Vol. 5 No. 9 (2026): AUGUST
Open Access
Peer Reviewed

EMPTY FRUIT BUNCH COMPOST AND OIL PALM YIELD IMPROVEMENT: A SYSTEMATIC REVIEW OF AGRONOMIC PERFORMANCE AND SOIL HEALTH OUTCOMES

Authors

Hamdani

DOI:

10.5281/zenodo.21885067

Published:

2026-08-10

Downloads

Abstract

Empty Fruit Bunch (EFB) is a significant solid biomass residue produced by the palm oil industry, which could potentially be recycled as organic compost. More and more people are promoting the use of EFB compost to improve oil palm productivity, soil quality, and assist in sustainable plantation management. A systematic analysis was conducted to evaluate the impact of EFB compost on oil palm agronomic performance and soil health outcomes. An SLR was conducted in accordance with the PRISMA 2020 guidelines. Scopus, Web of Science, and ScienceDirect were used to identify articles published between 2021 and 2026 that met specific eligibility criteria. EFB compost has been found to have a positive impact on fresh fruit bunch yield, nutrient use efficiency, soil organic carbon, chemical exchange capacity, and microbial activity in the literature reviewed. Depending on the plantation age, compost maturity, application rate, soil type, and environmental conditions, the effectiveness of compost application can vary. The agronomic and environmental benefits are most consistent when EFB compost is integrated with inorganic fertilizers.

Keywords:

Empty Fruit Bunch compost oil palm soil health sustainable agriculture systematic literature review

References

Amezketa, E. (2020), "The importance of organic amendments in soil conservation and agricultural production", Revista Colombiana de Investigaciones Agroindustriales, Vol. 7 No. 1, pp. 58–68.

Bakar, R.A., Darus, S.Z., Kulaseharan, S., & Jamaluddin, N. (2011), "Effects of ten years application of empty fruit bunches in an oil palm plantation on soil chemical properties", Nutrient Cycling in Agroecosystems, Vol. 89 No. 3, pp. 341–349.

Bossio, D.A., Lehmann, J., Kögel-Knabner, I., & Rillig, M.C. (2020), "The concept and future prospects of soil health", Nature Reviews Earth & Environment, Vol. 1 No. 10, pp. 544–553.

Chiew, Y.L., Shimada, S., & Ahmad, A.L. (2011), "Current state and environmental impact assessment for utilizing oil palm empty fruit bunches for fuel, fiber and fertilizer", Renewable and Sustainable Energy Reviews, Vol. 15 No. 9, pp. 4440–4449.

Comte, I., Colin, F., Grünberger, O., Follain, S., Whalen, J.K., & Caliman, J.P. (2013), "Landscape-scale assessment of soil response to long-term organic residue application in oil palm plantations", Agriculture, Ecosystems & Environment, Vol. 169, pp. 58–68.

De Corato, U. (2020), "Agricultural waste recycling in horticultural intensive farming systems by on-farm composting and compost-based tea application improves soil quality and plant health: A review under the perspective of a circular economy", Science of the Total Environment, Vol. 738, Article 139840.

Gebremikael, M.T., Ranasinghe, A., Hosseini, P.S., Laboan, B., Sonneveld, E., Pipan, M., Oni, F.E., Montemurro, F., Höfte, M., Sleutel, S., & De Neve, S. (2020), "How do novel and conventional agri-food wastes, co-products and by-products improve soil functions and soil quality?", Waste Management, Vol. 113, pp. 132–144.

Goh, K.J., Härdter, R., & Fairhurst, T.H. (2003), "Fertilizing for maximum return", Oil Palm Bulletin, Vol. 46, pp. 13–25.

Hamdani., Siti Mardiana., Syahbudin Hasibuan. (2022). “The Effects of Compost Application on Root Hairs, Soil Microorganisms, and Soil Fauna in Oil Palm Plantations”. Yantu Gongcheng Xuebao/Chinese Journal of Geotechnical Engineering, Vol. 44 No. 8, 120–126.

