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    Analysis of research trends in methane emissions from rice paddies in Korea

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    https://www.riss.kr/link?id=A105396980

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Climate change is considered as the greatest threat to our future and descendants. The Korean government has set a target for 2030 to reduce emission of greenhouse gases (GHGs) by 37% from the business-as-usual levels which are projected to reach 851 million metric tons of CO2eq (Carbon dioxide equivalent). In Korea, GHGs emission from agriculture account for almost 3.1% of the total of anthropogenic GHGs. The GHGs emitted from agricultural land are largely classified into three types: carbon dioxide (CO2), methane (CH4), and nitrous oxide (N2O). In Korea, rice paddies are one of the largest agricultural CH4 sources. In order to analyze domestic research trends related to CH4 emission from rice paddies, 93 academic publications including peer reviewed journals, books, working papers, reports, etc., published from 1995 to September 2017, were critically reviewed. The results were classified according to the research purposes. CH4 characteristics and assessment were found to account for approximately 65.9% of the research trends, development of CH4 emission factors for 9.5%, CH4 emission reduction technology for 14.8%, and CH4 emission modeling for 6.3%, etc. A number of research related to CH4 emission characteristics and assessment have been studied in recent years, whereas further study on CH4 emission factors are required to determine an accurate country-specific GHG emission from rice paddies. Future research should be directed toward both studies for reducing the release of CH4 from rice paddies to the atmosphere and the understanding of the major controlling factors affecting CH4 emission.
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    Climate change is considered as the greatest threat to our future and descendants. The Korean government has set a target for 2030 to reduce emission of greenhouse gases (GHGs) by 37% from the business-as-usual levels which are projected to reach 851 ...

    Climate change is considered as the greatest threat to our future and descendants. The Korean government has set a target for 2030 to reduce emission of greenhouse gases (GHGs) by 37% from the business-as-usual levels which are projected to reach 851 million metric tons of CO2eq (Carbon dioxide equivalent). In Korea, GHGs emission from agriculture account for almost 3.1% of the total of anthropogenic GHGs. The GHGs emitted from agricultural land are largely classified into three types: carbon dioxide (CO2), methane (CH4), and nitrous oxide (N2O). In Korea, rice paddies are one of the largest agricultural CH4 sources. In order to analyze domestic research trends related to CH4 emission from rice paddies, 93 academic publications including peer reviewed journals, books, working papers, reports, etc., published from 1995 to September 2017, were critically reviewed. The results were classified according to the research purposes. CH4 characteristics and assessment were found to account for approximately 65.9% of the research trends, development of CH4 emission factors for 9.5%, CH4 emission reduction technology for 14.8%, and CH4 emission modeling for 6.3%, etc. A number of research related to CH4 emission characteristics and assessment have been studied in recent years, whereas further study on CH4 emission factors are required to determine an accurate country-specific GHG emission from rice paddies. Future research should be directed toward both studies for reducing the release of CH4 from rice paddies to the atmosphere and the understanding of the major controlling factors affecting CH4 emission.

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    참고문헌 (Reference)

    1 유종희, "쌀 생산체계에 대한 영농방법별 전과정평가: 관행농, 무농약, 유기농법별 탄소배출량 비교" 한국토양비료학회 45 (45): 1157-1163, 2012

    2 주옥정, "볏짚 시용에 따른 벼 재배 논에서의 메탄 배출계수 개발에 관한 연구" 한국환경농학회 32 (32): 179-184, 2013

    3 김숙진, "벼 재배 시 경운 및 재배방법에 의한 메탄발생 양상" 한국작물학회 61 (61): 251-256, 2016

    4 고지연, "벼 논에서 토양 유기물 함량, 논 유형 및 농업기후대가 CH4 배출에 미치는 영향" 한국토양비료학회 44 (44): 887-894, 2011

    5 고지연, "배수 개선처리에 따른 토양 투수속도 변화가 논에서 CH4 및 N2O배출에 미치는 영향" 한국토양비료학회 40 (40): 214-220, 2007

    6 김태진, "담수토양에서 메탄생성반응 보효소 니켈의 킬레이팅에 의한 메탄 생산량의 효과적 저감" 한국환경농학회 33 (33): 282-289, 2014

    7 김훈수, "농법에 따른 메탄생성과 메탄생성 세균의 T-RFLP 패턴" 한국미생물학회 45 (45): 17-25, 2009

    8 김대균, "논토양에서 바이오차르 투입 및 완효성비료 시용에 따른 메탄발생량과 작물생산량 변화" 한국환경생물학회 32 (32): 327-334, 2014

    9 조현숙, "논토양에서 경운방법이 메탄발생과 쌀수량에 미치는 영향" 한국작물학회 60 (60): 167-173, 2015

    10 서영진, "논토양 종류가 메탄배출에 미치는 영향" 한국토양비료학회 44 (44): 1220-1225, 2011

    1 유종희, "쌀 생산체계에 대한 영농방법별 전과정평가: 관행농, 무농약, 유기농법별 탄소배출량 비교" 한국토양비료학회 45 (45): 1157-1163, 2012

