Pendekatan Inovatif untuk Produksi Furnitur: Kursi Ecobrick sebagai Solusi Berkelanjutan

  • Benedict Ariel Kurnianto Industrial Engineering Department, BINUS Graduate Program – Master of Industrial Engineering, Bina Nusantara University
  • Mieldha Hamzah Fadilah Industrial Engineering Department, BINUS Graduate Program – Master of Industrial Engineering, Bina Nusantara University
  • Hendri Novendra Industrial Engineering Department, BINUS Graduate Program – Master of Industrial Engineering, Bina Nusantara University
  • Taufik Taufik Industrial Engineering Department, BINUS Graduate Program – Master of Industrial Engineering, Bina Nusantara University

Abstract

Penelitian ini bertujuan untuk menciptakan kursi ramah lingkungan menggunakan botol Ecobrick sebagai bahan dasar. Penggunaan plastik yang terlalu berlebihan menyebabkan dampak negatif dari bertambahnya sampah plastik yang merugikan lingkungan bahkan mempengaruhi kesehatan manusia terlebih saat pandemi COVID-19 yang menyebabkan peningkatan penggunaan plastik di beberapa negara. Itulah alasan diperlukannya tindakan untuk mengurangi sampah plastik yang salah satunya menciptakan produk berbahan dasar sampah plastik. Metode yang digunakan pada penelitian ini memiliki beberapa tahap dalam Ideate, Penentuan Customer Needs, Pembuatan Desain, Pemilihan Final Desain, Penentuan Kursi Ergonomis, Perhitungan Struktur Analisis, Design Experiment and Testing, Design Refinement, dan Final Design. Dari penelitian ini, diharapkan kursi yang diciptakan mampu memenuhi kebutuhan pelanggan dengan memiliki ukuran yang ergonomis, ramah lingkungan, dan aman digunakan. Pendekatan ini diharapkan dapat memberikan solusi terhadap masalah penggunaan plastik berlebihan, dengan mengubah sampah plastik menjadi produk yang berguna dan mengurangi dampak negatif terhadap lingkungan.

Downloads

Download data is not yet available.

References

[1] A. N. M. Andrady, "Applications and societal benefits of plastics," Philosophical Transactions of the Royal Society B: Biological Sciences, vol. 364, no. 1526, 2009.
[2] Li, Tse and Fok, "Plastic waste in the marine environment: a review of sources, occurrence and efects," Sci Total Environ, Vols. 566-567, p. 333–349, 2016.
[3] Geyer, Jambeck and Law, "Production, use, and fate of all plastics ever made," Sci Adv, vol. 3, no. 7, 2017.
[4] Galloway and Lewis, "Marine microplastics spell big problems for future generations," Proceedings of the National Academy of Sciences, vol. 113, no. 9, 2016.
[5] A. L. P. Silvaa, J. C. Pratab, T. R. Walkerc, A. C. Duarteb, W. Ouyangd, D. Barcelòe and T. Rocha-Santos, "Increased plastic pollution due to COVID-19 pandemic: Challenges and recommendations," Chemical Engineering Journal, vol. 405, 2020.
[6] W. E. Forum, "The new plastics economy: Rethinking the future of plastics," in World Economic Forum, 2016.
[7] B. Raharjo, "Masyarakat Menginginkan Produk Ramah Lingkungan," REPUBLIKA, 25 August 2021. [Online]. Available: https://news.republika.co.id/berita/qye2gw415/masyarakat-menginginkan-produk-ramah-lingkungan. [Accessed 15 Maret 2023].
[8] “Executive Education,” Stanford d.school. https://dschool.stanford.edu/programs/executive-education (accessed Mar. 17, 2024).

[9] Y. J. Wang, "Interval-valued fuzzy multi-criteria decision-making based on simple additive weighting and relative preference relation," Information Sciences, p. 319–335, 2019.
[10] PenelitianIlmiah.Com, "Pengertian Presentil, Rumus, Cara Menghitung, dan Contohnya," PenelitianIlmiah, 25 December 2022. [Online]. Available: https://penelitianilmiah.com/pengertian-presentil/. [Accessed 13 March 2023].
[11] Park, S., et al., "Mechanical Properties of Bottle-Grade PET: Effect of Crystallinity and Morphology," Polymer Engineering & Science, pp. 1738-1746, 2007.
Published
2024-06-30
How to Cite
Kurnianto, B., Fadilah, M., Novendra, H., & Taufik, T. (2024). Pendekatan Inovatif untuk Produksi Furnitur: Kursi Ecobrick sebagai Solusi Berkelanjutan. Jurnal Rekayasa Sistem & Industri (JRSI), 11(01), 50-55. doi:10.25124/jrsi.v11i01.742