle Assessment in China. Energy, 1–13. http://www.iscp.org.cn/clcm2008en/default.aspx.

oksya hikmawan. (2019). Pengaruh variasi waktu dan tekanan terhadap kehilangan minyak pada air kondensat di unit sterilizer pabrik kelapa sawit. Jurnal Teknik Dan Teknologi, 14(28), 33–39. https://scholar.google.com/citations?view_op=view_citation&hl=id&user=jN60_lUAAAAJ&citation_for_view=jN60_lUAAAAJ:qjMakFHDy7sC

Paramita, A. H., & Putri, C. A. (2025). Penambahan Limbah Plastik Jenis Polyethylene.

Pihkola, H., Hylkilä, E., Paronen, E., Markkula, A., & Liirus, H. (2025). Social-LCA providing new insights and learnings for social responsibility—case pulp and paper industry. International Journal of Life Cycle Assessment, 30(6), 1435–1450. https://doi.org/10.1007/s11367-024-02374-y

Rathivarman, N., Yutharshan, S., Kabishangar, A., Janani, V., Gowthaman, S., Nawarathna, T. H. K., Chen, M., & Kawasaki, S. (2025). Evaluating the performance and durability of concrete paving blocks enhanced by bio-cement posttreatment. Biogeotechnics, 3(1), 100103. https://doi.org/10.1016/j.bgtech.2024.100103

Ruth Clarissa Tambunan, & Julia Saputri. (2024). Pemanfaatan Sampah Plastik sebagai Material Paving Block. Dinamika Sosial : Jurnal Pengabdian Masyarakat Dan Transformasi Kesejahteraan, 1(4), 01–09. https://doi.org/10.62951/dinsos.v1i4.606

Sun, L. M., McIntyre, S. R., Iacomi, P., Everden, K., Williams, P. T., Zong, S., Liu, X., Zhu, X., Yang, Y., Li, S., Wu, G., Huang, F., Liu, L., Yuan, X., Zhang, H., Zhang, J., Yang, H., Chen, W., Sun, H., … Wu, C. (2025). Biochar production, activation, and applications: A comprehensive technical review. Carbon Capture Science and Technology, 16(April). https://doi.org/10.1016/j.ccst.2025.100421

Wang, S., Xie, M., Wang, S., & Zhuo, Y. (2025). Carbon Capture Science & Technology Kinetic model describing the effect of amine loading and temperature on CO 2 capture by solid amine adsorbent. Carbon Capture Science & Technology, 17(June), 100491. https://doi.org/10.1016/j.ccst.2025.100491

ar, M., & Irdam. (2019). Perancangan Mesin Penggulung Kumparan Motor Listrik Sistem Otomatis Berbasis Mikrokontroler. Jurnal Keteknikan Dan Sains, 2(1), 8–13.

Ammar, M., Hashim, A., Aiman, M., Fauzi, M., Firdaus, M., Zin, M., Siti, K., Ku, S., & Noh, M. (2023). Iot-Based Home Automation System Using Arduino Uno. Journal of Academia, 11(1), 26–33.

Bai-Di, S., Yong-Feng, J., Jing-Yu, S., Ye-Feng, B., Bing-Yan, C., & Ke, Y. (2024). Optimization of Transformer Windings Based on FEA-XGBoost and NSGA-III Algorithm. Journal of Electrical and Computer Engineering, 2024. https://doi.org/10.1155/2024/5514678

Chandu, H. S. (2024). A Review Of Iot-Based Home Security Solutions : Focusing On Arduino Applications. 11(10), 391–396.

Eko, S., Sri, W., & Ahmad, Y. (2020). REKAYASA PINTU GESER OTOMATIS DENGAN MENGGUNAKAN SENSOR PASSIVE INFRA RED (PIR) Eko. 10(1), 47–61.

