Sediment organic carbon stocks in tropical lakes and its implication for sustainable lake management

سال انتشار: 1402
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 352

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شناسه ملی سند علمی:

JR_GJESM-9-2_001

تاریخ نمایه سازی: 7 آبان 1401

چکیده مقاله:

BACKGROUND AND OBJECTIVES: The lakeside has an enormous sediment carbon storage potential; however, it is susceptible to various environmental changes and can easily become a source of carbon emissions. Understanding the amount of carbon storage in lakeside sediments and organic matter sources may provide information about the potential of lakeside zones in climate change mitigation, particularly for sustainable lake management. This study aims to estimate sediment organic carbon stock and the sources of organic matter in the Maninjau Lakeside-West Sumatera, Indonesia.METHODS: Sediment sampling was performed at five research sites, with a depth of ۰–۱۰۰ centimeters. Sediment samples were divided into ۴ subsamples: ۰–۱۵; ۱۵–۳۰; ۳۰–۵۰; and ۵۰–۱۰۰ centimeters. Bulk density and total nitrogen content were analyzed, and the percentage of organic carbon was calculated from the loss of ignition. The sediment organic carbon stock was calculated based on the bulk density and organic carbon content. Carbon per nitrogen ratio was also calculated to determine temporal changes in the sources of organic matter in the lake.FINDINGS: This study demonstrated that Maninjau Lakeside has an enormous potential sedimentary organic carbon stock range between ۲۸۴.۲۳–۴۴۲.۵۹ megagrams per carbon per hectare. The highest total sediment carbon stock was found in Duo Koto (۴۴۲.۵۹ megagrams per carbon per hectare), with the lowest in Koto Kaciak (۲۸۴.۲۳ megagrams per carbon per hectare). In addition, the study’s results also exhibited significant differences in sediment organic carbon stocks at each location with different land use and cover; in this case, the forest area has a higher carbon stock value than the agricultural and settlement areas. Therefore, it is essential to take initiatives for the restoration and conservation of lakeside areas because of their essential role in mitigating the climate change. The mean ratio of organic carbon and total nitrogen was between ۹.۹۶ to ۱۶.۹۱, indicating that phytoplankton, a mixture of floating macrophytes, and submerged vegetation were the sources of organic matter.CONCLUSION: In general, the value of sediment organic carbon stocks tends to be lower in locations with intensive agricultural settlements than in forest areas. This study emphasizes that restoring lakeside wetland is vital in increasing sediment organic carbon stocks and maintaining lake sustainability.

نویسندگان

T.R. Soeprobowti

Center for Paleolimnology (CPalim), Universitas Diponegoro, Semarang, Indonesia

N.D. Takarina

Department Biology, Faculty Mathematics and Natural Sciences, Universitas Indonesia, Depok, Indonesia

P.S. Komala

Department of Environmental Engineering, Faculty of Engineering, Universitas Andalas, Padang, Indonesia

L. Subehi

Research Center for Limnology and Water Resources, National Research and Innovation Agency, Cibinong, Indonesia

M. Wojewódka-Przybył

Institute of Geological Sciences, Polish Academy of Sciences, Warsaw, Poland

J. Jumari

Department Biology, Faculty Science and Mathematics, Universitas Diponegoro, Semarang, Indonesia

