RISS 학술연구정보서비스

검색
다국어 입력

http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.

변환된 중국어를 복사하여 사용하시면 됩니다.

예시)
  • 中文 을 입력하시려면 zhongwen을 입력하시고 space를누르시면됩니다.
  • 北京 을 입력하시려면 beijing을 입력하시고 space를 누르시면 됩니다.
닫기
    인기검색어 순위 펼치기

    RISS 인기검색어

      KCI등재

      Greenhouse Gases Emission from Rice Paddy under Different Tillage Intensity during Fallow Season

      한글로보기

      https://www.riss.kr/link?id=A108370147

      • 0

        상세조회
      • 0

        다운로드
      서지정보 열기
      • 내보내기
      • 내책장담기
      • 공유하기
      • 오류접수

      부가정보

      다국어 초록 (Multilingual Abstract)

      Reduced tillage is a useful practice to increase soil organic carbon (SOC) stock and decrease methane (CH4)emission in a rice paddy. However, the impacts of reduced tillage on the global warming potential (GWP) aregenerally analyzed for CH4 fluxes only during rice cultivation season. This study was conducted to investigatethe effects of tillage on greenhouse gas (GHG) emission including both CH4 and nitrous oxide (N2O) and SOCstock changes were evaluated during the fallow season under two different tillage systems (conventional tillageand reduced tillage practice). The emission rate of GHG emissions was monitored using the closed chambermethod. The SOC stock changes were estimated by the net ecosystem C budget (NECB), which is defined asthe difference between total organic C input and output. Finally, the net global warming potential (net GWP),which was calculated as CO2 equivalents was compared between the different tillage system in rice paddyduring fallow season. The net GWP of tillage and reduced tillage treatment were 4.09 and 4.96 Mg CO2 eq. ha-1,respectively during fallow season. However, the net GWP was not significantly different tillage systems. Thedecrease of SOC stock as CO2 emission was the most influential part on increasing the net GWP. Our studysuggest that regardless of tillage conditions, it is necessary to establish a greenhouse gas reduction strategyfocusing on increasing SOC accumulation during the fallow season. However, as this study was conducted foronly single fallow season, long-term study is required to estimate the cumulative effects of tillage treatmenton GHG emissions during fallow seasons in paddy.
      번역하기

      Reduced tillage is a useful practice to increase soil organic carbon (SOC) stock and decrease methane (CH4)emission in a rice paddy. However, the impacts of reduced tillage on the global warming potential (GWP) aregenerally analyzed for CH4 fluxes onl...

      Reduced tillage is a useful practice to increase soil organic carbon (SOC) stock and decrease methane (CH4)emission in a rice paddy. However, the impacts of reduced tillage on the global warming potential (GWP) aregenerally analyzed for CH4 fluxes only during rice cultivation season. This study was conducted to investigatethe effects of tillage on greenhouse gas (GHG) emission including both CH4 and nitrous oxide (N2O) and SOCstock changes were evaluated during the fallow season under two different tillage systems (conventional tillageand reduced tillage practice). The emission rate of GHG emissions was monitored using the closed chambermethod. The SOC stock changes were estimated by the net ecosystem C budget (NECB), which is defined asthe difference between total organic C input and output. Finally, the net global warming potential (net GWP),which was calculated as CO2 equivalents was compared between the different tillage system in rice paddyduring fallow season. The net GWP of tillage and reduced tillage treatment were 4.09 and 4.96 Mg CO2 eq. ha-1,respectively during fallow season. However, the net GWP was not significantly different tillage systems. Thedecrease of SOC stock as CO2 emission was the most influential part on increasing the net GWP. Our studysuggest that regardless of tillage conditions, it is necessary to establish a greenhouse gas reduction strategyfocusing on increasing SOC accumulation during the fallow season. However, as this study was conducted foronly single fallow season, long-term study is required to estimate the cumulative effects of tillage treatmenton GHG emissions during fallow seasons in paddy.

      더보기

      참고문헌 (Reference)

      1 권효숙 ; 최은정 ; 이선일 ; 이형석 ; 이종문 ; 강성수, "벼 재배 논토양에서 메탄의 생성 및 배출: 리뷰" 한국기후변화학회 13 (13): 117-134, 2022

      2 NAAS, "Weather 365"

      3 Ariani, M., "Water filled-pore space and soil temperature related to N2O fluxes from shallot cultivated in rainy and dry season" 648 (648): 012109-, 2021

      4 Gwon, H. S., "Unexpected higher decomposition of soil organic matter during cold fallow season in temperate rice paddy" 192 : 250-257, 2019

      5 Gajri, P. R., "Tillage for sustainable cropping indian reprint" International Book Distributing Company 2004

      6 Liu, Z., "Tillage effects on soil properties and crop yield after land reclamation" 11 (11): 4611-, 2021

      7 Seongwoo Choi ; 이주희 ; 이여명 ; 김필주 ; 조주식 ; 정용화 ; 임요섭 ; 김상윤, "The Effects of Ethephon Application on Suppressing Methane Emission and Stimulating Rice Productivity in a Rice Paddy Soil: A Pot Experiment" 한국토양비료학회 53 (53): 489-501, 2020

      8 Cho, J. I, "Study on the development of standardization technology of minimum tillage method for greenhouse gas reduction in paddy soil" Rural Development Administration 2020

      9 Titi, A. E, "Soil tillage in agroecosystems" Taylor & Francis 2002

      10 Ali, M. A., "Silicate fertilization in no-tillage rice farming for mitigation of methane emission and increasing rice productivity" 132 (132): 16-22, 2009

      1 권효숙 ; 최은정 ; 이선일 ; 이형석 ; 이종문 ; 강성수, "벼 재배 논토양에서 메탄의 생성 및 배출: 리뷰" 한국기후변화학회 13 (13): 117-134, 2022

