Application of the Navigational Air-Sea Methane Exchange Flux Observation System in the Qiongdongnan Basin of the Northern South China Sea
Abstract
1. Introduction
2. Materials and Methods
2.1. System Composition
2.2. Calculation Method
3. Observation Methods and Data
3.1. Fixed-Point Time Series Observation
3.2. Ship-Based Simultaneous Observation
4. Conclusions and Prospects
Author Contributions
Funding
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- De la Paz, M.; Huertas, I.E.; Flecha, S.; Ríos, A.F.; Pérez, F.F. Nitrous oxide and methane in Atlantic and Mediterranean waters in the Strait of Gibraltar: Air-sea fluxes and interbasin exchange. Prog. Oceanogr. 2015, 138, 18–31. [Google Scholar] [CrossRef]
- Lelandais, L.; Xueref-Remy, I.; Riandet, A.; Blanc, P.E.; Armengaud, A.; Oppo, S.; Yohia, C.; Ramonet, M.; Delmotte, M. Analysis of 5.5 years of atmospheric CO2, CH4, CO continuous observations (2014–2020) and their correlations, at the Observatoire de Haute Provence, a station of the ICOS-France national greenhouse gases observation network. Atmos. Environ. 2022, 277, 119020. [Google Scholar] [CrossRef]
- Baharudin, L.; Rahmat, N.; Othman, N.H. Formation, control, and elimination of carbon on Ni-based catalyst during CO2 and CH4 conversion via dry reforming process: A review. J. CO2 Util. 2022, 61, 102050. [Google Scholar] [CrossRef]
- Wang, S.; Xu, J.; Fan, S.; Wang, Y.; Lang, X.; Yu, C. Atmospheric preservation of CH4 hydrate above ice point: A potential application for high-density natural gas storage under moderate conditions. Fuel 2021, 293, 120482. [Google Scholar] [CrossRef]
- Zhang, Y.; Zhao, H.D.; Zhai, W.D. Enhanced methane emissions from oil and gas exploration areas to the atmosphere. The central Bohai Sea. Mar. Pollut. Bull. 2014, 81, 157–165. [Google Scholar] [CrossRef] [PubMed]
- Zhang, B.; Chen, G.Q. Methane emissions by Chinese economy: Inventory and embodiment analysis. Energy Policy 2010, 38, 4304–4316. [Google Scholar] [CrossRef]
- Schmale, O.; Schneider, J.D.; Gülzow, W.; Nausch, G.; Waniek, J.J.; Rehder, G. The distribution of methane in the water column of the Baltic Sea. Geophysic Research Letter. 2010, 37, L12604. [Google Scholar] [CrossRef]
- Bange, H.W.; Bergmann, K.; Hansen, H.P. Dissolved methane during hypoxia events at the Boknis Eck time series station (Eclernförde Bay, SW Baltic Sea). Biogeosciences 2010, 7, 1279–1284. [Google Scholar] [CrossRef]
- Breitburg, D.; Ievin, L.A.; Oschlies, A.; Grégoire, M.; Chavez, F.P.; Conley, D.J.; Garcon, V.; Gilbert, D.; Gutiérrez, D.; Isensee, K.; et al. Declining oxygen in the global ocean and coastal waters. Science 2018, 359, 1–11. [Google Scholar] [CrossRef]
- Yu, X.K.; He, Q.; Li, Y.B.; He, H.; Zhang, J. Atomic fluorescence spectrometric detection of methylmercury in seawater at sub ng L-1 level by UV-induced atomization of gaseous methylethylmercury after NaBEt 4 derivatization with purge and trap preconcentration and gas chromatography separation. Spectrochim. Acta Part B At. Spectrosc. 2019, 152, 1–5. [Google Scholar] [CrossRef]
- Fan, Z.Y.; Zhao, J.M.; Liu, X.Y.; Luo, B.; Zhou, L.; Nie, D.-P.; Wu, Y.-Y.; Kang, Z.-H.; Tao, W.-L. Determination of barium sulfate in barite ore by phase conversion–partial pressure-corrected headspace gas chromatography. J. Chromatogr. A 2022, 1683, 463547. [Google Scholar] [CrossRef] [PubMed]
- Wei, Y.B.; Lu, S.F.; Li, J.Q.; Yu, R.; Li, W.; Cheng, F.; Fu, C.; Zhao, T.; Feng, W.; Song, Z. Impacts of gas pressure on carbon isotope fractionation during methane degassing—An experimental study on shales from Wufeng and Longmaxi Formations in southeast Sichuan, China. Mar. Pet. Geol. 2021, 128, 105001. [Google Scholar] [CrossRef]
- Yu, X.S.; Li, I.L.; Hu, Y.L. The development of in situ sensors for dissolved methane measurement in the sea. Adv. Earth Sci. 2011, 26, 1030–1037. [Google Scholar]