Hamdani., Siti Mardiana., Syahbudin Hasibuan. (2023). “The effect of composting application on soil physical and chemical properties in oil palm plantation”. Seybold Report 18.I02, Vol. 18 No. 2, pp. 160–176.

Hoffland, E., Kuyper, T.W., Comans, R.N.J., & Creamer, R.E. (2020), "Eco-functionality of organic matter in soils", Plant and Soil, Vol. 455, pp. 1–22.

Karlen, D.L., Andrews, S.S., & Doran, J.W. (2001), "Soil quality: Current concepts and applications", Advances in Agronomy, Vol. 74, pp. 1–40.

Lehmann, J., Bossio, D.A., Kögel-Knabner, I., & Rillig, M.C. (2020), "The concept and future prospects of soil health", Nature Reviews Earth & Environment, Vol. 1 No. 10, pp. 544–553.

Murillo Montoya, S.A., Mendoza Mora, A., & Fadul Vásquez, C.J. (2020), "The importance of organic amendments in soil conservation and agricultural production", Revista Colombiana de Investigaciones Agroindustriales, Vol. 7 No. 1, pp. 58–68.

Obalum, S.E., Chibuike, G.U., Peth, S., & Ouyang, Y. (2020), "Soil organic matter as the basis for sustainable soil management", Current Opinion in Environmental Sustainability, Vol. 46, pp. 1–9.

Pagliai, M., Vignozzi, N., & Pellegrini, S. (2020), "Soil structure and the effect of management practices", Soil and Tillage Research, Vol. 200, Article 104611.

Pankhurst, C.E., Doube, B.M., & Gupta, V.V.S.R. (2020), "Biological indicators of soil health", CAB International, Wallingford.

Sánchez-Monedero, M.A., Cayuela, M.L., Roig, A., Jindo, K., Mondini, C., & Bolan, N. (2021), "Role of organic amendments in sustainable soil management", Agronomy, Vol. 11 No. 5, Article 953.

Sharma, A., Singh, R.K., Dutta, A., & Kumar, S. (2021), "Composting of agricultural residues for sustainable nutrient recycling", Bioresource Technology Reports, Vol. 15, Article 100742.

Singh, J., Kalamdhad, A.S., & Kazmi, A.A. (2021), "Organic waste composting: Recent advances and future perspectives", Environmental Technology Reviews, Vol. 10 No. 1, pp. 1–18.

United Nations. (2015), Transforming Our World: The 2030 Agenda for Sustainable Development, United Nations, New York.

Page, M.J., McKenzie, J.E., Bossuyt, P.M., Boutron, I., Hoffmann, T.C., Mulrow, C.D., Shamseer, L., Tetzlaff, J.M., Akl, E.A., Brennan, S.E., Chou, R., Glanville, J., Grimshaw, J.M., Hróbjartsson, A., Lalu, M.M., Li, T., Loder, E.W., Mayo-Wilson, E., McDonald, S., McGuinness, L.A., Stewart, L.A., Thomas, J., Tricco, A.C., Welch, V.A., Whiting, P., & Moher, D. (2021), "The PRISMA 2020 statement: An updated guideline for reporting systematic reviews", BMJ, Vol. 372, Article n71.

Rosenani, A.B., Rovica, R., Cheah, P.M., & Lim, C.T. (2004), "Composting of oil palm empty fruit bunches using selected microbial inoculants", Journal of Oil Palm Research, Vol. 16 No. 2, pp. 57–68.

Author Biography

Hamdani, Institut Teknologi Sawit Indonesia

Author Origin : Indonesia

How to Cite

Hamdani. (2026). EMPTY FRUIT BUNCH COMPOST AND OIL PALM YIELD IMPROVEMENT: A SYSTEMATIC REVIEW OF AGRONOMIC PERFORMANCE AND SOIL HEALTH OUTCOMES. International Journal of Social Science, Educational, Economics, Agriculture Research and Technology (IJSET), 5(9), 5979–5986. https://doi.org/10.5281/zenodo.21885067

Similar Articles

<< < 1 2 3 4 5 6 7 8 9 10 > >> 

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