Mangrove species diversity and carbon stock in silvofishery ponds in Deli Serdang District, North Sumatra, Indonesia

##plugins.themes.bootstrap3.article.main##

MEILINDA SURIANI HAREFA
ZULKIFLI NASUTION
MISWAR BUDI MULYA
AZHAR MAKSUM

Abstract

Abstract. Harefa MS, Nasution Z, Mulya MB, Maksum A. 2021. Mangrove species diversity and carbon stock in silvofishery ponds in Deli Serdang District, North Sumatra, Indonesia. Biodiversitas 23: 655-662. Mangrove-based silvofishery ponds are promoted as a win-win solution for biodiversity conservation, climate change mitigation as well as income generation for coastal communities. This study aimed to analyze the species diversity and carbon stock of mangrove vegetation in silvofishery ponds in Tanjung Rejo Village, Percut Seituan Sub-district, Deli Serdang District, North Sumatra, Indonesia. Data of the mangrove species were obtained using vegetation analysis, and the potential carbon stock was estimated based on allometric equations of both above- and below-ground tree biomass. For this purpose, plot samples from 22 silvofishery ponds were taken by establishing 5 aligned circular plots, each with a radius of 5.64 m, perpendicular to the coastline and with a distance of 15 meters between their perimeters. The results show that the mangrove species with the highest Importance Value Index (IVI) was Rhizophora apiculata (122.05%), followed by Excoecaria agallocha (42.29%) and Avicennia marina (36.84%), and the lowest IVI was Sonneratia caseolaris (1.48%). Higher IVI values indicate a larger carbon deposit from mangrove vegetation in silvofishery ponds. Our results indicate that mangrove area coverage of 44-80% per hectare in silvofishery ponds can deposit 40-50 tonnes of carbon per hectare and have greater potential carbon stock compared to coverage below 40%. The mangrove management activities with the sylvofishery scheme have a good impact on the community's economy and also maintain the existence of mangroves as carbon storage.

