Page 52 - E MODUL PJBL JARINGAN TUMBUHAN rev
P. 52
Jurnal Science Learning. (2024). Peran pertanyaan pemantik dalam pembelajaran sains berbasis
proyek. Jurnal Science Learning Indonesia, 5(1), 72–81.
Laporan BPS Bojonegoro dan Dinas Ketahanan Pangan (2020). Pendayagunaan Sumber Daya
Pangan Lokal Berbasis Kearifan Tradisional.
Lozano Medina, J. C., Henríquez Concepción, V., Mendieta Pino, C. A., & León Zerpa, F. (2024).
Bioethanol from canary banana waste as an energy source to reduce the carbon footprint
of island electricity systems. Fuel, 371, 131848. https://doi.org/10.1016/j.fuel.2024.131848
Ma, J. (2015). Banana pseudostem: Properties, nutritional composition and use as food.
https://doi.org/10.26190/unsworks/18672
Madail, R. H., Sales Pio, L. A., Rezende, R. A. L. S., Pasqual, M., & Silva, S. O. (2022). Banana leaf
anatomy characteristics related to ploidy levels. Acta Scientiarum. Agronomy, 44, e55709.
https://doi.org/10.4025/actasciagron.v44i1.55709
Maleque, M. A., Belal, F. Y., & Sapuan, S. M. (n.d.). Mechanical properties study of pseudo-stem
banana fiber reinforced epoxy composite. The Arabian Journal for Science and Engineering.
Faculty of Engineering & Technology, Multimedia University; University Putra Malaysia.
Volume 32, Number 2B.
McGahan, M. W. (1961). Studies on the seed of banana. II. The anatomy and morphology of the
seedling of Musa balbisiana. American Journal of Botany, 48(8), 630.
Mohapatra, D., Mishra, S., & Sutar, N. (2010). Banana and its by-product utilisation: an overview.
Journal of Scientific & Industrial Research, 69(May), 323–329.
Nieminen, K., et al. (2024). Characterization of banana pseudostem fibres for sustainable material
applications. Nordic Pulp & Paper Research Journal, 39(1), 45–55.
https://doi.org/10.1515/npprj-2024-0043
Nopriantina, N., & Astuti, M. (2013). Pengaruh penambahan serat batang pisang kepok terhadap
sifat mekanik komposit polyester. Jurnal Teknologi & Industri, 12(1), 27–33.
Oliveira, A. C., et al. (2013). Modifications in leaf anatomy of banana plants (Musa spp.) subjected
to different silicon sources in vitro. American Journal of Plant Sciences, 4, 1322–1329.
Oyewo, A. T., Oluwole, O. O., Ajide, O. O., Omoniyi, T. E., & Hussain, M. (2023). Banana pseudo stem
fiber, hybrid composites and applications: A review. Hybrid Advances, 4, Article 100101.
https://doi.org/10.1016/j.hyad.2023.100101
Poltekkes Kemenkes Yogyakarta. (2019). Kajian potensi pelepah pisang sebagai bahan baku pulp dan
kertas daur ulang ramah lingkungan.
Price, N. S. (1995). Banana morphology—part I: Roots and rhizomes. In Bananas and plantains (pp.
179-189). Dordrecht: Springer Netherlands.
PRIMA: Jurnal Pendidikan Matematika dan Sains. (2018). Inovasi pemanfaatan limbah batang
pisang menjadi produk kreatif. PRIMA, 6(2), 112–120.
Scott, G. J. (2021). A review of root, tuber and banana crops in developing countries: past, present
and future. International Journal of Food Science and Technology, 56(3), 1093-1114.
Skutch, A. F. (1927). Anatomy of leaf of banana, Musa sapientum L. var. hort. Gros Michel. The Botanical
Gazette.
41