- Armando, S.J.; Martinez, C.K.; Amy, S. A new method for field measurement of dissolved methane in water using infrared tunable diode laser absorption spectroscopy. Limnol. Oceanogr. Methods 2012, 10, 560–567. [Google Scholar]
- Gülzow, W.; Rehder, G.; Schneider, J. One year of continuous measurements constraining methane emissions from the Baltic Sea to the atmosphere using a ship of opportunity. Biogeosciences 2013, 10, 81–99. [Google Scholar] [CrossRef]
- Crosson, E.R. A cavity ring-down analyzer for measuring atmospheric levels of methane, carbon dioxide, and water vapor. Appl. Phys. 2018, 92B, 403–408. [Google Scholar] [CrossRef]
- Fang, S.X.; Zhou, L.X.; Masarie, K.A. Study of atmospheric CH4 mole fractions at three WMO/GAW stations in China. J. Geophys. Res. Atmos. 2013, 118, 1–13. [Google Scholar] [CrossRef]
- Liu, M.; Meng, Z.Q.; She, Q.N.; Zhu, X.; Wei, N.; Peng, X.; Xu, Q. Spatial variability and determinants of atmospheric methane concentrations in the metropolitan city of Shanghai, China. Atmos. Environ. 2019, 214, 116834. [Google Scholar] [CrossRef]
- Seyfferth, A.L.; Bothfeld, F.; Vargas, R.; Stuckey, J.W.; Wang, J.; Kearns, K.; Michael, H.A.; Guimond, J.; Yu, X.; Sparks, D.L. Spatial and temporal heterogeneity of geochemical controls on carbon cycling in a tidal salt marsh. Geochim. Et Cosmochim. Acta 2020, 282, 1–18. [Google Scholar] [CrossRef]
- Zang, K.; Zhang, G.; Zhao, H.; Xu, X.; Zheng, N.; Wang, J.; Zhang, G. Multiple factors dominate the distribution of methane and its sea-to-air flux in the Bohai Sea in summer and autumn of 2014. Mar. Pollut. Bull. 2020, 154, 111049. [Google Scholar] [CrossRef]
- Ye, W.W.; Zhang, G.L.; Zhu, Z.Y. Methane distribution and sea-to-air flux in the East China Sea during the summer of 2013: Impact of hypoxia. Deep Sea Res. II 2016, 124, 74–83. [Google Scholar] [CrossRef]
- Ye, W.; Zhang, G.; Zheng, W.; Zhang, H.; Wu, Y. Methane distributions and sea-to-air fluxes in the Pearl River Estuary and the northern South China sea. Deep Sea Res. 2019, 167, 34–45. [Google Scholar] [CrossRef]
- Intergovernmental Panel on Climate Change. Physical Science Basis: Contribution of Working Group I to the Fifth Assessment Report; Cambridge University Press: Cambridge, UK, 2014. [Google Scholar]
- Yang, J.; Zhang, G.L.; Zheng, L.X. Seasonal variation of fluxes and distributions of dissolved methane in the North Yellow Sea. Cont. Shelf Res. 2010, 30, 187–192. [Google Scholar] [CrossRef]
- Bai, Y.; Song, H.B.; Guan, Y.X. Structural characteristics and genesis of pockmarks in the northwestern South China Sea derived from reflective seismic and multibean data. Chin. J. Geophys. 2014, 57, 2208–2222. (In Chinese) [Google Scholar]
- Chen, J.X.; Guan, Y.X.; Song, H.B. Distribution characteristics and geological implications of pockmarks and mud volcanoes in the northern and western continental margins of the South China Sea. Chin. J. Geophys. 2015, 58, 919–938. (In Chinese) [Google Scholar]
- Chen, J.X.; Bai, Y.; Guan, Y.X. Geophysical analysis of abnormal seismic(oceanography) reflection characteristics of oceanic bottom boundary layer. Chin. J. Geophys. 2016, 59, 2148–2161. (In Chinese) [Google Scholar]
- Trehu, A.M.; Flemings, P.B.; Bangs, N.L. Feeding methane vents and gas hydrate deposits at south Hydrate Ridge. Geophys. Res. Lett. 2004, 31, 845–862. [Google Scholar] [CrossRef]
- ICPP. Climate Change 2013: The Physical Science Basis: Working Group I Contribution to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change; Cambridge University Press: Cambridge, UK, 2013. [Google Scholar]
- WMO Greenhouse Gas Bulletin: The State of Greenhouse Gases in the Atmosphere Based on Global Observations through 2016. Available online: http://www.wmo.int/pages/prog/arep/gaw/ghg/ghgbull06_en.html (accessed on 30 October 2017).
