Re-Utilization of Banana Waste into Compost
Keywords:
banana stem, agricultural waste, organic waste, compostAbstract
Organicwaste frequently becomes problem in every city in Indonesia because the quantity keeps increasing whiledisposal area is very limited.Most of organic waste is transported to final disposal area despite its potential to be converted into compost. This is also the case in Bekasi City. Banana stem wasteis organic waste from agricultural sector, which creates problemsbecause ofits weightand volume. Composting is an alternative to treat this type of organic waste. Banana stem contains Carbon, Nitrogen, Fosfor, Kalium which are important materials for compost . This study wasconducted to identify the potential of converting banana stem waste into compost. Composting of banana stem wasset to 25 days. During composting process temperature increasedup to 45oC. The increase of temperature indicated microorganism activity in decomposing banana stem waste. Final result of composting revealedthat banana stem compost contains C-Organic, Phosphorous and moisture content that comply with the requirement of compost according to SNI 19-7030-2004. Banana stem compost also contain Kalium and Mangan but the concentration were lower than the standard. Composting of banana stem gavemany benefits. It reducedorganic waste quantity and the product can be reused as fertilizer. Banana waste compost providednutrients that are required for crops productivity
References
Alkarimiah, R., & Suja, F. (2019). Effects of technical factors towards achieving the thermophilic temperature stage in composting process and the benefits of closed rector system compared to conventional method –A mini review. Applied Ecology and Environmental Research, 17(4), 9979–9996. https://doi.org/10.15666/aeer/1704_99799996Ameen, A., Raza, S., & Ahmad, J. (2016). Effect of pH and moisture content on composting of municipal solid waste. International Journal of Scientific and Research Publications, 6(5).Badan Standarisasi Nasional. (2004). Sni-19-7030-2004 Spesifikasi Kompos Dari Sampah Organik Domestik.Baharuddin, A., Hamid, F. S., & Pariatamby, A. (2011). Comparative Study on the Degradation of Sugarcane Bagasse and Banana Stem Using Vermicomposting by Eudrillus eugeniae Afifah. International Solid Waste Association Congress, 551–560.Bahtiar, S. A., Muayyad, A., Ulfaningtias, L., Anggara, J., Priscilla, C., & Miswar. (2016). Pemanfaatan Kompos Bonggol Pisang (Musa acuminata) Untuk Meningkatkan Pertumbuhan dan Kandunga Gula Tanaman Jagung Manis (Zea mays L. Saccharata). Agritop Jurnal Ilmu-Ilmu Pertanian, 1(4), 18–22.Burile, M. C., Lanjewar, P. ., &Thele, B. (2017). In-Vessel Composter Technique For Municipal Solid Waste Composting. International Conference on Emanations in Mordern Engineering Science & Management (ICEMESM-2017 ), 5(3), 32–40. http://www.ijritcc.orgElNour, M. E. M., Alfadil, A. G.,Manal, F. A., & Saeed, B. A. E. (2015). Effects of Banana Compost on Growth, Development and Productivity of Sorghum bicolor Cultivar (Tabat) Council for Innovative Research. Journal of Advances in Biology, 8(2).Faozi, K., Yudono, P., Indradewa, D., & Maas, A. (2018). Banana Stem Bokashi and its Effect to Increase Soybean Yield (Glycine max L. Merrill) in Coastal Sands Area. Agrotechnology, 07(02). https://doi.org/10.4172/2168-9881.1000184Fitriani, N. L. C., Walanda, D. K., & Rahman, N. (2012). PenentuanKadar Kalium (K) dan Kalsium (Ca) dalam Labu Siam (Sechium Edule) Serta Pengaruh Tempat Tumbuhnya. Jurnal Akademika Kimia, 1(4).Hapsoh, Gusmawartati, & Yusuf, M. (2015). Effect Various Combination of Organic Waste on Compost Quality. Journal of Tropical Soils, 20(1), 59–65. https://doi.org/10.5400/jts.2015.20.1.59Ho, L. H., Aziah, A. . N., & Bhat, R. (2012). Mineral composition and pasting properties of banana pseudo-stem flour Mineral composition and pasting properties of banana pseudo-stem flour from Musa