Estimation of Carbon Reserves in Agroforestry Systems in the East Rinjani KPH Forestry Partnership Scheme
DOI:
https://doi.org/10.71024/ecobios.2025.v2i1.31Keywords:
Carbon stocks, agroforestry, biodiversity, forestry partnershipsAbstract
Forests play a critical role in absorbing atmospheric carbon dioxide (CO₂) and serve as major carbon sinks. This study aims to analyze vegetation species biodiversity, estimate carbon stocks, and determine the relationship between carbon stocks, plant density, and biodiversity. A quantitative and descriptive research approach was employed, utilizing observation and survey techniques. Respondents were selected using Slovin’s formula with a 15% margin of error, resulting in a total sample of 30 farmers. The number of sample plots was determined using a census approach, based on the number of respondents. The average carbon stock in the Mekarsari Village area, under the East Rinjani Forest Management Unit (KPH) Partnership Scheme, was found to be 39.29 tonnes/ha, measured across three vegetation strata: trees, poles, and saplings. Specifically, carbon stocks were 30.93 tonnes/ha at the tree level, 6.08 tonnes/ha at the pole level, and 2.28 tonnes/ha at the sapling level. Regression analysis showed that plant density accounted for only 0.57% of the variation in carbon stocks, whereas the biodiversity index explained 54.57% of the variation. A total of 23 plant species were identified in the agroforestry plots. These results indicate that carbon stock levels in land use systems are significantly influenced by biodiversity and, to a lesser extent, by plant density. Higher biodiversity and plant density contribute to increased carbon sequestration, thereby enhancing overall carbon stocks.
References
Arif, A. (2024). The role of greenhouse gases, aerosols, and deforestation in climate change: A multidisciplinary assessment of the interaction mechanisms between human activity and the environment. International Journal of Medical Network (Int J Med Net), 2(2), 1–14.
Farmen, H., Panjaitan, P. B. P., & Rusli, A. R. (2014). Estimation of above-ground carbon reserves in the campus area of Nusa Bangsa University. Nusa SylvaFaculty of Forestry, Nusa Bangsa University, 14(1).
Filonchyk, M., Peterson, M. P., Zhang, L., Hurynovich, V., & He, Y. (2024). Greenhouse gases emissions and global climate change: Examining the influence of CO₂, CH₄, and N₂O. Science of The Total Environment, 173359. https://doi.org/10.1016/j.scitotenv.2024.173359
Hilyana, S., & Rahman, F. A. (2022). Variabilities of the carbon storage of mangroves in Gili Meno Lake, North Lombok District, Indonesia. Biodiversitas Journal of Biological Diversity, 23(11). https://doi.org/10.13057/biodiv/d231140
Hurteau, M. D. (2021). The role of forests in the carbon cycle and in climate change. In Climate change (pp. 561–579). Elsevier.
Jannah, S. W., Rahman, F. A., & Hadi, A. P. (2021). Analisis kandungan karbon pada vegetasi mangrove di Desa Lembar Kabupaten Lombok Barat. Bioscientist: Jurnal Ilmiah Biologi, 9(2), 11.
Kusumaningtyas, R., & Chofyan, I. (2011). Pengelolaan hutan dalam mengatasi alih fungsi lahan hutan di wilayah Kabupaten Sumbang. Jurnal Kehutanan, 13(2), 1–11.
Linarwati, M., Fathoni, A., & Minarsih, M. M. (2016). Descriptive Study of Human Resource Training and Development and the Use of Behavioral Event Interview Method in Recruiting New Employees at Bank Mega Kudus Branch. Journal Of Management, 2(2).
Markum, Ariesoesiloningsih, E., Suprayogo, D., & Hairiah, K. (2013). Contribution Of Agroforestry System In Maintaining Carbon Stocks And Reducing Emission Rate At Jangkok Watershed , Lombok Island. 35(1), 54–63.
Markum, Arisoesilaningsih, E., Suprayogo, D., & Hairiah, K. (2013). Plant Species Diversity In Relation To Carbon Stocksat Cicadas Whatershed, LombokIsland. 35(3), 207–217.
Markum, M., & Lestari, A. T. (2022). Skenario penurunan laju emisi CO₂ melalui pengelolaan agroforestri di DAS Jangkok Lombok. Prosiding SAINTEK, 4, 161–171.
Ministerial Regulation of the Environment and Forestry Ministry, N. P. T. 2021. (2021). Regulation of the Minister of Environment and Forestry of the Republic of Indonesia Number 9 of 2021 concerning Social Forest Processing. 1–268.
Moomaw, W. R., Law, B. E., & Goetz, S. J. (2020). Focus on the role of forests and soils in meeting climate change mitigation goals: Summary. Environmental Research Letters, 15(4), 045009. https://doi.org/10.1088/1748-9326/ab70bc
Nema, P., Nema, S., & Roy, P. (2012). An overview of global climate changing in current scenario and mitigation action. Renewable and Sustainable Energy Reviews, 16(4), 2329–2336. https://doi.org/10.1016/j.rser.2012.01.030
Pan, Y., Birdsey, R. A., Phillips, O. L., Houghton, R. A., Fang, J., Kauppi, P. E., Keith, H., Kurz, W. A., Ito, A., & Lewis, S. L. (2024). The enduring world forest carbon sink. Nature, 631(8021), 563–569. https://doi.org/10.1038/s41586-024-07233-z
Rahman, F. A., & Hadi, A. P. (2021). Kandungan C-organik substrat ekosistem mangrove di Danau Air Asin Gili Meno Kabupaten Lombok Utara. Bioscientist: Jurnal Ilmiah Biologi, 9(2), 11.
Rahman, F. A., Qayim, I., & Wardiatno, Y. (2023). Carbon stored on seagrass beds in Gili Maringkik, Lombok, Indonesia. BIOTROPIA – The Southeast Asian Journal of Tropical Biology, 30(1), Article 1. https://doi.org/10.11598/btb.2023.30.1.1776
Raihan, A., & Tuspekova, A. (2022). Nexus between emission reduction factors and anthropogenic carbon emissions in India. Anthropocene Science, 1(2), 295–310. https://doi.org/10.1007/s44177-022-00028-y
Rizki, A. S., Virgota, A., Farista, B., Hadi, A. P., Cerminand, N. I., & Rizali, M. (2024). Analisis sebaran spasial kontribusi ekosistem mangrove sebagai blue carbon dalam implementasi FOLU Net Sink di Pulau Lombok. Bioindikator: Jurnal Biologi dan Pendidikan Biologi, 1(2), Article 2. https://doi.org/10.71024/bioindikator/2024/v1i1/289
SNI, 7724. (2011). Measurement and Calculation of Carbon Stocks-Field Measurements for Forest Based Carbon Accounting.
Greenhouse Effect).4(1), 49–55.
Tang, Y. H., Luan, X. B., Sun, J. X., Zhao, J. F., Yin, Y. L., Wang, Y. B., & Sun, S. K. (2021). Impact assessment of climate change and human activities on GHG emissions and agricultural water use. Agricultural and Forest Meteorology, 296, 108218. https://doi.org/10.1016/j.agrformet.2020.108218
Wahidmurni. (2017). Presentation of Quantitative Research Methods. 1–16.
Downloads
Published
Issue
Section
License
Copyright (c) 2025 Muliadi Muliadi, Markum Markum, Budi Setiawan (Author)

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.