- Wiesenburg, D.A.; Guinasso, N.L. Equilibrium solubilities of methane, carbon monoxide, and hydrogen in water and seawater. J. Chem. Eng. Data 1979, 24, 356–360. [Google Scholar] [CrossRef]
- Wanninkhof, R. Relationship between wind speed and gas exchange over the ocean revisited. Limnol. Oceanogr. Methods 2014, 12, 351–362. [Google Scholar] [CrossRef]
- Liss, P.S.; Merlivat, L.G. Air-sea gas exchange rates: Introduction and synthesis. In The Role of Air-Sea Exchange in Geochemical Cycling; Springer: Dordrecht, The Netherlands, 1986; pp. 113–127. [Google Scholar]
- Wanninkhof, R. Relationship between wind speed and gas exchange over the ocean. J. Geophys. Res. Ocean. 1992, 97, 7373–7382. [Google Scholar] [CrossRef]
- Hsu, S.A.; Meindl, E.A.; Gilhousen, D.B. Determining the Power-Law Wind-Profile Exponent under Near-Neutral Stability Conditions at Sea. J. Appl. Meteorol. 2010, 33, 757–765. [Google Scholar] [CrossRef]
- Borges, A.V.; Royer, C.; Martin, J.L.; Champenois, W.; Gypens, N. Response of marine methane dissolved concentrations and emissions in the Southern North Sea to the European 2018 heatwave. Cont. Shelf Res. 2019, 190, 104004. [Google Scholar] [CrossRef]
- Feng, B.X.; Liu, H.L.; Lin, P.F.; Wang, Q. Estimation of the surface heat budget over the South China Sea. Atmos. Ocean. Sci. Lett. 2016, 9, 191–197. [Google Scholar] [CrossRef]
- Zhang, G.L.; Zhang, J.; Kang, Y.B. Distributions and fluxes of dissolved methane in the East China Sea and the Yellow Sea in spring. J. Geophys. Res. 2004, 109, C07011. [Google Scholar] [CrossRef]
- Li, P.P. Methane and Nitrous oxide in the Yellow River Estuary, the Yellow Sea and the Bohai Sea. Master’s Thesis, Ocean University of China, Qingdao, China, 2010; pp. 55–58. [Google Scholar]
- Yu, H.; Zhang, G.L.; Zhao, Y.C.; Liu, S.-M. Distributions and sea-to-air fluxes of nitrous oxide in the coastal and shelf waters of the northwestern South China Sea. Estuar. Coast. Shelf Sci. 2013, 133, 32–44. [Google Scholar]
- Tseng, H.-C.; Chen, C.-T.; Borges, A.V.; DelValls, T.A.; Lai, C.-M.; Chen, T.-Y. Distributions and Sea-to-air Fluxes of Nitrous Oxide in the South China Sea and the West Philippines Sea. Deep Sea Res. Part I Oceanogr. Res. Pap. 2016, 115, 131–144. [Google Scholar] [CrossRef]
- Rhee, T.S.; Kettle, A.J.; Andreae, M.O. Methane and nitrous oxide emissions from the ocean: A reassessment using basin-wide observations in the Atlantic. J. Geophys. Res. 2009, 114, 1192. [Google Scholar] [CrossRef]
References | k Calculate Formula | |
---|---|---|
Liss et al. | 0 < ≤ 3.6 | |
3.6 < ≤ 13 | ||
13 < | ||
Wanninkhof | short-term wind speed |
Research Location | Parameters (Unit) | Range of Changes | Average |
---|---|---|---|
The Qiongdongnan basin Surface seawater | Temperature (°C) | 25.93~27.95 | 27.15 |
Salinity (PSU) | 33.49~33.92 | 33.68 | |
Dissolved oxygen (mg/L) | 6.20~6.98 | 6.65 | |
PH | 8.15~8.32 | 8.19 |
Region | Air–Sea Flux (μmol/m2/d) | References |
---|---|---|
The east China sea | −0.04~3.3 | [38] |
The yellow China sea | 0.31~1.31 | [38] |
The south yellow China sea | −0.1~5.6 | [39] |
Northwestern South China Sea | 1.1 ± 1.0 | [40] |
The West Philippines Sea | −1.7 ± 3.9 | [41] |
South Bohai Sea | 0.88 ± 1.36 | [5] |
Global ocean means | 0.2~0.3 | [42] |
Global ocean nearshore average | 1~2 | [42] |
The Qiongdongnan Basin of the northern South China Sea | −0.00164~−0.00395 *a −0.001~−0.0023 *b | This paper |
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Zhong, C.; Lu, J.; Kang, D.; Liang, Q. Application of the Navigational Air-Sea Methane Exchange Flux Observation System in the Qiongdongnan Basin of the Northern South China Sea. Energies 2023, 16, 507. https://doi.org/10.3390/en16010507
Zhong C, Lu J, Kang D, Liang Q. Application of the Navigational Air-Sea Methane Exchange Flux Observation System in the Qiongdongnan Basin of the Northern South China Sea. Energies. 2023; 16(1):507. https://doi.org/10.3390/en16010507
Chicago/Turabian StyleZhong, Chao, Jing’an Lu, Dongju Kang, and Qianyong Liang. 2023. "Application of the Navigational Air-Sea Methane Exchange Flux Observation System in the Qiongdongnan Basin of the Northern South China Sea" Energies 16, no. 1: 507. https://doi.org/10.3390/en16010507
APA StyleZhong, C., Lu, J., Kang, D., & Liang, Q. (2023). Application of the Navigational Air-Sea Methane Exchange Flux Observation System in the Qiongdongnan Basin of the Northern South China Sea. Energies, 16(1), 507. https://doi.org/10.3390/en16010507