The Potential of Blue Carbon Stocks and Carbon Dioxide Absorption in Mangrove Forests to Support Low Carbon Emission Development in Southeast Sulawesi Province, Indonesia

Lies Indriyani, Sahindomi Bana, Asramid Yasin, La Baco Sudia, - Kahirun, La Ode Midi, - Hardin

Abstract


Indonesia is a country with the second-longest coastline globally and has the most extensive mangrove forests in the world. Mangrove forests are included in the blue carbon group, which per hectare store up to four times more carbon storage than tropical forests. Mangrove forests play an essential role in absorbing carbon emissions in the air and storing a lot of carbon compared to natural forests. This study aims to determine carbon storage and CO2 absorption in mangrove forests in Kabaena Barat Subdistrict, Bombana Regency. The data comes from direct measurements in the field, namely above-ground carbon, carried out without damaging trees, only covering carbon in tree vegetation. It is the largest proportion of carbon storage on land. The data collection used a survey method to identify mangrove species, circumference, tree trunk diameter at breast height (dbh), biomass, carbon storage, CO2 absorption, and 22 plots of plotted line method with eight transects. The results showed that 10 types of mangrove species were found on the transect observation, namely Avicennia alba, Avicennia marina, Avicennia lanata, Avicennia sp., Bruguiera cylindrica, Bruguiera gymnorhiza, Rhizophora apiculata, Rhizophora mucronata, Sonneratia alba, and Xylocarpus granatum. With the total amount of biomass stored in Kabaena Barat Subdistrict's mangrove forests, Bombana Regency, is 6,664.93 tons ha-1 with carbon storage of 3,065.85 tons ha-1 and carbon dioxide absorption of 11,241.55 tons ha-1.


Keywords


blue carbon stocks; carbon dioxide absorption; mangrove forests; Kabaena.

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References


E. Handoko, B. Amin, H.S. Siregar, “Analisis biomassa dan cadangan karbon pada ekosistem mangrove di Kawasan Selatan Pulau Rupat,†Jurnal Online Mahasiswa Fakultas Perikanan dan Ilmu Kelautan Universitas Riau (JOM FAPERIKA UNRI), vol. 3(2), pp. 1-12, 2016.

M. J. Afifudin, “Analisa vegetasi hutan mangrove dan serapan CO2 di Kecamatan Tongas Kabupaten Probolinggo Jawa Timur. skripsi, Program Studi Ilmu Kelautan Fakultas Sains dan Teknologi Universitas Islam Negeri Sunan Ampel, Surabaya, 2019.

M. Iswandar, I. Dewiyanti, dan V. Kurnianda, “Dugaan serapan karbon pada vegetasi mangrove di kawasan mangrove Gampong Iboih Kecamatan Sukakarya Kota Sabang,†Jurnal Ilmiah Mahasiswa Kelautan dan Perikanan Unsyiah, vol. 2(4), pp. 512-518, 2017.

S. Sandilyan, & K. Kathiresan, “Density of waterbirds in relation to habitats of Pichavaram mangroves,†Southern India, vol. 19(2), pp. 131-139, 2015.

R. Polii, J. S. Tasirin, dan S. P. Ratag, “Analisis cadangan karbon di hutan mangrove Desa Bahoi,†Jurnal Ilmiah Fakultas Pertanian Universitas Sam Ratulangi, vol. 1(2), pp. 1-6, 2019.

S. Oktaviona, B. Amin, dan M. Ghalib, “Estimasi stok karbon tersimpan pada ekosistem hutan mangrove di Jorong Ujuang Labuang Kabupaten Agam Provinsi Sumatera Barat,†Jurnal Online Mahasiswa Fakultas Perikanan dan Ilmu Kelautan, vol. 4(2), pp. 1-12, 2017.

S. E. Hamilton and D. A. Friess, “Global carbon stocks and potential emissions due to mangrove deforestation from 2000 to 2012,†Nature Climate Change, vol. 8(3), pp. 240-244, 2018. DOI: 10.1038/s41558-018-0090-4.

Y. S. Syafruddin, “Pendugaan cadangan karbon biru pada tingkat pohon di Desa Pulau Cawan dan Desa Bekawan Kecamatan Mandah Provinsi Riau,†Jurnal Spasial, vol. 5(2), pp. 54-62, 2018.

