Karakteristik plastik biodegradable dari limbah polipropilena dan pati tandan kosong kelapa sawit melalui metode pencampuran kering
Abstract
Full Text:
PDFReferences
Dewi, A. P., & Yesti, Y. (2018). Pemanfaatan limbah plastik menjadi kemasan ramah lingkungan serta uji biodegradasinya. Journal of Pharmacy and Science, 1(2), 33–38. https://doi.org/10.36341/jops.v1i2.492
Balestri, E., Menicagli, V., Vallerini, F., & Lardicci, C. (2017). Biodegradable plastic bags on the seafloor: A future threat for seagrass meadows? Science of the Total Environment, 605–606, 755–763. https://doi.org/10.1016/j.scitotenv.2017.06.249
Butnaru, E., Darie-Niţă, R. N., Zaharescu, T., Balaeş, T., Tănase, C., Hitruc, G., Doroftei, F., & Vasile, C. (2016). Gamma irradiation assisted fungal degradation of the polypropylene/biomass composites. Radiation Physics and Chemistry, 125, 134–144. https://doi.org/10.1016/j.radphyschem.2016.04.003
Hidayani, T. R. (2018). Grafting polipropilena dengan maleat anhidrida sebagai pengikat silang dengan inisiator benzoil peroksida. Eksakta: Berkala Ilmiah Bidang MIPA, 19(1), 56–62. https://doi.org/10.24036/eksakta/vol19-iss1/127
Hidayani, T. R., Pelita, E., & Nirmala, D. (2017a). Pembuatan dan karakterisasi plastik biodegradable dari limbah polipropilena dan pati biji durian dengan penambahan maleat anhidrida sebagai agen pengikat silang. Jurnal Kimia dan Kemasan, 39(1), 17–24. https://doi.org/10.24817/jkk.v39i1.2027
Hidayani, T. R., Pelita, E., & Gusfiyesi. (2017b). Analisis sifat fisika pemanfaatan pati tandan kosong sawit dan limbah plastik LDPE sebagai bahan pembuatan plastik biodegradabel. Majalah Kulit, Karet, dan Plastik, 33(1), 29–34. https://doi.org/10.20543/mkkp.v33i1.2202
Hidayani, T. R., Pelita, E., & Nirmala, D. (2015). Karakteristik plastik biodegradabel dari limbah plastik polipropilena dan pati biji durian. Majalah Kulit, Karet, dan Plastik, 31(1), 9–14. https://doi.org/10.20543/mkkp.v31i1.178
Iswarin, S. J., Nuriyah, L., & Sriwilujeng, A. I. (2013). Hubungan gugus fungsi plastik biodegradabel metil akrilat dan pati garut terhadap sifat mekaniknya. Natural B, 2(2), 178–183. https://doi.org/10.21776/ub.natural-b.2013.002.02.13
Jambeck, J. R., Geyer, R., Wilcox, C., Siegler, T. R., Perryman, M., Andrady, A., Narayan, R., & Law, K. L. (2015). Plastic waste inputs from land into the ocean. Science, 347(6223), 768–771. https://doi.org/10.1126/science.1260352
Mostafa, N. A., Farag, A. A., Abo-dief, H. M., & Tayeb, A. M. (2018). Production of biodegradable plastic from agricultural wastes. Arabian Journal of Chemistry, 11(4), 546–553. https://doi.org/10.1016/j.arabjc.2015.04.008
Pelita, E., Hidayani, T. R., & Rahmad, D. (2019). Potency of paper mill waste as recyclable polypropylene filled with coconut fiber composite for mitigational material. Rasayan Journal of Chemistry, 12(3), 1144–1150. https://doi.org/10.31788/RJC.2019.1235345
Pelita, E., & Hidayani, T. R. (2018). Perbandingan sifat fisika plastik biodegradabel dari limbah plastik polipropilena dan pati tandan kosong kelapa sawit yang dicampur dengan alat ekstruder dan alat rheomix. Prosiding Seminar Nasional Kulit, Karet, dan Plastik ke-7, 7(1), 107–118.
Pelita, E., Hidayani, T. R., & Akbar, A. (2017). Analysis physical properties of composites polymer from cocofiber and polypropylene plastic waste with maleic anhydrate as crosslinking agent. IOP Conference Series: Materials Science and Engineering, 223, 012060. http://doi.org/10.1088/1757-899X/223/1/012060
DOI: http://dx.doi.org/10.20543/mkkp.v36i2.5841
Refbacks
- There are currently no refbacks.
Copyright (c) 2020 Elda Pelita, Tengku Rachmi Hidayani, Risma Sari, Irfan Rusmar, Trisna Yuniarti

This work is licensed under a Creative Commons Attribution 4.0 International License.
MKKP indexed by: