NUTRITIONAL AND ECONOMIC ANALYSIS OF COCOA AND COFFEE BEAN SKINS IN SILAGE PRODUCTION

Authors

  • Shirleen Samantha Halim Department of Agricultural Industrial Technology, Faculty of Agricultural Industrial Technology, Padjadjaran University, Jl. Raya Bandung Sumedang KM.21, Hegarmanah, Jatinangor District, SumedangRegency, West Java 45363
  • Devi Maulida Rahmah Department of Agricultural Industrial Technology, Faculty of Agricultural Industrial Technology, Padjadjaran University, Jl. Raya Bandung Sumedang KM.21, Hegarmanah, Jatinangor District, SumedangRegency, West Java 45363

Keywords:

proximate analysis, cocoa bean skin, coffee bean skin, silage

Abstract

Cocoa bean skin and coffee bean skin are biomass waste that is underutilized in Indonesia. Given the nutritional potential of cocoa and coffee bean skin biomass waste, processing it is considered to add potential value. The objective of this research is toinvestigate the potential of utilizing cocoa and coffee bean skin waste in silage production to address specific nutritional requirements. This will be accomplished through the analysis of nutritional characteristics via proximate analysis and the evaluation of economic value added (EVA). Characteristic analysis was carried out with predetermined parameters with raw materials from silage in the form of odot grass, corn husks and additional biomass in the form of cocoa and coffee bean skin waste with concentrations of 20%, 25% and 30% respectively. The results showed that cocoa bean skin silage generally has a higher fat and protein content than coffee bean skin silage. Meanwhile, coffee bean skin silage showed a higher crude fiber and carbohydrate content than cocoa bean skin silage. Economic Value Added (EVA) analysis also revealed that silage generated an added value of IDR 806,018 with a profitability value of 40%, indicating the economic potential in processing biomass waste into silage. Future research can optimize the formulation of biomass waste and explore various biomass sources to improve nutritional and economic benefits. Evaluation of these formulations on various livestock species can also provide valuable insights into their effectiveness in various types of livestock feed