A. J. Wahyudi, et al., “Potensi cadangan dan serapan karbon ekosistem mangrove dan padang lamun Indonesia,†Lembaga Ilmu Pengetahuan Indonesia (LIPI) Via Program Coral Reef Management and Rehabilitation-Coral Triangle Initiative (COREMAP-CTI). 2018.

M. L. P. Penaranda, J. R. C. Kintz, and E. J. P. Salamanca, “Carbon stocks in mangrove forests of the Colombian Pacific,†Estuarine, Coastal and Shelf Science, vol. 227, pp. 1-7, 2019. DOI: https://doi.org/10.1016/j.ecss.2019.106299.

A. Rovai, R. Twilley, E. Castañeda-Moya, P. Riul, M. Cifuentes-Jara, M. Manrow-Villalobos, P. Horta, J. C. Simonassi, A. Fonseca, P. R. Pagliosa, “Global controls on carbon storage in mangrove soils,†Nat. Clim. Chang, vol. 8, pp. 534-538, 2018. DOI: https://doi.org/10.1038/s41558-018-0162-5.

M. A. Hayes, A. Jesse, B. Tabet, R. Reef, J. A. Keuskamp, C. E. Lovelock, “The contrasting effects of nutrient enrichment on growth, biomass allocation and decomposition of plant tissue in coastal wetlands,†Plant Soil, vol. 416, pp. 193–204, 2017. DOI: https://doi.org/10.1007/s11104-017-3206-0.

Badan Informasi Geospasial (BIG), “Informasi geospasial mangrove Indonesia,†Pusat Pemetaan dan Informasi Tematik, Badan Informasi Geospasial Indonesia. Bogor. 2012.

Kementerian Kehutanan (KLHK), “Rekalkulasi penutupan lahan Indonesia tahun 2012,†Center for Forest Mapping and Inventory. Kementerian Kehutanan RI. Jakarta. 2013.

M. Ilman, P. Dargusch, P. Dart, and Onrizal, “A historical analysis of the drivers of loss and degradation of Indonesia’s mangroves,†Land Use Policy, vol. 54, pp. 448-459, 2016.

C. Giri, E. Ochieng, L. L. Tieszen, Z. Zhu, A. Singh, T. Lovelan, N. Duke, Stasus and Distribution of Mangrove Forest of the World Using Actions Project, USA: Forest Ecological, 2011.

M. Syukri, “Estimasi cadangan karbon vegetasi mangrove hubungannya dengan tutupan kanopi di Ampalas, Kelurahan Bebanga, Kecamatan Kalukku Kabupaten Mamuju Sulawesi Barat,†skripsi, Fakultas Ilmu Kelautan dan Perikanan. Universitas Hasanuddin, Makassar, 2017.

D. Murdiyarso, J. Purbopuspito, J. B. Kauffman, M. W. Warren, S. D. Sasmito, D. C. Donato, S. Manuri, H. Krisnawati, S. Taberima, & S. Kurnianto, â€The potential of Indonesian mangrove forests for global climate change mitigation,†Nat. Clim. Change, vol. 5, pp. 1089–1092, 2015.

A. J. Wahyudi, et al., (Edt), Menyerap Karbon: Layanan Ekosistem untuk Mitigasi Perubahan Iklim, Yogyakarta: Gadjah Mada University Press, 2017.

R. Suwa, R. Rollon, S. Sharma, M. Yoshikai, R. N. A. Ati, G. M. G. Albano, K. O. M. A. Kusumaningtyas, T. L. Kepel, R. J. Maliao, Y. H. P. Tirol, N. S. Adi, A. C. Blanco, and K. Nadaoka, “Mangrove biomass estimation using canopy height and wood density in the South East and East Asian regions,†Estuarine, Coastal and Shelf Science, 2020. DOI: https://doi.org/10.1016/j.ecss.2020.106937.

B. Neumann, A. T. Vafeidis, J. Zimmermann, and R. J. Nicholls, “Future coastal population growth and exposure to sea-level rise and coastal flooding - a global assessment,†PLoS ONE, vol. 10(3): e0118571. DOI: 10.1371/journal.pone.0118571, 2015.

S. Sharma, R.A. MacKenzie, T. Tieng, K. Soben, N. Tulyasuwan, A. Resanond, G. Blate, and C.M. Litton, “The impacts of degradation, deforestation and restoration on mangrove ecosystem carbon stocks across Cambodia,†Science of the Total Environment, 2019. DOI: https://doi.org/10.1016/j.scitotenv.2019.135416.

