Analysis of Soil Heavy Metal Absorption with the Application of Biochar Based on Oil Palm (Elaeis guineensis Jacq.) Frond Waste
Abstract
Soil contamination by heavy metals such as cadmium (Cd) and lead (Pb) is an environmental issue that degrades soil quality and poses risks to the health of living organisms. One strategy to reduce heavy metal mobility in soil is the use of biochar derived from biomass waste. This study aimed to analyze the uptake of Cd and Pb in soil following the application of biochar produced from oil palm frond waste via pyrolysis. The biochar was produced at temperatures of 350–400°C for 4 hours, then applied to the soil and incubated for one month. We analyzed heavy metal content using wet digestion, followed by measurements via atomic absorption spectrophotometry (AAS) and ICP-MS. The results demonstrated that the application of oil palm frond biochar reduced Cd and Pb concentrations in the soil through mechanisms such as adsorption, ion exchange, surface complexation, and precipitation. Key biochar characteristics—specifically high surface area, high porosity, and high cation exchange capacity—play a crucial role in immobilizing heavy metals, thereby reducing their bioavailability in the soil. The advantage of this research is that biochar from oil palm frond waste has proven to be highly effective in absorbing up to 100% of cadmium and also successfully reducing lead levels, using inexpensive, readily available, and environmentally friendly materials. This research also introduced innovation in the form of activating the biochar with eco-enzymes to enhance its absorption capacity. In addition to absorbing heavy metals, this biochar also improves soil fertility, providing dual benefits and supporting more sustainable agriculture. The analytical results were compared against the standards set by the International Biochar Initiative (IBI) to evaluate the safety of using the biochar as a soil amendment. The study indicates that oil palm frond biochar can serve as an eco-friendly adsorbent for remediating heavy metal-contaminated soil while offering a sustainable alternative for managing oil palm biomass waste.
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References
Adnan, M., Xiao, B., Xiao, P., Zhao, P., Li, R., & Bibi, S. (2022). Research progress on heavy metals pollution in the soil of smelting sites in China. Toxics, 10(5), Article 231. https://doi.org/10.3390/toxics10050231
Ahmad, A., Amri, I., & Nabilah, R. (2020). Produksi bioetanol generasi kedua dari pelepah kelapa sawit dengan variasi pretreatment H₂SO₄ dan waktu fermentasi. Экономика Региона, January.
Aulia, A. J., Ridwan, I., & Tambung, A. (2024). Bioremediasi tanah tercemar logam berat kadmium (Cd) dari tempat pembuangan akhir sampah Tamangapa di Kota Makassar menggunakan Saccharomyces cerevisiae untuk budidaya tanaman kedelai (Glycine max L.). Jurnal Lanskap dan Lingkungan (Julia), 1(2), 108–119. https://doi.org/10.20956/julia.v1i2.34909
Bonor, Y. E. S., Wicaksono, K. S., & Utami, S. R. (2023). Pengaruh fitoremediasi tanaman lokal terhadap kadar timbal (Pb) tanah di lahan penimbunan limbah pertambangan emas PT. Antam. Jurnal Tanah dan Sumberdaya Lahan, 10(2), 509–514. https://doi.org/10.21776/ub.jtsl.2023.010.2.34
Budidaya, L., Di, P., & Semarang, K. (2024). Jurnal Ilmiah Cendekia Eksakta, 59, 59–64.
Katebe, F. M., Mununga, P. R., C. G., M. N. S., M. M. M., & M. H. J. (2023). Assessment of heavy metal pollution of agricultural soil, irrigation water, and vegetables in and nearby the cupriferous city of Lubumbashi, Democratic Republic of the Congo. Agronomy, 13(2), Article 357. https://doi.org/10.3390/agronomy13020357
Hidayat, B., & Pramuga, A. (2024). Technique of biochar production: Teknik produksi biochar. Jurnal Agroteknologi, 12(3), 1–11.
International Biochar Initiative. (2013). Standardized product definition and product testing guidelines for biochar that is used in soil.
Khodijah, N. S., Inonu, I., Pratama, D., Roanisca, O., Ridho, M. F., & Khodijah, N. S. (2026). Analysis of lead (Pb) metal content in soil and peanut seeds (Arachis hypogaea) with the application of coal ash fly ash and bottom ash (FABA) in post-tin mining land. Jurnal Agronomi Tanaman Tropika (Juatika), 8(1), 6–12. https://doi.org/10.36378/juatika.v8i1.4958
Panjaitan, E., Sidauruk, L., Sianipar, E. M., & Sianturi, P. L. L. (2025). Effectiveness of bacterial consortium and biochar in remediation of heavy metals in polluted soil. Jurnal Agronomi Tanaman Tropika (Juatika), 7(2). https://doi.org/10.36378/juatika.v7i2.4158
Sherene, T. (2010). Mobility and transport of heavy metals in polluted soil environment. [Nama jurnal tidak tercantum], 2(2), 112–121.
Yanti, R. N., Ratnaningsih, A. T., & Ikhsani, H. (2022). Pembuatan bio-briket dari produk pirolisis biochar cangkang kelapa sawit sebagai sumber energi alternatif. Jurnal Ilmiah Pertanian, 19(1), 11–18. https://doi.org/10.31849/jip.v19i1.7815
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