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Urbanization and seasonality strengthens the CO 2 capacity of the Red River Delta, Vietnam

Bibliographic Data

ID15547264
AuthorsJorge Salgado (0000-0003-0670-0334, University of Nottingham), Duc Anh Trinh (0000-0003-4207-8845, Vietnam Atomic Energy Instiute), Trinh Anh Duc, Nga Do (0000-0001-7045-1753, Electric Power University, corresponding author), Do Thu Nga, Virginia N Panizzo (0000-0002-3411-9945, University of Nottingham), Adrian M Bass (0000-0003-3982-6582, University of Glasgow), Ying Zheng (0000-0001-5060-8581, University of Glasgow), F Rebecca Taylor (0000-0002-6175-2631, University of Nottingham), Sarah Taylor (0000-0002-6899-2873), Lucy R Roberts, Lucy Roberts (0000-0003-4095-9120, Aarhus University), J Hubert Lacey (0000-0002-6329-2149, British Geological Survey), Melanie J Leng (0000-0003-1115-5166, University of Nottingham), Suzanne Mcgowan (0000-0003-4034-7140, Netherlands Institute of Ecology)
Year2022
Volume17
Issue10
Pages104052-104052
Publication date2022-10-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueEnvironmental Research Letters (JOURNAL)
Journal identifiersISSN: 1748-9326 • E-ISSN: 1748-9326
PublisherIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/ac9705
OpenAlexW4300817374
LanguageEN
Citations received1
References cited44

Tropical rivers are dynamic CO 2 sources. Regional patterns in the partial pressure of CO 2 ( p CO 2 ) and relationships with other a/biotic factors in densely populated and rapidly developing river delta regions of Southeast Asia are still poorly constrained. Over one year, at 21 sites across the river system in the Red River Delta (RRD), Vietnam, we calculated p CO 2 levels from temperature, pH, and total alkalinity and inter-linkages between p CO 2 and phytoplankton, water chemistry and seasonality were then assessed. The smaller, more urbanized, and polluted Day River had an annual median p CO 2 of 5000 ± 3300 μ atm and the larger Red River of 2675 ± 2271 μ atm. p CO 2 was 1.6 and 3.2 times higher during the dry season in the Day and Red rivers respectively than the rainy season. Elevated p CO 2 levels in the Day River during the dry season were also 2.4-fold higher than the median value (2811 ± 3577 μ atm) of calculated and direct p CO 2 measurements in >20 sub/tropical rivers. By further categorizing the river data into Hanoi City vs. other less urban-populated provinces, we found significantly higher nutrients, organic matter content, and riverine cyanobacteria during the dry season in the Day River across Hanoi City. Forward selection also identified riverine cyanobacteria and river discharge as the main predictors explaining p CO 2 variation in the RRD. After accounting for the shared effects (14%), river discharge alone significantly explained 12% of the p CO 2 variation, cyanobacteria uniquely a further 21%, while 53% of the p CO 2 variance was unexplained by either. We show that the urbanization of rivers deltas could result in increased sources of riverine p CO 2 , water pollution, and harmful cyanobacterial blooms. Such risks could be mitigated through water management to increase water flows in problem areas during the dry season

Alkalinity · Biology · Delta · Dry season · Geography · Hydrology (agriculture · Nutrient · Phytoplankton · River delta · Seasonality · Urbanization · Wet season · Chemistry · Environmental Science · Marine and coastal ecosystems · Marine Biology and Ecology Research · Ocean Acidification Effects and Responses · Ecology · Geology

  • Dammed deltas

    Open Access•Suzanne Mcgowan, Andy Large et al.•One Earth•2023

  • Global Carbon Budget 2020

    Open Access•Pierre Friedlingstein, Mike O’Sullivan et al.•Earth System Science Data•2020

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  • Application of excess carbon dioxide partial pressure (EpCO 2 ) to the assessment of trophic state of surface water in the Red River Delta of Vietnam

    Duc Anh Trinh, Trinh Anh Duc et al.•International Journal of…•2009

  • Fluvial carbon fluxes in tropical rivers

    Open Access•Ting‐Hsuan Huang, Yu-Han Fu et al.•Current Opinion in Environmental…•2012

Unique citing works1
Citations per year0,33
Citation span2023 - 2023 (1)
Citation velocityhistorical
Highly citedNo
Citation typesNeutral: 1

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