References
- Alberto MCR, R Wassmann, R Buresh, JR Quilty, TQ Correa, JM Sandro and CAR Conteno. 2014. Measuring methane flux from irrigated rice fields by eddy covariance method using open-path gas analyzer. Field Crop Res. 160:12-21.
- Baldocchi D, M Detto, O Sonnentag, J Verfaillie, YA Teh, W Silver and NM Kelly. 2012. The challenges of measuring methane fluxes and concentrations over a peatland pasture. Agric. For. Meteorol. 153:177-187.
- Chaichana N, SD Bellingrath-Kimura, S Komiya, Y Fuji, K Noborio, O Dietrich and T Pakoktom. 2018. Comparing of closed chamber and eddy covariance methods to improve the understanding of methane fluxes from rice paddy fields in Japan. Atmosphere 9:356-372.
- Chen ZL, DB Li, KS Shao and BJ Wang. 1993. Features of methane emission from rice paddy fields in Beijing and Nanjing. Chemosphere 26:239-248.
- Choi TJ, J Kim and JI Yun. 1999. On using the eddy covariance method to study the interaction between agro-forest ecosystems and the atmosphere. Korean J. Agric. For. Meteorol. 1:60-71.
- Christensen TR, S Jonasson, TV Callaghan and M Havstrom. 1995. Spatial variation in high-latitude methane flux along a transect across Siberian and European tundra environments. J. Geophys. Res. 100:21035-21045.
- Foken T, M Gockede, M Mauder, L Mahrt, B Amiro and W Munger. 2004. Post-field data quality control. pp. 181-208. In Handbook of Micrometeorology. Springer, Dordrecht.
- GIR. 2017. National greenhouse gas inventory report of Korea. Greenhouse Gas Inventory and Research Center of Korea. Ministry of Environment.
- Ge HX, HS Zhange, XU Cai, Y Song and L Kang. 2018. The characteristics of methane flux from an irrigated rice farm in East China measured using the eddy covariance method. Agric. For. Meteorol. 249:228-238.
- Haslwanter A, A Hammerle and G Wohlffahrt. 2009. Openpath vs. closed-path eddy covariance measurements of the net ecosystem carbon dioxide and water vapour exchange: A long-term perspective. Agric. For. Meteorol. 149:291-302.
- Hadi K, K Inubushi and K Yagi. 2010. Effect of water management on greenhouse gas emissions and microbial properties of paddy soils in Japan and Indonesia. Paddy Water Environ. 8:319-324.
- IAEA. 1992. Closed on measurement of methane and nitrous oxide emissions from agriculture. International Atomic Energy Agency. IAEA-TECDOC-674.
- IPCC. 1996. IPCC guidelines for national greenhouse gas inventories. Intergovernmental Panel on Climate Change.
- Kamal JC and JJ Finnigan. 1994. Atmospheric boundary layer flow: their structure and measurement. p. 289. Oxford University Press.
- Kang NG, JY Yun, MSA Talucder, MK Moon, MS Kang, KM Shim and J Kim. 2015. Corrections on CH4 fluxes measured in a rice paddy by eddy covariance method with an open-path wavelength modulation spectroscopy. Korean J. Agric. For. Meteorol. 17:15-24.
- Kim YU, MSA Talucder, MS Kang, SM Shim, NG Kang and J Kim. 2016. Interannual variations in methane emission from an irrigated rice paddy caused by rainfalls during the aeration period. Agric. Ecosyst. Environ. 223:67-75.
- McDermitt D, G Burda, L Xu, T Anderson, A Komissarov, B Riensche, J Schedlbauer, G Starr, D Zona, W Oechel, S Oberbauer and S Hastings. 2011. A new low-power openpath instrument for measuring methane flux by eddy covariance. Appl. Phys. B-Lasers Opt. 102:391-405.
- Minamikawa K and N Sakai. 2006. The practical use of water management based on soil redox potential for decreasing methane emission from a paddy field in Japan. Agric. Ecosyst. Environ. 116:181-188.
- Miyata A, R Leuning, OT Denmead, J Kim and Y Harazono. 2000. Carbon dioxide and methane fluxes from an intermittently flooded paddy field. Agric. For. Meteorol. 102:287-303.
- Peyron M, C Bertora, S Pelisserri, D Said-Pullicino, L Celi, E Miniotti, M Romani and D Sacco. 2016. Greenhouse gas emissions as affected by different water management practices in temperate rice paddies. Agric. Ecosyst. Environ. 232:17-28.
-
Song C, X Xu, H Tian and Y Wang. 2009. Ecosystem-atmosphere exchange of
$CH_4$ and$N_2O$ and ecosystem respiration in wetland in the Sanjiang plain, Northeastern China. Glob. Change Biol. 9:1-11. - Stocker TF, D Qin, GK Plattner, MMB Tignor, SK Allen, J Boschung, A Nauels, Y Xia, V Bex and PM Midgley. 2014. Climate change 2013: the physical science basis. Cambridge University Press.
- Tyagi L, B Kumari and SN Singh. 2010. Water management-A tool methane mitigation from irrigated paddy fields. Sci. Total Environ. 408:1085-1090.
- Wang JM, JG Murphy, JA Geddes, CL Winsborough, N Basiliko and SC Thomas. 2013. Methane fluxes measured by eddy covariance and static chamber techniques at a temperate forest in central ontario Canada. Biogeosciences 10:4317-4382.
- Wassmann R, HU Neue, RS Latin, L Makarim, N Chareonsilp, LV Buendia and H Rennenberg. 2000. Characterization of methane emissions from rice fields in Asia. II. Differences among irrigated, rainfed, and deepwater rice. Nutr. Cycl. Agroecosyst. 58:13-22.
- Zheng CT, JQ Huang, WL Ye, M Lv, JM Dang, TS Cao, C Chen and YD Wang. 2013. Demonstration of a portable near-infrared CH4 detection sensor based on tunable diode laser absorption spectroscopy. Infrared Phys. Technol. 61:306-312.