Peraturan Presiden Nomor 61 Tahun 2011 tentang Rencana Aksi Nasional Gas Rumah Kaca (RAN GRK). 2011.

J. L. Johnson, J. L. Raw, and J. B. Adams, “First report on carbon storage in a warm-temperate mangrove forest in South Africa,†Estuarine, Coastal and Shelf Science, vol. 235, pp. 1-10, 2019. DOI: https://doi.org/10.1016/j.ecss.2019.106566.

(2017) Katadata website. [Online]. Available: https://katadata.co.id/berita/2017/10/25/bappenas-siapkan-perpres-naan-pembangunan-rendah-karbon/

J. A. A. Castillo, A. A. Apan, T. N. Maraseni, and S. G. Salmo, “Tree biomass quantity, carbon stock and canopy correlates in mangrove forest and land uses that replaced mangroves in Honda Bay, Philippines,†Regional Studies in Marine Science, 2018. DOI: https://doi.org/10.1016/j.rsma.2018.08.006.

Hardin, “Potensi karbon tersimpan pada ekosistem hutan mangrove Kecamatan Kabaena Barat Kabupaten Bombana,†skripsi, Jurusan Ilmu Lingkungan Fakultas Kehutanan dan Ilmu Lingkungan Universitas Halu Oleo, Kendari, 2017.

M. E. Hernández and D. J. Gómez, “Carbon stocks and greenhouse gas emissions (CH4 and N2O) in mangroves with different vegetation assemblies in the central coastal plain of Veracruz Mexico,†Science of the Total Environment, 2020, DOI: https://doi.org/10.1016/j.scitotenv.2020.140276.

I. Soerinegara, dan A. Indarawan, Ekologi Hutan. Bogor: Departemen Manajemen Hutan Fakultas Kehutanan IPB, 1998.

K. Hairiah, dan S. Rahayu, “Pengukuran karbon tersimpan di berbagai macam penggunaan lahan,†World Agroforestry Centre-ICRAF, SEA Regional Office, Universitas Brawijaya, Indonesia, 2007.

R. Rifyunando, “Estimasi stok karbon mangrove di kawasan cagar alam Leuweu Sancang Kecamatan Cibalong Kabupaten Garut,†Universitas Pendidikan Indonesia. Bandung, 2011.

R. T. Aksornkoe, Ecology and Management of Mangrove. Bangkok. Thailand: IUCN, 1993.

R. Wardi, M. Ghalib, dan Mubarak, “Kondisi fisika-kimia perairan Pulau Kabaena Kabupaten Bombana Sulawesi Tenggara,†Dinamika Lingkungan Indonesia, vol. 4(1), pp. 29-38, 2017.

Keputusan Menteri Negara Lingkungan Hidup (Kepmen LH) Nomor 51 Tahun 2004 tentang Baku Mutu Air Laut, 2004.

V. K. Chapman, Mangrove of Indo-Malesia. In: F.D. Poor and I. Dor (Eds), Hydrobiology of Mangal, Netherlands: Dr. W. Junk Publishers. 1976.

E. Hilmi, A. S. Siregar, “Model pendugaan biomassa flora bakau di Kabupaten Indragiri Hilir Riau,†Jurnal Biosfera, vol. 23(2), pp. 470-476, 2007.

Samsumarlin, I. Rachman, & B. Toknok, “Studi zonasi vegetasi mangrove muara di Desa Umbele Kecamatan Bumi Raya Kabupaten Morowali Sulawesi Tengah,†Jurnal Warta Rimba, vol. 3(2), pp. 148-154, 2015.

D. Rachmawati, Setyobudiandi, dan E. Hilmi, “Potensi estimasi karbon tersimpan pada vegetasi mangrove di wilayah pesisir Kabupaten Gombong Kabupaten Bekasi,†Jurnal Omni Akuatika, vol. 13(19), pp. 85-91, 2014.

T.G. Northcote, and Hartman (Ed), Worldwide Watershed Interaction and Management. Oxford, UK: Blackwell Science, 2004.

T. Adriono, “Pengukuran kandungan karbon (carbon stock) dengan metode karbonasi pada hutan tanaman jenis Acacia crassicarpa,†tesis, Universitas Gadjah Mada. Yogyakarta, 2009.