##plugins.themes.bootstrap3.article.details##

References
Akbar AA, Sartohadi J, Djohan TJS, Ritohardoyo S. 2017. The breakwater role on the rehabilitation of coastal and mangrove forests in West Kalimantan, Indonesia.Ocean and Coastal Management 138: 50-59. DOI: 10.1016/j.ocecoaman.2017.01.004.
Alavaisha E, Mangora MM. 2016. Carbon stock in the small estuarine mangrove of Geza and Mtimbwani, Tanga, Tanzania. International Journal of Forestry Research 1 -11. DOI: 10.1155/2016/2068283
Ati RNA, Rustam A, Kepel TL, Sudirman N, Astrid M, Daulat A, Mangindaan P, Salim HL, Hutahaean A. Stok karbon dan struktur komunitas mangrove sebagai blue carbon di Tanjung Lesung, Banten. J. Segara 10 (2): 119-127.
Barbier EB. 2012. Progress and challenges in valuing coastal and marine ecosystem services. Review of Environmental Economics and Policy 6: 1-19. doi: 10.1093/reep/rer017
Basyuni M, Nasution KS, Slamet B, Sulistiyono N, Bimantara Y, Putri LAP, Yusraini E, Hayati R, Lesmana I. 2018. Introducing of a silvofishery pond on sapling and seedling density based in Lubuk Kertang Village, North Sumatera. IOP Conf. Series: Earth and Environmental Science 260 (2019) 012115
Basyuni M, Gulton K, Fitri A, Susetya IE, Wati R, Slamet B, Sulistiyono N, Yusraini E, Blake T, Bunting P. 2018. Diversity and habitat characteristics of macrozoobenthos in the mangrove forest of Lubuk Kertang Village North Sumatra Indonesia. Biodiversitas 19: 311-17. DOI: 10.13057/biodiv/d190142
Camacho LD, Gevana DT, Carandang AP, Camacho SC, Combalicer EA, Rebugio LL, Youn YC. 2011. Tree biomass and carbon stock of a community-managed mangrove forest in Bohol, Philippines. Forest Science and Technology 7(4): 161-167. doi.org/10.1080/21580103.2011.621377
De-León-Herrera R, Flores-Verdugo F, Flores-de-Santiago F, González-Farías F. 2015. Nutrient removal in a closed silvofishery system using three mangrove species (Avicennia germinans, Laguncularia racemosa, and Rhizophora mangle).MarPolBull91(1): 243-248. DOI:10.1016/j.marpolbul.
11.040
Dharmawan IWS, Siregar CA. 2008. Soil Carbon and Carbon Estimation of Avicennia marina (Forsk.) Vierh. Stand at Ciasem, Purwakarta. Jurnal Penelitian Hutan dan Konservasi Alam V (4): 317-328.
Donato DC, Kauffman JB, Murdiyarso D, Kurnianto S, Stidham M, Kanninen M. 2012. Mangrove salah satu hutan terkaya karbon di daerah tropis. Brief CIFOR 12: 1-12.
Eid EM, Shaltout KH. 2016. Distribution of organic carbon soil in the mangrove Avicennia marina (Forssk.) Vierh. along the Egyptian Red Sea coast. Regional Studies in Marine Science 3: 76-82. DOI:10.1016 /j.rsma.2015.05.006
Ellison AM. 2000. Mangrove restoration: do we know enough?. Restoration Ecology 8(3): 219-229.
Food and Agriculture Organization (FAO) of The United Nations. 1994. Mangrove Forest Management Guidelines. FAO, Rome.
Gillerot L, Vlaminck E, Ryck DJRD, Mwasaru DM, Beeckman H, Koedam N. 2018. Inter and intraspecific variation in mangrove carbon fraction and wood specific gravity in Gazi Bay, Kenya. Ecosphere 9(6): 1-17. DOI: 10.1002/ecs2.2306
Ginting ZA, Marunung TF, Sisillia L. 2017. Vegetation analysis in village forest areas in Nanga Yen Village, Hulu Gurung Sub-district, Kapuas Hulu District. Sustainable Forest 5(3): 713-720.
Gunawan W, Basuni S, Indrawan A, Prasetyo LB, Soedjito H. 2011. Analisis komposisi dan struktur vegetasi terhadap upaya restorasi kawasan hutan Taman Nasional Gunung Gede Pangrango. JPSL 1: 93-105.
Hamran, Linda R, Lovadi I. 2014. Analysis of mangrove vegetation in Sebubus Village, Paloh Sub-district, Sambas District. Protobiont 3(2): 201-208.
Hastuti ED, Budihastuti R. 2016. Potential of mangrove seedling for utilization in maintenance of environment quality within silvofishery ponds. Biotropia 22 (1): 58-63.
Hong LC, Hemati ZH, Zakaria RM. 2017. Carbon stock evaluation of mangrove forest selection in Peninsular Malaysia and its potential market value. Environmental Science Management 20(2): 77-87.
Ismail MH, Fuad MFA, Zaki PH, Jemali NJN. 2017. Analysis of importance value index of unlogged and logged peat swamp forest in Nenasi Forest Reserve, Peninsular Malaysia. Bonorowo Wetlands 7(2): 74-78. DOI: 10.13057/bonorowo/w070203
Kauffman JB, Cole TG. 2010. Micronesian mangrove forest structure and tree responses to a severe typhoon. Wetlands 30: 1077-1084.
Kauffman JB, Donato DC. 2012. Protocols for the measurement, monitoring and reporting of structure, biomass, and carbon stocks in mangrove forests. Cifor. Bogor.
Komiyama A, Poungparn S, Kato S. 2005. Common allometric equations for estimating the tree biomass of mangroves. Journal of Tropical Ecology 21: 471-477.