García-Tudela, P. A., & Marín-Marín, J. A. (2023). Use of Arduino in Primary Education: A Systematic Review. Education Sciences, 13(2). https://doi.org/10.3390/educsci13020134

Isizoh, A. N., E, U. S. U. A. E., Ugwuanyi, C. J., & Abonyi, D. C. (2021). International Journal of Research Publication and Reviews Analysis of Microcontroller / LCD Interface for Embedded Systems. 2, 1003–1009.

Kumar, V., Sharma, K. V., Kedam, N., Patel, A., Kate, T. R., & Rathnayake, U. (2024). A comprehensive review on smart and sustainable agriculture using IoT technologies. Smart Agricultural Technology, 8(May), 100487. https://doi.org/10.1016/j.atech.2024.100487

Luqman, M., Anggraheny, B., Herwandi, H., & Murtono, A. (2025). Aplikasi dan unjuk kerja motor driver L-298 dan BTS7960 sebagai power switching pada inverter. Jurnal Eltek, 23(1), 9–15. https://doi.org/10.33795/eltek.v23i1.6656

Ngong, S. M., Guy-de-patience, F. M., & Stephane, N. N. (2025). A comparative study of power transformers windings diagnostic techniques: Part I. Discover Electronics, 2(1). https://doi.org/10.1007/s44291-025-00052-3

Putra, D. A., & Golwa, G. V. (2021). Rancang Bangun Prototype Mesin Sortir Berdasarkan Barcode Id Pada Produk Di Area Produksi. Jurnal Teknik Mesin, 10(3), 173–182.

Rahmat. (2024). Rancang bangun mesin stirling tipe gamma menggunakan metode vdi 2221. Ekselenta, Jurnal, 1(1), 1–9.

Rahmat, R., Putrra, D. A., Restu, R. N., & Imron, J. (2025). 3D Model Autocad Of The Piston Displacer Cup For A Gamma Stirling Engine Using The API Method. ELKOM Journal, 18(1), 86–93.

Rathivarman, N., Yutharshan, S., Kabishangar, A., Janani, V., Gowthaman, S., Nawarathna, T. H. K., Chen, M., & Kawasaki, S. (2025). Evaluating the performance and durability of concrete paving blocks enhanced by bio-cement posttreatment. Biogeotechnics, 3(1), 100103. https://doi.org/10.1016/j.bgtech.2024.100103

Retno Devita, Nanda Tommy Wirawan, & David Agustri Syafni. (2022). Perancangan Prototipe Keamanan Pintu Rumah Menggunakan Kamera Ttl Dan Aplikasi Telegram Berbasis Arduino. Jurnal Ilmiah Sistem Informasi Dan Ilmu Komputer, 2(2), 49–61. https://doi.org/10.55606/juisik.v2i2.199

Rifai, B., Rosano, A., & Aji, S. (2019). Implementasi Arduino Uno dan ATmega328P Untuk Perancangan Alat Keamanan Sepeda Motor. 2, 144–148.

Syed, N. H., Khan, N. A., Ahmad, N., Khan, M., Ahmad, F., Humayun, F., Haq, S., Alsayer, I. A., & Altuwair, I. A. (2024). A CFD Analysis to Investigate the Effect of Inserts on the Overall Heat Transfer Coefficient in a Concentric Tube Heat Exchanger. Engineering, Technology and Applied Science Research, 14(6), 18077–18085. https://doi.org/10.48084/etasr.8891

Wangde, Q., Zhao, X., Tyrrell, A., Perinpanayagam, S., Niu, S., Wen, G., & Abstract—Electric. (2021). Application of Artificial Intelligence-Based Technique in Electric Motors: A Review. IEEE TRANSACTIONS ON POWER ELECTRONICS, 167–186.

Downloads

Published

2025-05-01

How to Cite

Mitigasi Karbon Melalui Pemanfaatan Sampah Plastik Menjadi Paving Blok Plastik: Pendekatan Ekonomi Sirkular untuk Pembangunan Berkelanjutan. (2025). Jurnal Manajemen Informatika & Teknologi, 5(1), 318-326. https://doi.org/10.51903/s5djt007

Similar Articles

41-47 of 47

You may also start an advanced similarity search for this article.