C. J. Owers, K. Rogers, and C. D. Woodroffe, “Spatial variation of above-ground carbon storage in temperate coastal wetlands,†Estuar. Coast Shelf Sci., vol. 2(10), pp. 55–67, 2018. DOI: https://doi.org/10.1016/j.ecss.2018.06.002.

E. S. Yando, M. Osland, M. W. Hester, “Microspatial ecotone dynamics at a shifting range limit: plant-soil variation across salt marsh–mangrove interfaces,†Oecologia, 2018. DOI: https://doi.org/10.1007/s00442-018-4098-2.

K. Banerjee, G. Bal, and A. Mitra, “How soil texture affects the organic carbon load in the mangrove ecosystem? a case study from Bhitarkanika, Odisha. In: Environmental Pollution,†Water Science and Technology Library. Springer, Singapore, pp. 329-341, 2018. DOI: https://doi.org/10.1007/978-981-10-5792-2_27.

R. R. Twilley, E. C. N. Moya, V. H. R. Monroy, and A. Rovai, “Productivity and carbon dynamics in mangrove wetlands. In: mangrove ecosystems: a global biogeographic perspective,†Springer, pp. 113-162, 2017. DOI: https://doi.org/10.1007/978-3-319-62206-4_5.

K. Rogers, J. J. Kelleway, N. Saintilan, J. P. Megonigal, J. B. Adams, J. R. Holmquist, M. Lu, L. S. Beers, A. Zawadzki, D. Mazumder, and C. D. Woodroffe, “Wetland carbon storage controlled by millennial-scale variation in relative sea-level rise,†Nature, vol. 567, pp. 91-95, 2019. DOI: https://doi.org/10.1038/s41586-019-0951-7.

T. V. Vinha, C. Marchand, T. V. K. Linha, D. D. Vinhc, and M. Allenbachd, “Allometric models to estimate above-ground biomass and carbon stocks in Rhizophora apiculata tropical managed mangrove forests (Southern Viet Nam),†Forest Ecology and Management, vol. 434, pp. 131-141, 2018. DOI: https://doi.org/10.1016/j.foreco.2018.12.017.

S. Achmadi, Diktat Kimia Kayu. Bogor: Pusat Antar Universitas. Institut Pertanian Bogor, 1990.

P. V. Hieu, L. V. Dung, N. T. Tue, and K. Omori, “Will restored mangrove forests enhance sediment organic carbon and ecosystem carbon storage?,†Regional Studies in Marine Science, 2017. DOI: http://dx.doi.org/10.1016/j.rsma.2017.05.003.

A. Komiyama, S. Poungparn, S. Kato, “Common allometric equations for estimating the tree weight of mangroves,†Journal of Tropical Ecology, vol. 21, 2005. DOI: 10.1017/S0266467405002476.

C.A. Siregar dan I.W.S. Dharmawan, “Biomassa karbon pada hutan tanaman mangrove,†Pusat Penelitian Hutan dan Konservasi Alam, Bogor, 2009.

I.W.S. Dharmawan dan C.A. Siregar, “Karbon tanah dan penduga karbon tegakan Avicennia marina di Ciasem, Purwakarta,†Jurnal Penelitian Hutan dan Konservasi Alam, 2008.

J.B. Kauffman dan D.C. Donato, “Protocols the measurement, monitoring, and reporting of structure, biomass and carbon stocks in mangrove forests,†Center for International Forestry Research (CIFOR), Bogor, 2012.

S. Amira, “Pendugaan biomassa jenis Rhizophora apiculata B1 di hutan mangrove Batu Ampar Kabupaten Kubu Raya Kalimantan Barat,†Institut Pertanian Bogor (IPB), Bogor, 2008.

F. Fromard, H. Puing, E. Mougin, J.L. Betoulle, L. Cadamuro, “Structure, above-ground biomass and dynamics of mangrove ecosystems,†Guiana, 1998.

M.A. Tarlan, “Biomass estimation of Nyirih (Xylocarpus granatum) in primary mangrove forest in Batu Ampar, Kalimantan Barat,†Institut Pertanian Bogor (IPB), Bogor, 2008.




DOI: http://dx.doi.org/10.18517/ijaseit.10.6.13332

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