Komiyama A, Ong JE, Poungparn S. 2008. Allometry, biomass, and productivity of mangrove forests: A review: Aquat Bot 89(2): 128-137.
Kridiborworn P, Chidthaisong A, Yuttitham M, Tripetchkul S. 2012. Carbon sequestration by mangrove forest planted specifically for charcoal production in Yeesarn, Samut Songkram. Journal of Sustainable Energy and Environment 3: 87-92.
Lawrence A. 2012. Blue Carbon A new concept for reducing the impacts of climate change by conserving coastal ecosystems in the Coral Triangle. WWF Australia. Queensland.
Li N, Chen P, Qin C. 2015. Density, storage and distribution of carbon in mangrove ecosystem in Guangdong’s Coastal Areas. Asian Agricultural Research 7(2): 62-73.
Liu H, Ren H, Sharks D, Wang W, Liao B, Cao Q. 2014. Carbon stocks and potential carbon storage in the forest of China. Journal of Environmental Management 133: 86-93. DOI: 10.1016/j.jenvman.2013.11.037.
Malik A, Rahim A, Sideng U, Rasyid A, Jamaluddin J. 2019. Biodiversity assessment of mangrove vegetation for the sustainability of ecotourism in West Sulawesi, Indonesia. AACL Bioflux 12(4): 1458-1466.
Mandari DZ, Gunawan H, Isda MN. 2016. Penaksiran biomassa dan karbon tersimpan pada ekosistem hutan mangrove di kawasan Bandar Bakau Dumai. Jurnal Riau Biologia 1(3):17-23.
Murdiyarso D, Purbopuspito J, Kauffman JB, Warren MW, Sasmito SD, Donato DC, Manuri S, Krisnawati H, Taberima S, Kurnianto S. 2015. The potential of Indonesian mangrove forest for global climate change mitigation. Cifor, Bogor.
Musa M, Mahmudi M, Arsad S, Buwono NR. 2020. Feasibility study and potential of pond as silvofishery in coastal area: Local case study in Situbondo Indonesia. Regional Studies in Marine Science 33 100971. https://doi.org/10.1016/j.rsma.2019.100971.
Noraimy R, Mohd Hasmadi I, Norizah K, Pakhriazad HZ. 2014. Effect of skid trails on the regeneration of commercial tree species at Balah Forest Reserve, Kelantan, Malaysia. Biodiversitas 15 (2): 239-243.
Oktaviona S, Amin B, Ghalib M. 2017. 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 4(2): 1- 12.
Ouyang X, Guo F. 2016. Paradigms of mangroves in treatment of anthropogenic wastewater pollution. Science of the Total Environmet 544: 971-979. DOI: 10.1016/j.scitotenv.2015.12.013
Perez A, Machado W, Gutierrez D, Borges AC, Patchineelam SR, Sanders CJ. 2018. Carbon accumulation and storage capacity in mangrove sediments three decades after deforestation within a eutrophic bay. Marine Pollution Bulletin 126: 275-280. DOI: 10.1016/j.marpolbul.2017.11.018
Prakoso TB, Afiati N, Suprapto D. 2018. Biomassa kandungan karbon dan serapan CO2 pada tegakan mangrove di Kawasan Konservasi Mangrove Bedono, Demak. Management of Aquatic Resources Journal 6(2): 156-163.
Putz FE, Chan HT. 1986. Tree growth dynamics, and productivity in a mature mangrove forest in Malaysia. Forest Ecology and Management 17: 211-230.
Sari M, Hatta M, Permana A. 2014. Ecological status and development of silvofishery for increasing peoples economy (The Case of RPH-Tegal Tangkil, KPH Purwakarta, Blanakan Subang East Java). Acta Aquatica 2(1): 41-47.
Siregar CA, Dharmawan IWS. 2009. Biomassa Karbon Pada Hutan Tanaman Mangrove. Laporan Hasil Penelitian. Pusat Penelitian Hutan dan Konservasi Alam. Bogor.
Sitoe AA, Mandlate LJC, Guedes BS. 2014. Biomass and carbon stocks of Sofala bay mangrove forests. Forests 5(8): 1967-1981.
Soerianegara I, Indrawan A. 1998. Ekologi Hutan Indonesia. IPB, Bogor
Sugirahayu L, Rusdiana O. 2011. Perbandingan simpanan karbon pada beberapa penutupan lahan di Kabupaten Paser, Kalimantan Timur berdasarkan sifat fisik dan sifat kimia tanahnya. Jurnal Silvikultur Tropika 2(3):149-155.
Suwarto, Lahjie AM, Ruchaemi A, Simorangkir BDAS, Mulyadi F. 2015. Ecological aspect of non productive fishponds at Mahakam Delta area: revitalization with silvofishery system. GJAR 3(1): 27-37.
Tian Y, Chen G, Tang F, Zheng C, Ye Y. 2018. Effects of different types of nutrient effluent from shrimp ponds on the seedling growth of Kandelia obovata. Acta Oceanologica Sinica 37(6): 112-120.
Widyastuti A, Yani E, Nasution EK, Rochmatino. 2018. Diversity of mangrove vegetation and carbon sink estimation of Segara Anakan Mangrove Forest, Cilacap, Central Java,Indonesia. Biodiversitas, 19(1). DOI: 10.13057/biodiv/d190133.
Wiwatthanapornchai S, Piputsitee C, Boonyawat S. 2014. The economic value of Laem Phak Bia mangrove ecosystem services in Phetchaburi Province, Thailand. Modern Applied Science 8: 36-58. doi: 10.5539/mas.v8n5p36