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Original Articles

Effect of organic matter application on methane emission from some Japanese paddy fields

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Pages 599-610 | Received 09 Aug 1989, Published online: 04 Jan 2012

References

  • Abe , K. 1982 . Present soil conditions of cultivated land in Japan . Trop. Agric. Res. Ser. , 15 : 97 – 103 .
  • Balderston , W.L. and Payne , W.J. 1976 . Inhibition of methanogenesis in salt marsh sediments and whole-cell suspensions of methanogenic bacteria by nitrogen oxides . Appl. Environ. Microbiol. , 32 : 264 – 269 .
  • Bingemer , H.G. and Crutzen , P.J. 1987 . The production of methane from solid wastes . J. Geophys. Res. , b92 : 2181 – 2187 . (D)
  • Blake , D.R. and Rowland , F.S. 1988 . Continuing worldwide increase in tropospheric methane, 1978 to 1987 . Science , 239 : 1129 – 1131 .
  • Cicerone , R.J. and Oremland , R.S. 1988 . Biogeochemical aspects of atmospheric methane . Global Blogeochem. Cycles , 2 : 299 – 327 .
  • Cicerone , R.J. and Shetter , J.D. 1981 . Sources of atmospheric methane: measurements in rice paddies and a discuss . J. Geophys. Res. , 86 : 7203 – 7209 . (C)
  • Cicerone , R.J. , Shetter , J.D. and Delwiche , C.C. 1983 . Seasonal variation of methane flux from a California rice paddy . J. Geophys. Res. , 88 : 11022 – 11024 . (C)
  • Craig , H. and Chou , C.C. 1982 . Methane: the record in polar ice core . Geophys. Res. Lett. , 9 : 1221 – 1224 .
  • Dickinson , R.E. and Cicerone , R.J. 1986 . Future global warming from atmospheric trace gases . Nature , 319 : 109 – 115 .
  • Ehhalt , D.H. and Schmidt , U. 1978 . Sources and sinks of atmospheric methane . Pure Appl. Geophys. , 116 : 452 – 464 . FAO production yearbook 1954-1986
  • Fraser , P.J. , Khalil , M.A.K. , Rasmussen , R.A. and Crawford , A.J. 1981 . Trends of atmospheric methane in the southern hemisphere . Geophys. Res. Lett. , 8 : 1063 – 1066 .
  • Graedel , T.E. and McRae , J.E. 1980 . On the possible increase of the atmospheric methane and carbon monoxide concentrations during the last decade . Geophys. Res. Lett. , 7 : 977 – 979 .
  • Harriss , R.C. , Gorham , E. , Sebacher , D.I. , Bartlett , K.B. and Flebbe , A. 1985 . Methane flux from northern peatlands . Nature , 315 : 652 – 654 .
  • Holzapfel-Pschorn , A. and Seiler , W. 1986 . Methane emission during a cultivation period from an Italian rice paddy . J. Geophys. Res. , 91 : 11803 – 11814 . (D)
  • Holzapfel-Pschorn , A. , Conrad , R. and Seiler , W. 1986 . Effect of vegetation on the emission of methane from submerged paddy soil . Plant Soil , 92 : 223 – 233 .
  • Jakobsen , P. , Patric , W.H. , Jr. and Williams , B.G. 1981 . Sulfide and methane formation in soils and sediments . Soil Sci. , 132 : 279 – 287 .
  • Koyama , T. 1963 . Gaseous metabolism ih lake sediments and paddy soils and the production of atmospheric methane and hydrogen . J. Geophys. Res. , 68 : 3971 – 3973 .
  • Minami , K. and Yagi , K. 1988 . Method for measuring methane flux from rice paddies . Jpn. J. Soil Sci. Plant Nutr. , 59 : 458 – 463 (in Japanese) .
  • Ponnamperuma , F.N. 1972 . The chemistry of submerged soils . Adv. Agron. , 24 : 29 – 96 .
  • Ramanathan , V. , Cicerone , R.J. , Singh , H.B. and Kiehl , J.T. 1985 . Trace gas trends and their potential role in climate change . J. Geophys. Res. , 90 : 5547 – 5566 . (D)
  • Rasmussen , R.A. and Khalil , M.A.K. 1981 . Increase in the concentration of atmospheric methane . Atmos. Environ. , 15 : 883 – 886 .
  • Rasmussen , R.A. and Khalil , M.A.K. 1984 . Atmospheric methane in the recent and ancient atmospheres: concentrations, trends, and interhemispheric gradient . J. Geophys. Res. , 89 : 11599 – 11605 . (D)
  • Seiler , W. , Holzapfel-Pschorn , A. , Conrad , R. and Scharffe , D. 1984 . Methane emission from rice paddies . J. Atmos. Chem. , 1 : 241 – 268 .
  • Sheppard , J.C. , Westberg , H. , Hopper , J.F. , Ganesan , K. and Zimmerman , P. 1982 . Inventory of global methane sources and their production rates . J. Geophys. Res. , 87 : 1305 – 1312 . (C)
  • Takai , Y. 1961 . Reduction and microbial metabolism in paddy soils (3) . Nougyou Gijutsu , 19 : 122 – 126 (in Japanese) .
  • Takai , Y. , Wada , H. , Kagawa , H. and Kobo , K. 1974 . Microbial mechanism of effects of water percolation on Eh, iron, and nitrogen transformation in the submerged paddy soils . Soil Sci. Plant Nutr. , 20 : 33 – 45 .
  • Thompson , A.M. and Cicerone , R.J. 1986 . Possible perturbations to atmospheric CO, CH4 and OH. . J. Geophys. Res. , 91 : 10858 – 10864 . (D)
  • Tsutsuki , K. and Ponnamperuma , F.N. 1987 . Behavior of anaerobic decomposition products in submerged soils. - Effects of organic material amendment, soil properties, and temperature . Soil Sci. Plant Nutr. , 33 : 13 – 33 .
  • Yamane , I. and Sato , K. 1963 . Decomposition of plant constituents and gas formation in flooded soil . Soil Sci. Plant Nutr. , 9 : 28 – 31 .
  • Wang , W.C. , Yung , Y.L. , Lacis , A.A. , Mo , J.E. and Hansen , J.E. 1976 . Greenhouse effects due to man-made perturbations of trace gases . Science , 194 : 685 – 690 .
  • Williams , R.T. and Crawford , R.L. 1984 . Methane production in Minnesota peatlands . Appl. Environ. Microbiol. , 47 : 1266 – 1271 .

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