R. Nastuti

School of Postgraduate Studies, Universitas Diponegoro, Semarang, Indonesia

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  • Adame, M.F.; Zakaria, R.M.; Fry, B.; Chong, V.C.; Then, Y.H.A.; ...
  • Akodi, D.; Komutunga, E.; Agaba,C.; Oratungye, K.J.; Ahumuza, E., (۲۰۱۶). ...
  • Alcocer, J.; Ruiz-Fernández, A.C.; Oseguera, L.A.; Caballero, M.; Sanchez-Cabeza, J.A.; ...
  • Alongi, D.M., (۲۰۰۲). Present state and future of the world’s ...
  • Amin, M., (۲۰۱۶). Potensi, eksploitasi, dan konservasi lahan basah Indonesia ...
  • Antoni, Y.; Hartono, D.M.; Suparmoko, M.; Koestoer, R.H., (۲۰۱۶). Water ...
  • Arifanti, V.B.; Kauffman, J.B.; Hadriyanto, D.; Murdiyarso, D.; Diana, R., ...
  • Avramidis, P.; Nikolaou, K.; Bekiari, V., (۲۰۱۵). Total organic carbon ...
  • Balwan, W.K.; Kour, S., (۲۰۲۱). Wetland-an ecological boon for the ...
  • Barus, B. S.; Aryawati, R.; Putri, W. A. E.; Nurjuliasti, ...
  • Basuki, I.; Kauffman, J.B.; Peterson, J.T.; Anshari, G.Z.; Murdiyarso, D., ...
  • Bhardwaj, P., (۲۰۱۹). Types of Sampling in Research. J. Pract. ...
  • Bhomia, R.K.; Mackenzie, R.A.; Murdiyarso, D.; Sasmito, S.D.; Purbopuspito, J., ...
  • BPS-SAR, (۲۰۲۰). Tanjung Raya Subdistrict In Figures. (۱۱۹ pages) ...
  • BPS-SAR, (۲۰۱۵). Tanjung Raya Subdistrict In Figures. (۱۴۸ pages) ...
  • Chen, F.; Lu, S.; Hu, X.; He, Q.; Feng, C.; ...
  • Chen, X.; Meng, X.; Song, Y.; Zhang, B.; Wan, Z.; ...
  • Comer-Warner, S.A.; Nguyen, A.T.Q.; Nguyen, M.N.; Wang, M.; Turner, A.; ...
  • Creed, I. F.; Badiou, P.; Enanga, E.; Lobb, D.A.; Pattison-Williams, ...
  • Dayathilake, D.D.T.L.; Lokupitiya, E.; Wijeratne, V.P.I.S., (۲۰۲۱). Estimating soil carbon ...
  • De Maisonneuve, C. B.; Eisele, S.; Forni, F.; Hamdi; Park, ...
  • Dialynas, Y.G.; Bastola, S.; Bras, R.L.; Billings, S.A.; Markewitz, D.; ...
  • Dialynas, Y.G.; Bastola, S.; Bras, R.L.; Spiotta, E.M.; Silver, W.L.; ...
  • Donato, D.C.; Kauffman, J.B.; Murdiyarso, D.; Kurnianto, S.; Stidham, M.; ...
  • Enters, D.; Lücke, A.; Zolitschka, B., (۲۰۰۶). Effects of land-use ...
  • Fan, J.; Xiao, J.; Wen, R.; Zhang, S.; Wang, X.; ...
  • Friese, A.; Bauer, K.; Glombitza, C.; Ordoñez, L.; Ariztegui, D.; ...
  • Gnanamoorthy, P.; Selvam, V.; Ramasubramanian, R.; Chakraborty, S.; Pramit, D.; ...
  • Gudasz, C.; Ruppenthal, M.; Kalbitz, K.; Cerli, C.; Fiedler, S.; ...
  • Heiri, O.; Lotter, A.F.; Lemcke, G., (۲۰۰۱). Loss on ignition ...
  • Hoogsteen, M.J.J.; Lantinga, E.A.; Bakker, E.J.; Groot, J.C.J.; Tittonell, P.A., ...
  • Howard, J.; Hoyt, S.; Isensee, K.; Telszewski, M.; Pidgeon, E., ...
  • IPCC, (۲۰۲۱). Summary for Policymakers. In: Climate Change ۲۰۲۱: The ...
  • Ji, H.; Han, J.; Xue, J.; Hatten, J.A.; Wang, M.; ...
  • Jiang, C.; Zhang, H.; Wang, X.; Feng, Y.; Labzovskii, L., ...
  • Junaidi; Syandri, H.; Azrita, (۲۰۱۴). Loading and Distribution of Organic ...
  • Kai, T.; Mukai, M.; Araki, K.S.; Adhikari, D.; Kubo, M., ...
  • Kandasamy, S.; Lin, B.; Lou, J-Y.; Kao, S-J.; Chen, C-T.A; ...
  • Kamyab, H.; Goh, R.K.Y.; Wong, J.H.; Lim, J.S.; Khademi, T.; ...
  • Kamyab, H.; Chelliapan, S.; Tavakkoli, O.; Mesbah, M.; Bhutto, J.K.; ...
  • Kauffman, J.B.; Donato, D.C., (۲۰۱۲). Protocols for the measurement, monitoring ...
  • Kusumaningtyas, M.A.; Hutahaean, A.A.; Fischer, H.W.; Perez-Mayo, M.; Ransby, D.; ...
  • Lal, R., (۲۰۰۴). Soil carbon sequestration to mitigate climate change. ...
  • Lei, D.; Jiang, L.; Wu, X.; Liu, W.; Huang, R., ...
  • Li, N.; Shao, T.; Zhu, T.; Long, X.; Gao, X.; ...
  • Lin, Q.; Liu, E.; Zhang, E.; Bindler, R.; Nath, B.; ...
  • Liu, W.; Ma, L.; Abuduwaili, J.; Issanova, G.; Saparov, G., ...
  • Mahapatra, D.M.; Chanakya, H.N.; Ramachandra, T.V., (۲۰۱۲). Role of macrophytes ...
