2012
DOI: 10.1016/j.agee.2012.07.026
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Considering winter cover crop selection as green manure to control methane emission during rice cultivation in paddy soil

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Cited by 81 publications
(33 citation statements)
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References 24 publications
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“…To compare grain yield and GHG emissions in field studies, many researchers have used yield-scaled GHG as an indicator of the global warming impact of rice production (Mosier et al 2006;van Groenigen et al 2010;Kim et al 2012Kim et al , 2013. As suggested by Grassini and Cassman (2012), the yield-scaled metric is increasingly used to provide a measure of agronomic efficiency that begins to address both climate change and future food supply concerns.…”
Section: Yield-scaled Methane Emissionmentioning
confidence: 99%
“…To compare grain yield and GHG emissions in field studies, many researchers have used yield-scaled GHG as an indicator of the global warming impact of rice production (Mosier et al 2006;van Groenigen et al 2010;Kim et al 2012Kim et al , 2013. As suggested by Grassini and Cassman (2012), the yield-scaled metric is increasingly used to provide a measure of agronomic efficiency that begins to address both climate change and future food supply concerns.…”
Section: Yield-scaled Methane Emissionmentioning
confidence: 99%
“…As drenagens realizadas na área experimental para atenuar a toxidez de ferro afetaram sensivelmente a dinâmica das emissões de CH 4 (Dalal et al, 2008) e a qualidade do resíduo aplicado (Kim et al, 2012(Kim et al, , 2013. O aumento da relação C/N dos resíduos implica maior disponibilidade de C (total e lábil) no solo (Kim et al, 2012), servindo de substrato para as bactérias metanogênicas.…”
Section: Resultsunclassified
“…O aumento da relação C/N dos resíduos implica maior disponibilidade de C (total e lábil) no solo (Kim et al, 2012), servindo de substrato para as bactérias metanogênicas. No presente trabalho, a relação C/N dos resíduos não foi determinada, tampouco os fluxos de GEE antes da inundação do solo.…”
Section: Resultsunclassified
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“…수도작 논에서 배출되는 약 60-90 %의 메탄은 벼의 통기조직(Arenchyma channel)을 통하여 대기 중으로 배출되며 (Cicerone and Shetter, 1981;Wassmann et al, 1996;Wassmann and Aulakh, 2000), 벼 생육은 메탄 배출량을 조절하는 주요한 인자로서 보고된바 있다 (Ali et al, 2009;Kim et al, 2012Kim et al, , 2013 (Adhya et al, 1994;Takai, 1961;Garica et al, 2000), 벼 생육에 따른 근권 삼출물(root exudate) 생성량 증대로 인한 가급태 유기물(labile organic carbon)의 공급 증가 (Bouwman, 1991;Wassmann et al, 1993) …”
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