References

Anissa, R., M. Danesh, M., & M, W. (2024). The Effect of Addition of Onggok as a Mixed Material in the Making of Complete Feed Silage on the Digestibility of BK, BO and NH3 production In-Vitro. Frontier Advances in Applied Science and Engineering, 1(2), 82–91. https://doi.org/10.59535/faase.v1i2.180Badan Pusat Statistik Indonesia. (2022). Indonesian Cocoa Statistics 2021. https://www.bps.go.id/id/publication/2022/11/30/be404f7a76a56887462b5187/statistik-kakao-indonesia-2021.htmlBaharuddin, Z. K. (2022). Kandungan Protein Kasar Dan Serat Kasar Silase Rumput Gajah (Pennisetum Purpureum) Menggunakan Inokulan Bakteri Asam Laktat Asal Cairan Rumen Pada Lama Fermentasi Berbeda. Batbekh, B., Ahmed, E., Hanada, M., Fukuma, N., & Nishida, T. (2023). Assessment of the Impact of Coffee Waste as an Alternative Feed Supplementation on Rumen Fermentation and Methane Emissions in an In Vitro Study. Fermentation, 9(9). https://doi.org/10.3390/fermentation9090858Borreani, G., Tabacco, E., Schmidt, R. J., Holmes, B. J., & Muck, R. E. (2018). Silage review: Factors affecting dry matter and quality losses in silages. Journal of Dairy Science, 101(5), 3952–3979. https://doi.org/10.3168/jds.2017-13837Figueiredo, M. R. P. de, Teixeira, A. C. B., Bittencourt, L. L., Moreira, G. R., Ribeiro, A. J., Silva, F. S. G. da, Dos Santos, A. L. P., & Costa, M. L. L. da. (2022). Elephant grass silage with addition of regional by-products. Acta Scientiarum -Animal Sciences, 44. https://doi.org/10.4025/actascianimsci.v44i1.56616Silva, A. de O. e, Garcia, F. P., Perazzini, M. T. B., & Perazzini, H. (2023). Design and economic analysis of a pre-treatment process of coffee husks biomass for an integrated bioenergy plant. Environmental Technology and Innovation, 30. https://doi.org/10.1016/j.eti.2023.103131Denaneer, T. A., Sidiq, M., Ayuningsih, B., & Dhalika, T. (2021). Pengaruh Lumpur Kecap Pada Ensilase Campuran Limbah Sayuran Dan Tongkol Jagung Terhadap Kandungan Zat Makanan Silase Yang Dihasilkan. Jurnal Nutrisi Ternak Tropis Dan Ilmu Pakan, 3(1), 32–39. https://doi.org/https://doi.org/10.24198/jnttip.v3i1.35920Deviany, D., Yusuf, R. A., Raqin, M. R., Ramadhan, A. F., Nugraha, D. A., & Afriliza, T. F. (2024). Unlocking The Potential of Lampung Agricultural Waste: Banana Kepok Peel Silage (Musa × Paradisiaca) for Ruminant Nutrition Through an Optimization of Ensiling Time. Jurnal Nutrisi Ternak Tropis, 7(2), 78–87. https://doi.org/10.21776/ub.jnt.2024.007.02.1Prabha, Dr. P. H., Banu, D. S., M, K., K, P., & N, V. (2022). Sustainable Waste Utilisation and Viable Products from Coffee Cherry. International Journal of Creative Research Thoughts, 10(4). Kolo, Y., Nubatonis, A., Bira, G. F., Efi, M., & Konsalves Bone, A. (2024). Manufacturing Rice Straw And Forage Silage For Bali Cattle Feeding At Sonis Laloran Farm, Belu. Jurnal Ilmiah, 4(1), 24–29. https://doi.org/10.24815/petamas.v4i1.38741Kuncoro, D. C., Muhtarudin, & Fathul, F. (2015). The Effect of Starter Addition in Feed Silage from Agriculture Waste to Crude Protein, Dry Matter, Organic Matter and Ash Content. In Jurnal Ilmiah Peternakan Terpadu(Vol. 3, Issue 4). https://doi.org/https://dx.doi.org/10.23960/jipt.v3i4.1104Kurnianingtyas, I. B. (2012). Pengaruh Macam Akselerator Terhadap Nilai NutrisiSilase Rumput Kolonjono (Brachiaria Mutica) Ditinjau DariNilai Kecernaan Dan Fermentabilitas Silase DenganTeknik In Vitro. Martuscelli, M., Esposito, L., Di Mattia, C. D., Ricci, A., & Mastrocola, D. (2021). Characterization of coffee silver skin as potential food-safe ingredient. Foods, 10(6). https://doi.org/10.3390/foods10061367Mukti, H. M. (2021). Analisis Proksimat Terhadap Biji Pepaya (Carica Papaya L). Narita, Y., & Inouye, K. (2014). Review on utilization and composition of coffee silverskin. In Food Research International(Vol. 61, pp. 16–22). Elsevier Ltd. https://doi.org/10.1016/j.foodres.2014.01.023Nurcahyati, R., Cakra, G. L. O., & Trisnadewi, A. A. A. S. (2024). Physical Quality Of Elephant Grass (Pennisetum Purpureum) Silage On Different Levels Of Indigofera Zollingeriana Leaf Meal Addition. Journal of Tropical Animal Science, 12. Prado, L. G., Costa, K. A. de P., da Silva, L. M., Costa, A. C., Severiano, E. da C., Costa, J. V. C. P., Habermann, E., & e Silva, J. A. G. (2023). Silages of sorghum, Tamani guinea grass, and Stylosanthes in an integrated system: production and quality. Frontiers in Sustainable Food Systems, 7. https://doi.org/10.3389/fsufs.2023.1208319Prawitasari, R. H., Ismadi, V. D. Y. B., & Estiningdriati, I. (2012). Kecernaan Protein Kasar Dan Serat Kasar Serta Laju Digesta Pada Ayam Arab Yang Diberi Ransum Dengan Berbagai Level Azolla Microphylla. In Animal Agriculture Journal(Vol. 1, Issue 1). Ramos, L. H., Cisneros-Yupanqui, M., Santisteban Soto, D. V., Lante, A., Favaro, L., Casella, S., & Basaglia, M. (2023). Exploitation of Cocoa Pod Residues for the Production of Antioxidants, Polyhydroxyalkanoates, and Ethanol. Fermentation, 9(9), 843. https://doi.org/10.3390/fermentation9090843Risal, M., & Djadid, N. K. (2016). Analisis Nilai Tambah Ekonomis Pada Industri Rumah Tangga “berhias” Di Kota Palopo. Jurnal Manajemen STIE Muhammadiyah Palopo, 01, 26–38. https://doi.org/http://dx.doi.org/10.35906/jm001.v1i2.121Poveda, O. R., Pereira, L. B., Zeppa, G., & Stévigny, C. (2020). Cocoa bean shell—a by-product with nutritional properties and biofunctional potential. In Nutrients(Vol. 12, Issue 4). MDPI AG. https://doi.org/10.3390/nu12041123Rusdianto, A. S., Wiyono, A. E., Putri, N. I. M., & Runteka, O. W. (2021). Uji Pakan Ternak Berbahan KulitKopi, Ampas Tahu Dan Kepala Ikan Lele Pada Ayam Broiler. Agroindustrial Technology Journal, 4(2), 145. https://doi.org/10.21111/atj.v4i2.5003Rusdianto, A. S., Wiyono, A. E., Wahyuni, S., & Hidayati, U. N. (2021). Uji Pakan Ternak Menggunakan Kulit Kopi Terfermentasi, Okara Dan Tulang Daging Sapi Pada Ayam Broiler. Agroindustrial Technology Journal, 5(1), 01. https://doi.org/10.21111/atj.v5i1.4969Santosa, K. mulya, & Firmanto, H. (2023). Potential of Coffee and Cocoa Shell Waste as An Energy Source: Analysis of Characteristics of Briquettes From Coffee and Cocoa Shell Waste Through The Carbonization Process. Agroindustrial Technology Journal, 7(3), 88–103. https://doi.org/10.21111/atj.v7i3.11245Tortella, B. D., & Brusco, S. (2003). The Economic Value Added (Eva): An Analysis Of Market Reaction. In Advances in Accounting(Vol. 20, pp. 265–290). JAI Press. https://doi.org/10.1016/S0882-6110(03)20012-2Wahlberg, M. L. (2009). Treating Corn Silage to Enhance its Protein Content. Virginia Cooperative Extension-Livestock Update. Yuvita, D., Mustabi, J., & Asriany, A. (2020). Pengujian Karakteristik Dan Kandungan Lemak Kasar Silase Pakan Komplit Yang Berbahan Dasar Eceng Gondok (Eichornia Crassipes) Dengan Lama Fermentasi Yang Berbeda. 14(2)

Downloads

Submitted

2026-04-27

Published

2024-11-24

How to Cite

Halim, S. S., & Rahmah, D. M. (2024). NUTRITIONAL AND ECONOMIC ANALYSIS OF COCOA AND COFFEE BEAN SKINS IN SILAGE PRODUCTION. Agroindustrial Technology Journal, 8(2), 55–67. Retrieved from https://atj.journal.unida.gontor.ac.id/index.php/atj/article/view/101

Similar Articles

<< < 1 2 3 4 5 6 7 > >> 

You may also start an advanced similarity search for this article.