Impact of peatlands on carbon dioxide (CO2) emissions from the Rajang River and Estuary, Malaysia

被引:17
|
作者
Mueller-Dum, Denise [1 ]
Warneke, Thorsten [1 ]
Rixen, Tim [2 ,3 ]
Mueller, Moritz [4 ]
Baum, Antje [2 ]
Christodoulou, Aliki [1 ]
Oakes, Joanne [5 ]
Eyre, Bradley D. [5 ]
Notholt, Justus [1 ]
机构
[1] Univ Bremen, Inst Environm Phys, Otto Hahn Allee 1, D-28359 Bremen, Germany
[2] Leibniz Ctr Trop Marine Res, Fahrenheitstr 6, D-28359 Bremen, Germany
[3] Univ Hamburg, Inst Geol, Bundesstr 55, D-20146 Hamburg, Germany
[4] Swinburne Univ Technol, Fac Engn Comp & Sci, Jalan Simpang Tiga, Kuching 93350, Sarawak, Malaysia
[5] Southern Cross Univ, Sch Environm Sci & Engn, Ctr Coastal Biogeochem, Lismore, NSW 2480, Australia
关键词
DISSOLVED INORGANIC CARBON; ORGANIC-CARBON; GAS-EXCHANGE; PARTIAL-PRESSURE; TROPICAL PEATLAND; FLUXES; SARAWAK; WATER; MATTER; DELTA;
D O I
10.5194/bg-16-17-2019
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Tropical peat-draining rivers are known as potentially large sources of carbon dioxide (CO2) to the atmosphere due to the high loads of carbon they receive from surrounding soils. However, not many seasonally resolved data are available, limiting our understanding of these systems. We report the first measurements of carbon dioxide partial pressure (pCO(2)) in the Rajang River and Estuary, the longest river in Malaysia. The Rajang River catchment is characterized by extensive peat deposits found in the delta region, and by human impact such as logging, land use and river damming. pCO(2) averaged 2540 +/- 189 mu atm during the wet season and 2350 +/- 301 mu atm during the dry season. Using three different parameterizations for the gas transfer velocity, calculated CO2 fluxes to the atmosphere were 1.5 (0.5-2.0) g Cm-2 d(-1) (mean, minimum - maximum) during the wet season and 1.7 (0.6-2.6) g Cm-2 d(-1) during the dry season. This is at the low end of reported values for Southeast Asian peat-draining rivers, but similar to values reported for Southeast Asian rivers that do not flow through peat deposits. In the Rajang River, peatlands probably do not contribute much to the CO2 flux due to the proximity of the peatlands to the coast, which limits the opportunity for degradation of organic C during transport. Thus, we suggest that peat coverage is, by itself, insufficient as the sole predictor of CO2 emissions from peat-draining rivers, and that other factors, like the spatial distribution of peat in the catchment and pH, also need to be considered.
引用
收藏
页码:17 / 32
页数:16
相关论文
共 50 条
  • [1] Carbon dioxide and methane emissions from the Yukon River system
    Striegl, Robert G.
    Dornblaser, M. M.
    McDonald, C. P.
    Rover, J. R.
    Stets, E. G.
    GLOBAL BIOGEOCHEMICAL CYCLES, 2012, 26
  • [2] Net heterotrophy and low carbon dioxide emissions from biological processes in the Yellow River Estuary, China
    Shen, Xiaomei
    Su, Meirong
    Sun, Tao
    Lv, Sihao
    Dang, Zhi
    Yang, Zhifeng
    WATER RESEARCH, 2020, 171
  • [3] Dissolved carbon export and CO2 outgassing from the lower Mississippi River - Implications of future river carbon fluxes
    Reiman, J. H.
    Xu, Y. Jun
    JOURNAL OF HYDROLOGY, 2019, 578
  • [4] CO2 emissions from a temperate drowned river valley estuary adjacent to an emerging megacity (Sydney Harbour)
    Tanner, E. L.
    Mulhearn, P. J.
    Eyre, B. D.
    ESTUARINE COASTAL AND SHELF SCIENCE, 2017, 192 : 42 - 56
  • [5] Carbon biogeochemistry and CO2 emissions in a human impacted and mangrove dominated tropical estuary (Can Gio, Vietnam)
    David, Frank
    Meziane, Tarik
    Nhu-Trang Tran-Thi
    Vinh Truong Van
    Nguyen Thanh-Nho
    Taillardat, Pierre
    Marchand, Cyril
    BIOGEOCHEMISTRY, 2018, 138 (03) : 261 - 275
  • [6] Diel Variability of CO2 Emissions From Northern Lakes
    Rudberg, D.
    Duc, N. T.
    Schenk, J.
    Sieczko, A. K.
    Pajala, G.
    Sawakuchi, H. O.
    Verheijen, H. A.
    Melack, J. M.
    MacIntyre, S.
    Karlsson, J.
    Bastviken, D.
    JOURNAL OF GEOPHYSICAL RESEARCH-BIOGEOSCIENCES, 2021, 126 (10)
  • [7] Current and future CO2 emissions from drained peatlands in Southeast Asia
    Hooijer, A.
    Page, S.
    Canadell, J. G.
    Silvius, M.
    Kwadijk, J.
    Wosten, H.
    Jauhiainen, J.
    BIOGEOSCIENCES, 2010, 7 (05) : 1505 - 1514
  • [8] Carbon dioxide emissions from the Geheyan Reservoir over the Qingjiang River Basin, China
    Tan De-bao
    Luo Teng-fei
    Zhao Deng-zhong
    Li Chong
    ECOHYDROLOGY & HYDROBIOLOGY, 2019, 19 (04) : 499 - 514
  • [9] Emission of CO2 and its related carbonate system dynamics in a hotspot area during winter and summer: The Changjiang River estuary
    Li, Bing-Han
    Zhao, Hai-Long
    Gong, Jiang-Chen
    Wu, Xi
    Liu, Chun-Ying
    Hu, Jing-Wen
    Yang, Gui-Peng
    MARINE ENVIRONMENTAL RESEARCH, 2024, 198
  • [10] River Corridor Sources Dominate CO2 Emissions From a Lowland River Network
    Kirk, Lily
    Cohen, Matthew J.
    JOURNAL OF GEOPHYSICAL RESEARCH-BIOGEOSCIENCES, 2023, 128 (01)