acuminata X balbisiana cv . Awak grown locally in Perak , Malaysia. International Food Research Journal, April, 1479–1485. https://doi.org/10.13140/2.1.1409.0887Hubbe, M. A., Nazhad, M., & Sánchez, C. (2010). Composting as a way to convert cellulosic biomass and organic waste into high-value soil amendments: A review. BioResources, 5(4), 2808–2854. https://doi.org/10.15376/biores.5.4.2808-2854Kusumawati, A. (2015). Analisa Karakteristik Pupuk Kompos Berbahan Batang Pisang. Seminar Nasional UniversitasPGRI Yogyakarta, 323–329.Malhotra, H., Vandana, Sharma, S., & Pandey, R. (2018). Phosphorus Nutrition : Plant Growth in Response to Deficiency and Excess(pp. 171–190). Springer Nature Singapore Pte Ltd. https://doi.org/10.1007/978-981-10-9044-8Marimuthu, C., Manickam, J., Thangavelu, R., Veeramalai, K., & Shanmugam, V. (2010). Recycling Organic Waste and Composting at Direct Plantain Field for The Cost Effective Production of Biofertilizer and Application Studies at Tiruchirapalli District of South India. International Journal of Applied Agricultural Research, 5(3), 337–342.Mohapatra, D., Mishra, S., & Sutar, N. (2010). Banana and its by-product utilisation: An overview. Journal of Scientific and Industrial Research, 69(5), 323–329.Mousavi, S. R., &Rezaei, M. (2011). A General Overview On Manganese ( Mn ) Importance For Crops Production. Australian Journal of Basic and Applied Sciences, September 2011, 1799–1803.Nurullita, U., & Budiyono. (2012). Lama Waktu Pengomposan Sampah Rumah Tangga Berdasarkan Jenis Mikroorganisme Lokal (mol) dan Teknik Pengomposan. Seminar Hasil-Hasil Penelitian –LPPM UNIMUS 2012, 236–245.Rahmadanti, M. S., Okalia, D., Pramana, A., & Wahyudi, W. (2020). Uji Karakteristik Kompos (pH, Tekstur, Bau) Pada Berbagai Kombinasi Tandan Kosong Kelapa Sawit (TKKS) dan Kotoran Sapi Menggunakan Mikroorganisme Selulotik (MOS). Jurnal Ilmiah Teknosains, 5(2), 105–112. https://doi.org/10.26877/jitek.v5i2.4717Srihartati, & Salim, T. (2008). Pemanfaatan Limbah Pisang Untuk Pembuatan Kompos Menggunakan Komposter Rotary Drum. Prosiding Seminar Nasional Teknoin 2008 Bidang Teknik Kimia Dan Tekstil, November, 65–71.Sudarsono, W. A., Melati, M., &Aziz, S. A. (2014). Pertumbuhan, Serapan Hara dan Hasil Kedelai Organik Melalui Aplikasi Pupuk Kandang Sapi. Indonesian Journal of Agronomy, 41(3), 202–208. https://doi.org/10.24831/jai.v41i3.8097Sukwika, T., & Noviana, L. (2020). Status Keberlanjutan Pengelolaan Sampah Terpadu di TPST-Bantargebang, Bekasi: Menggunakan Rapfish dengan R Statistik. Jurnal Ilmu Lingkungan, 18(1), 107–118. https://doi.org/10.14710/jil.18.1.107-118Wulandari, A. S., Mansur, I., & Sugiarti, H. (2011). Pengaruh pemberian pupuk npk dan kompos terhadap pertumbuhan semai jabon (Anthocephalus cadamba Miq.). Jurnal Silvikultur Tropika, 03(01), 78–81.
Downloads
Submitted
Published
How to Cite
Issue
Section
License
Copyright (c) 2021 The Author (s)

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.
The author whose published manuscript approved the following provisions:
1. The right of publication of all material published in the journal / published in the Agroindustrial Technology Journal is held by the editorial board with the knowledge of the author (moral rights remain the author of the script).
2. The formal legal provisions for access to digital articles of this electronic journal are subject to the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License (CC BY-NC-SA 4.0), which means that Agroindustrial Technology Journal reserves the right to save, transmit media or format, Database), maintain, and publish articles without requesting permission from the Author as long as it keeps the Author's name as the owner of Copyright.
3. Printed and electronically published manuscripts are open access for educational, research and library purposes. In addition to these objectives, the editorial board shall not be liable for violations of copyright law.
