Pengaruh Konsentrasi NaOH terhadap Kadar Air Kertas Berbahan Dasar Daun Mahkota Nanas
DOI:
https://doi.org/10.55606/jurritek.v4i2.5624Keywords:
Pineapple Leaf, NaOH, Moisture Content, Paper, Natural FiberAbstract
Agricultural waste such as pineapple crown leaves (Ananas comosus) has not been optimally utilized, despite its high cellulose fiber content, making it a potential alternative raw material for paper production. One of the main challenges in this process is controlling the paper's moisture content, as excessive water content can reduce product quality. This study aims to investigate the effect of sodium hydroxide (NaOH) concentration on the moisture content of paper made from pineapple crown leaf fibers. Three NaOH concentrations (2%, 8%, and 14%) were applied during the pulping process to remove lignin and hemicellulose, followed by gravimetric analysis of the resulting paper’s moisture content. The results showed that the 8% NaOH treatment produced the lowest moisture content of 8.35%, while the 2% NaOH treatment resulted in the highest moisture content of 10.34%. One-way ANOVA indicated that variations in NaOH concentration had a statistically significant effect on moisture content (p < 0.001). The findings revealed a non-linear relationship between NaOH concentration and moisture content, with 8% being the optimal point. A lower concentration resulted in dense fiber structures that retained water, while a higher concentration led to the formation of cellulose II, which is more hygroscopic. This study highlights the importance of optimizing NaOH concentration in paper production from agricultural waste to achieve the best quality.
Downloads
References
Afrianto, E. (2008). Pengawasan mutu bahan/produk pangan. Departemen Pendidikan Nasional.
Astuti, L. D., Prasetyo, B. H., & Ramadhani, F. (2021). Pemanfaatan limbah daun nanas sebagai bahan baku kertas ramah lingkungan. Jurnal Teknologi Lingkungan, 19(2), 112–120.
Faustina, D. S. (2023). Formulasi tepung pisang nangka (Musa paradisiaca L) dan kacang kratok merah (Phaseolus lunatus L) dalam pembuatan snack bar [Disertasi doktoral, Universitas Katholik Soegijapranata Semarang].
Goyal, S., Yadav, D., Yadav, A., & Bhatia, R. K. (2021). Effect of alkali pretreatment on structural, morphological and thermal properties of sugarcane bagasse: A comparative study. Sustainability, 13(4), 2015. https://doi.org/10.3390/su13042015
Novianti, P., & Setyowati, W. A. E. (2016). Pemanfaatan limbah kulit pisang kepok sebagai bahan baku pembuatan kertas alami dengan metode pemisahan alkalisasi. In Prosiding SNPS (Seminar Nasional Pendidikan Sains) (Vol. 3, pp. 459–466).
Putri, S. A., & Hidayat, D. (2020). Pengaruh konsentrasi NaOH terhadap sifat fisik kertas dari limbah pertanian. Jurnal Rekayasa Proses, 14(1), 45–53.
Rembet, E. V. (2018). Optimasi proses delignifikasi pada pembuatan pulp dari serat sabut pinang sirih (Areca catechu L.) (Kajian konsentrasi NaOH dan waktu pemasakan) [Skripsi Sarjana, Universitas Brawijaya].
Sapitri, R. (2021). Ekstraksi dan karakterisasi selulosa dari kulit buah aren (Arenga pinnata) untuk penyerapan ion logam Cr (VI) [Disertasi doktoral, Universitas Jambi].
Sari, N. M., Permana, A., & Yuliani, S. (2019). Karakteristik kadar air pada kertas berbahan serat alam. Jurnal Ilmu dan Teknologi Hasil Hutan, 13(3), 222–230.
Seddiqi, H., Oliaei, E., Honarkar, H., Jin, J., & Geonzon, L. C. (2020). Cellulose and its derivatives: Applications in medicine and tissue engineering. Polymers, 12(2), 342. https://doi.org/10.3390/polym12020342
Seta, F. T., Sugesty, S., & Kardiansyah, T. (2014). Pembuatan nitroselulosa dari berbagai pulp larut komersial sebagai bahan baku propelan. Jurnal Selulosa, 4(2), 97–106.
Sibaly, S., & Jeetah, P. (2017). Production of paper from pineapple leaves. Journal of Environmental Chemical Engineering, 5(6), 5978–5986.
Widodo, E. (2022). Buku ajar mekanika komposit dan bio-komposit (pp. 1–111). Umsida Press.
Wulandari, F., Rahmawati, D., & Nugroho, A. (2022). Optimasi proses pulping serat tumbuhan lokal dengan variasi bahan kimia. Jurnal Sains dan Teknologi, 20(4), 301–310.
Zhao, L., Sun, N., Wang, Y., & Zhu, H. (2012). Effect of alkali pretreatment on cellulose structure and accessibility. Carbohydrate Polymers, 87(2), 1129–1134. https://doi.org/10.1016/j.carbpol.2011.06.037
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2025 JURAL RISET RUMPUN ILMU TEKNIK

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
_001.jpg)




