Diel Change of Methane Emission through Rice Plant under Different Water Management and Organic Amendment

물 관리와 유기물 시용이 다른 논에서 벼 식물체를 통한 메탄 배출의 일변화

  • Shin, Yong-Kwang (Division of Agricultural Environment, National Institute of Agricultural Science and Technology) ;
  • Lee, Yang-Soo (Division of Agricultural Environment, National Institute of Agricultural Science and Technology) ;
  • Koh, Mun-Hwan (Division of Agricultural Environment, National Institute of Agricultural Science and Technology) ;
  • Eom, Ki-Cheol (Division of Agricultural Environment, National Institute of Agricultural Science and Technology)
  • 신용광 (농업과학기술원 농업환경부) ;
  • 이양수 (농업과학기술원 농업환경부) ;
  • 고문환 (농업과학기술원 농업환경부) ;
  • 엄기철 (농업과학기술원 농업환경부)
  • Received : 2003.01.20
  • Accepted : 2003.02.06
  • Published : 2003.02.28

Abstract

To characterize diel pattern of methane transport via rice plant, methane emission was measured on specific days in rice growing stages; tillering, meiotic, heading and harvest stages, from a paddy under different water management and organic amendments. Methane emission was monitored every two hours a day from chambers with and without rice plants. Proportion of the rice plant-mediated methane emission at different stage increased till the maximum growth of LAI and dry weight, and decreased thereafter. The proportion of methane emission through rice plants on June 18-19 at tillering stage was 38.4, 36.5 and 64.3 percent for NPK, Rice straw compost, RSC, and rice straw on February, RS2, respectively. The proportion on July 30-31 at meiotic stage was 70.4, 74.3 and 74.4 percent for NPK, RSC and RS2, respectively. The proportion on August 20-21 at heading stage was 80.1, 84.5 and 74.8 percent for NPK, RSC and RS2, respectively. The proportion on September 28-29 at harvest stage was 69.9, 65.9 and 64.4 percent for NPK, RSC and RS2, respectively.

물관리와 유기물 시용이 상이한 벼논에서 메탄 배출을 측정하였다. 벼 식물체를 통한 메탄수송을 밝히려고 벼 생육기간중 분얼기, 감수분열기, 출수기, 수확기중 각 1일씩 주야로 2시간 간격으로 벼를 심은 chamber와 벼를 심지 않은 chamber에서 메탄가스 배출을 측정하였다. 상이한 생육기에서 벼 식물체를 통한 메탄 배출은 엽면적 지수, 건물중이 최대로 될 때까지는 증가하였지만 그 후로는 감소하였다. 6월 18-19일 (분얼기)에 벼 식물체가 매개한 메탄 배출은 NPK구, RSC구 (볏짚퇴비를 5월에 시응한 구). RS2구 (볏짚을 2월에 시용한 구)에서 각기 38.4%, 36.5%, 64.3%였었다. 7월 30일-31일 (감수분열기)에 벼 식물체가 매개한 메탄 배출은 NPK구, RSC구, RS2구에서 각기 70.4%, 74.3%, 74.4%였었다. 8월 20일-21일 (출수기)에 벼 식물체가 매개한 메탄 배출은 NPK구, RSC구, RS2구에서 각기 80.1%, 84.5%, 74.8%였었다. 9월 28일-29일 (수확기)에 벼 식물체가 매개한 메탄 배출은 NPK구, RSC구, RS2구에서 각기 69.9%, 65.9%, 64.4%였었다.

Keywords

References

  1. Bolle, H.J., W. Seiler, and B. Bolin. 1986. Other greenhouse gas and aerosols. and aerosols. In:The greenhouse Effect. Climate Change and Ecosystems: 157-198, New York
  2. Cicerone, R.L., and J.D. Shetter. 1981. Sources of atmospheric methane: measurements in rice paddies and a discussion. J. Geophys. Res. 86:7203-7209 https://doi.org/10.1029/JC086iC08p07203
  3. Holzapfel-Pschom, A., R. Conrad, and W. Seiler. 1985.Production, oxidation, and emission of methane in ricepaddies. FEMS Microbiol. Ecol. 31: 149-158
  4. Inubushi, K., Y. Muramatsu, D. Taja, and M. Umebayashi.1990. Control of methane from paddy soil. Transaction14th International Congress of Soil Sci. 2:431-432, Kyoto, Japan
  5. Neue, H.U., R. Wassmann, H.K. Kludze, B. Wang, and R.S. Lantin. 1997. Factors and processes controlling methane emissions from rice fields. Nutr. Cycl. Agroecosys. 49:111 117 https://doi.org/10.1023/A:1009714526204
  6. Rasmussen, R.A., and M.A.K. Khalil. 1986. Atmospheric trace gases: Trends and distribution over the last decade. Science 32.1623-1624
  7. Schutz, H., A. Holzapfel-Pschorn. R. Conrad, H. Rennenberg, and W. Seiler. 1989. A three-year continuous record on the influence of daytime season and fertilizer treatment on methane emission rates from an Italian rice paddy field. J. Geophys. Res. 94:16405-16416 https://doi.org/10.1029/JD094iD13p16405
  8. Seiler, W., A. Holzapfel-Pschorn, R. Conrad, and D. Scharffe. 1984. Methane emission from rice paddies. J Atmos-Chem. 1:241-268
  9. Shin, Y.K., Y.S. Lee, S.H. Yun, and M.E. Park. 1995. A simplified closed static chamber method for measuring methane flux in paddy soils. J. Korean Soc. Soil Sci. Fert. 28:183-190
  10. Shin, Y.K, S.H. Yun, M.E. Park, and B.L. Lee. 1996. Mitigation options for methane emission from rice fields in Korea. Ambio 25(4):289-291
  11. Shin, Y.K., and S.H. Yun. 2000. Varietal differences in methane emission from Korean rice cultivars. Nutr. Cycl. in Agroecos. 58:315-319 https://doi.org/10.1023/A:1009819324897
  12. Thompson A.M., and R.J. Cicerone. 1986. Possible perturbations to atmospheric CO, $CH_{4}$ and OH. J. Geophys. Res.91(D):10858-10864
  13. Wassmann, R., H.U. Neue, C. Bueno, R.S. Lantin, M.C.R. Alberto, L.V. Buendia, K. Bronson, H. Papen, and H. Rennenberg. 1998. Methane production capacities of different rice soils derived from inherent and exogenous substrates. PlantSoil 203:227-237 https://doi.org/10.1023/A:1004357411814