  • Margono, B.A.; Bwangoy, J.R.B.; Potapov, P.V.; Hansen, M.C., (۲۰۱۴). Mapping ...
  • May, L.; Aura, C.M.; Becker, V.; Briddon, C.L.; Carvalho, L.R.; ...
  • Mayer, L.M., (۱۹۹۴). Relationships between mineral surfaces and organic carbon ...
  • Meyers, P.A., (۱۹۹۷). Organic geochemical proxies of paleoceanographic. Org. Geochem., ...
  • Meyers, P.A., (۲۰۰۳). Application of organic geochemistry to paleolimnological reconstruction: ...
  • Minick, K.J.; Mitra, B.; Li, X.; Fischer, M.; Aguilos, M.; ...
  • MERI, (۲۰۱۱). Profile of ۱۵ national priority lakes. Kementerian Lingkungan ...
  • Mitra, S.; Wassmann, R.; Vlek, P.L.G.V., (۲۰۰۵). An appraisal of ...
  • Murdiyarso, D.; Purbopuspito, J.; Kauffman, J.B.; Warren, M.W.; Sasmito, S.D.; ...
  • Musale, A.S.; Desai, D.V.; Sawant, S.S.; Venkat, K.; Anil, A.C., ...
  • Nelson, D.W.; Sommers, L.E., (۱۹۹۶). Total carbon, organic carbon, and ...
  • Nomosatryo, S.; Tjallingii, R.; Schleicher, A.M.; Boli, P.; Henny, C.; ...
  • Novita, N.; Kauffman, J.B.; Hergoualc’h, K.; Murdiyarso, D.; Tryanto, D.H.; ...
  • Page, S.E.; Baird, A.J., (۲۰۱۶). Peatlands and global change: response ...
  • Presidential Regulation of the Republic of Indonesia No. ۶۰ of ...
  • Priyadi, A.; Sutomo; Darma, I.D.P.; Arisana, I.B.K., (۲۰۱۴). Selecting Tree ...
  • Purwanto E.; Wibisono, I.T.C.; Dipa, S.R.; Kurniasari, T.; Wijaya, K.; ...
  • Qing, B.; Liu, Z.; Havens, K., (۲۰۰۷). Environmental issues of ...
  • Quijano, J.C.; Kumar, P.; Drewry, D.T., (۲۰۱۳). Passive regulation of ...
  • Ramanda, R.A.; Noor, D.; Ridwansyah, I., (۲۰۱۹). The potential of ...
  • Ridwansyah, I.; Rustini, H.A.; Yulianti, M.; Apip; Harsono, E., (۲۰۱۹). ...
  • Sakin, E.; Sakin, E.D., (۲۰۱۱). Soil organic carbon stocks of ...
  • Santoni, S.; Bonifacio, E.; Zanini, E., (۲۰۰۱). Indophenol blue colorimetric ...
  • Sasmito, S.D.; Kuzyakov, Y.; Lubis, A.A.; Murdiyarso, D.; Hutley, L.B.; ...
  • Shiels, A.B.; Walker, L.R., (۲۰۱۳). Landslides cause spatial and temporal ...
  • Silviana, S.H.; Saharjo, B.H.; Sutikno, S., (۲۰۲۱). Distribution of carbon ...
  • Siregar, C.A.; Narendra, B.H., (۲۰۲۱). Assessment of soil carbon stocks ...
  • Sufrayogi, D.; Mardiatmoko, G., (۲۰۲۲). Carbon Storage Expectations on Swamp ...
  • Sujarwo, W.; Darma, I.D.P., (۲۰۱۱). Analisis Vegetasi Dan Pendugaan Karbon ...
  • Soejarwo, P.A.; Koeshendrajana, S.; Apriliani, T.; Yuliaty, C.; Deswati, R.H.; ...
  • Stallard, R.F., (۲۰۱۲). Weathering, landscape equilibrium, and carbon in four ...
  • Sulastri; Henny, C.; Santoso, A.B., (۲۰۱۹). Phytoplankton composition and the ...
  • Syakti, A.D.; Idris, F.; Koenawan, C.J.; Asyhar, R.; Apriadi, T., ...
  • Syandri, H.; Junaidi; Azrita; Yunus,T., (۲۰۱۴). State of aquatic resources ...
  • Tasri, E.S.; Karimi, K.; Muslim, I., (۲۰۲۱). The study of ...
  • Twum, E.K.A.; Nii-Annang, S., (۲۰۱۵). Impact of soil compaction on ...
  • Tyson, R.V., (۱۹۹۵). Sedimentary organic matter (First). Springer Netherlands (۶۳۳ ...
  • Uhran, B.; Windham-Myers, L.; Bliss, N.; Nahlik, A.M.; Sundquist, E.T.; ...
  • UNFCCC., (۲۰۰۸). Kyoto protocol reference manual on accounting of emissions ...
  • Virni, B.A.; Kauffman, J.B.; Hadriyanto, D.; Murdiyarso, D.; Diana, R., ...
  • Wang, B.; Waters, C.; Orgill, S.; Cowie, A.; Clark, A.; ...
  • Wang, M.; Houlton, B.Z.; Wang, S.; Ren, C.; van Grinsven, ...
  • Wei, Z.; Du, Z.; Wang, L.; Zhong, W.; Lin, J.; ...
  • Xu, L.; Li, Y.; Ye, W.; Zhang, X., (۲۰۱۹). Terrestrial ...
  • Yu, C.; Li, Z.; Xu, Z.; Yang, Z., (۲۰۲۰). Lake ...
  • Yu, Q.; Wang, F.; Yan, W.; Zhang, F.; Lv, S.; ...
  • Yustiawati; Syawal, M.S.; Rosidah., (۲۰۲۱). Carbon, Nitrogen and C/N ratio ...
  • Zhao, L.; Wu, X.; Wang, Z.; Sheng, Y.; Fang, H.; ...
  • نمایش کامل مراجع