      2 NAAS, "Weather 365"

      3 Ariani, M., "Water filled-pore space and soil temperature related to N2O fluxes from shallot cultivated in rainy and dry season" 648 (648): 012109-, 2021

      4 Gwon, H. S., "Unexpected higher decomposition of soil organic matter during cold fallow season in temperate rice paddy" 192 : 250-257, 2019

      5 Gajri, P. R., "Tillage for sustainable cropping indian reprint" International Book Distributing Company 2004

      6 Liu, Z., "Tillage effects on soil properties and crop yield after land reclamation" 11 (11): 4611-, 2021

      7 Seongwoo Choi ; 이주희 ; 이여명 ; 김필주 ; 조주식 ; 정용화 ; 임요섭 ; 김상윤, "The Effects of Ethephon Application on Suppressing Methane Emission and Stimulating Rice Productivity in a Rice Paddy Soil: A Pot Experiment" 한국토양비료학회 53 (53): 489-501, 2020

      8 Cho, J. I, "Study on the development of standardization technology of minimum tillage method for greenhouse gas reduction in paddy soil" Rural Development Administration 2020

      9 Titi, A. E, "Soil tillage in agroecosystems" Taylor & Francis 2002

      10 Ali, M. A., "Silicate fertilization in no-tillage rice farming for mitigation of methane emission and increasing rice productivity" 132 (132): 16-22, 2009

      11 Ma, K., "Responses of methanogen mcrA genes and their transcripts to an alternate dry/wet cycle of paddy field soil" 78 (78): 445-454, 2012

      12 Ma, K., "Regulation of microbial methane production and oxidation by intermittent drainage in rice field soil" 75 (75): 446-456, 2011

      13 Rowlings, D. W., "Rainfall variability drives interannual variation in N2O emissions from a humid, subtropical pasture" 512-513 : 8-18, 2015

      14 Blanco-Canqui, H., "No-tillage and soil physical environment" 326 : 164-200, 2018

      15 Ma, Y. C., "Net global warming potential and greenhouse gas intensity of annual rice-wheat rotations with integrated soil-crop system management" 164 : 209-219, 2013

      16 Wu, X., "Net global warming potential and greenhouse gas intensity as affected by different water management strategies in Chinese double rice-cropping systems" 8 (8): 779-, 2018

      17 Martínez-Eixarch, M., "Neglecting the fallow season can significantly underestimate annual methane emissions in Mediterranean rice fields" 13 (13): e0198081-, 2018

      18 Rolston, D.E., "Methods of soil analysis, Part 1: Physical and mineralogical methods" Soil Science Society of America and American Society of Agronomy 1103-1119, 1986

      19 RDA, "Method of soil, plant, water and liquid fertilizer analysis"

      20 Coskun, D., "How plant root exudates shape the nitrogen cycle" 22 (22): 661-673, 2017

      21 Ahmad, S., "Greenhouse gas emission from direct seeding paddy field under different rice tillage systems in central China" 106 (106): 54-61, 2009

      22 Hyo-Suk Gwon ; Gun-Yeob Kim ; Sun-Il Lee ; 이종식 ; Eun-Jung Choi, "Estimation of Greenhouse Gas Emission in Rice Paddy Soil Under Slow Released N Fertilizer Application: Annual Investigation" 한국토양비료학회 53 (53): 575-588, 2020

      23 Houshyar, E., "Environmental impacts of energy use in wheat tillage systems : A comparative life cycle assessment(LCA)study in Iran" 122 : 11-24, 2017

      24 Zhang, X., "Effects of continuous drought stress on soil respiration in a tropical rainforest in southwest China" 394 (394): 343-353, 2015

      25 Sun-Il Lee ; Gun-Yeob Kim ; Hyo-Suk Gwon ; 이종식 ; Eun-Jung Choi ; JoungDu Shin, "Effects of Different Nitrogen Fertilizer and Biochar Applications on CO2 and N2O Emissions from Upland Soil in the Closed Chamber" 한국토양비료학회 53 (53): 431-445, 2020

      26 Ryu, J. H, "Development of crops cultivation technologies using green manure crops for sustainable agriculture" Rural Development Administration 2014

      27 Cai, Y., "Conventional methanotrophs are responsible for atmospheric methane oxidation in paddy soils" 7 (7): 11728-, 2016

      28 Haque, M. M., "Contribution of greenhouse gas emissions during cropping and fallow seasons on total global warming potential in mono-rice paddy soils" 387 (387): 251-264, 2015

      29 Pietikäinen, J., "Comparison of temperature effects on soil respiration and bacterial and fungal growth rates" 52 (52): 49-58, 2005

      30 Haque, M. M., "Comparison of net global warming potential between continuous flooding and midseason drainage in monsoon region paddy during rice cropping" 193 : 133-142, 2016

      31 IPCC, "Climate change 2013 - The physical science basis. Working Group I Contribution to the IPCC Fifth Assessment Report" Cambridge University Press 2014

      32 Alvarez, R, "A review of nitrogen fertilizer and conservation tillage effects on soil organic carbon storage" 21 (21): 38-52, 2005

      더보기

      분석정보

      View

      상세정보조회

      0

      Usage

      원문다운로드

      0

      대출신청

      0

      복사신청

      0

      EDDS신청

      0

      동일 주제 내 활용도 TOP

      더보기

      주제

      연도별 연구동향

      연도별 활용동향

      연관논문

      연구자 네트워크맵

      공동연구자 (7)

      유사연구자 (20) 활용도상위20명

      이 자료와 함께 이용한 RISS 자료

      나만을 위한 추천자료

      해외이동버튼