Valorization of Food Processing Cake Waste into Organic Fertilizer Using a Double-Molasses Biofermentation System
DOI:
https://doi.org/10.59525/jess.1838Keywords:
limbah cake double molase jus tebu gula merah pupuk fosfat organik PT Belfoods IndonesiaAbstract
The increasing generation of agro-industrial food processing waste presents environmental challenges while offering opportunities for resource recovery within a circular bioeconomy. This study evaluated the conversion of food processing cake waste from PT Belfoods Indonesia (Nganjuk, Indonesia) into organic fertilizer using a double-molasses biofermentation system with beneficial microorganisms activated by fresh sugarcane juice and palm sugar. A longitudinal experimental approach was applied through three stages: raw material characterization, biofermentation, and mature fertilizer production. Physicochemical properties were analyzed using standardized laboratory methods, while fertilizer performance was assessed through a 14-day field bioassay. Biofermentation significantly improved fertilizer quality, increasing total nitrogen from 0.17% to 0.69% and available phosphorus (P₂O₅) from 60.47 mg kg⁻¹ to 5,264.77 mg kg⁻¹. The final product contained no detectable hazardous heavy metals, including arsenic, cadmium, mercury, lead, and tin, confirming its environmental safety. Field observations showed improved plant growth, characterized by darker green leaves, greater foliage density, and stronger stems after fertilizer application. These findings demonstrate that the proposed double-molasses biofermentation system effectively transforms food processing cake waste into a safe, nutrient-enriched organic fertilizer with promising agronomic potential, supporting sustainable waste valorization and circular agricultural production.
References
Agegnehu, G., Nelson, P. N., & Bird, M. I. (2017). The effects of biochar, compost and their mixture on
soil properties and crop performance: A review. Soil and Tillage Research, 170, 41–55. https://doi.org/10.1016/j.still.2017.03.007
Alloway, B. J. (2013). Heavy Metals in Soils: Trace Metals and Metalloids in Soils and Their
Bioavailability (3rd ed.). Springer. https://doi.org/10.1007/978-94-007-4470-7
Alori, E. T., Glick, B. R., & Babalola, O. O. (2017). Microbial phosphorus solubilization and itspotential
for sustainable agriculture. Frontiers in Microbiology, 8, 971. https://doi.org/10.3389/fmicb.2017.00971
AOAC INTERNATIONAL. (2023). Official Methods of Analysis of AOAC INTERNATIONAL (22nd
ed.). Oxford University Press.
Bernal, M. P., Alburquerque, J. A., & Moral, R. (2009). Composting of animal manures and chemical
criteria for compost maturity assessment. Bioresource Technology, 100(22), 5444–5453. https://doi.org/10.1016/j.biortech.2008.11.027
Badan Standardisasi Nasional. (2024). SNI 7763:2024 Pupuk Organik Padat. Jakarta: BSN.Dhillon, G.
S., & Kaur, S. (Eds.). (2016). Agro-Industrial Wastes Valorization: Valorization for Green
Energy and Bioproducts. CRC Press.
European Commission. (2018). A Sustainable Bioeconomy for Europe: Strengthening the Connection
Between Economy, Society and the Environment. Publications Office of the European Union.
Food and Agriculture Organization of the United Nations. (2019). The State of Food and Agriculture
2019: Moving Forward on Food Loss and Waste Reduction. FAO.
Hargreaves, J. C., Adl, M. S., & Warman, P. R. (2008). A review of the use of composted municipal
solid waste in agriculture. Agriculture, Ecosystems & Environment, 123(1–3), 1–14. https://doi.org/10.1016/j.agee.2007.07.004
Kaza, S., Yao, L., Bhada-Tata, P., & Van Woerden, F. (2018). What a Waste 2.0: A Global Snapshot of
Solid Waste Management to 2050. World Bank.
Lim, S. L., Lee, L. H., & Wu, T. Y. (2016). Sustainability of using composting technology for organic
solid waste treatment. Journal of Environmental Management, 169, 305–312.
https://doi.org/10.1016/j.jenvman.2016.01.080
Marschner, P. (2012). Marschner's Mineral Nutrition of Higher Plants (3rd ed.). Academic Press.
PT Saraswanti Indo Genetech. (2025). Certificate of Analysis of Raw Food Processing Cake Waste.
Bogor, Indonesia.
PT Saraswanti Indo Genetech. (2026a). Certificate of Analysis of Intermediate Biofermentation
Product. Bogor, Indonesia.
PT Saraswanti Indo Genetech. (2026b). Certificate of Analysis of Mature Organic Fertilizer Produced
from Food Processing Cake Waste. Bogor, Indonesia.
Sharma, S. B., Sayyed, R. Z., Trivedi, M. H., & Gobi, T. A. (2013). Phosphate solubilizing microbes:
Sustainable approach for managing phosphorus deficiency in agricultural soils. SpringerPlus, 2, 587. https://doi.org/10.1186/2193-1801-2-587
Toop, T. A., Ward, S., Oldfield, T., Hull, M., Kirby, M. E., & Theodorou, M. K. (2017). Towards
sustainable feedstocks for the future bioeconomy. Biofuels, Bioproducts and Biorefining, 11(4), 640–652. https://doi.org/10.1002/bbb.1761
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