    2 주옥정, "볏짚 시용에 따른 벼 재배 논에서의 메탄 배출계수 개발에 관한 연구" 한국환경농학회 32 (32): 179-184, 2013

    3 김숙진, "벼 재배 시 경운 및 재배방법에 의한 메탄발생 양상" 한국작물학회 61 (61): 251-256, 2016

    4 고지연, "벼 논에서 토양 유기물 함량, 논 유형 및 농업기후대가 CH4 배출에 미치는 영향" 한국토양비료학회 44 (44): 887-894, 2011

    5 고지연, "배수 개선처리에 따른 토양 투수속도 변화가 논에서 CH4 및 N2O배출에 미치는 영향" 한국토양비료학회 40 (40): 214-220, 2007

    6 김태진, "담수토양에서 메탄생성반응 보효소 니켈의 킬레이팅에 의한 메탄 생산량의 효과적 저감" 한국환경농학회 33 (33): 282-289, 2014

    7 김훈수, "농법에 따른 메탄생성과 메탄생성 세균의 T-RFLP 패턴" 한국미생물학회 45 (45): 17-25, 2009

    8 김대균, "논토양에서 바이오차르 투입 및 완효성비료 시용에 따른 메탄발생량과 작물생산량 변화" 한국환경생물학회 32 (32): 327-334, 2014

    9 조현숙, "논토양에서 경운방법이 메탄발생과 쌀수량에 미치는 영향" 한국작물학회 60 (60): 167-173, 2015

    10 서영진, "논토양 종류가 메탄배출에 미치는 영향" 한국토양비료학회 44 (44): 1220-1225, 2011

    11 김건엽, "논에서 물과 양분관리에 따른 메탄(CH4), 아산화질소(N2O)배출 특성" 한국환경농학회 21 (21): 9-, 2002

    12 김건엽, "논에서 SRI (System of Rice Intensification) 물 관리 방법을 적용한 온실가스 저감 효과" 한국토양비료학회 45 (45): 1173-1178, 2012

    13 조현숙, "녹비작물 종류에 의한 토양 및 벼 탄소량의 변화" 한국토양비료학회 45 (45): 1058-1064, 2012

    14 김건엽, "국내 벼 논에서 메탄 기본배출계수 개발" 한국환경농학회 32 (32): 359-365, 2013

    15 유종희, "관행농 쌀 생산체계의 탄소배출량 평가를 위한 전과정평가: top-down 방식의 국가평균값과 bottom-up 방식의 사례분석값 비교" 한국토양비료학회 45 (45): 1143-1152, 2012

    16 임창현, "간척지 논 토양의 염 농도가 메탄 배출에 미치는 영향" 한국환경농학회 32 (32): 252-259, 2013

    17 Paris agreement, "United nation framework convention on climate change" 2015

    18 Kim HG, "The evaluation of methane emitted at paddy soil applied to organic matter while rice cultivated organically" 285-286, 2012

    19 Ko JY, "The effects of seeding method on greenhouse gases emission from dry seeded paddy rice field" 122-, 2002

    20 Ko JY, "The effects of nitrogen fertilizers and cultural patterns on methane emission from rice paddy fields" 17 : 227-233, 1998

    21 Seo YJ, "The effect of water regimes before the cultivation period and organic amendment on methane emission from flooded rice paddy system" 99-, 2010

    22 Ko JY, "The effect of field type on greenhouse gases emission from rice paddy" 224-, 2007

    23 Hyun Young Hwang, "Selection of optimum mix-seeding ratio of hairy vetch and barley as a green manure on considering nutrient production and greenhouse gas emission in rice paddy soil" 경상대학교 대학원 2013

    24 Lee KB, "Seasonal variation of soil entrap ped methane and dissolved methane flux in a paddy soil" 30 : 41-45, 1997

    25 Yong-KwangShin, "Seasonal Change of Rice-mediated Methane Emission from a Rice under Different Water Mangement and Organic Amendments" 한국토양비료학회 36 (36): 41-49, 2003

    26 Juhwan Lee, "Relationships between Methane Production and Sulfate Reduction in Reclaimed Rice Field Soils" 한국통합생물학회 8 (8): 281-288, 2004

    27 Gwon SH, "Regulating factors of rice plant growth components on methanogenesis activity during cropping seasons" 260-, 2014

    28 Ali MA, "Reducing methane emission from rice paddy soil by silicate fertilizer" 102-, 2006

    29 주옥정, "PAA(Polyaspartic Acid) 함유 복합비료가 벼 생육 및 벼 재배 논에서의 메탄 발생에 미치는 영향 연구" 한국환경영향평가학회 22 (22): 705-711, 2013

    30 Kim GW, "Optimum nitrogen fertilization can reduce global warming impact from rice paddy field" 204-, 2017

    31 황기선, "Occurrence and distribution characteristics of weed species in organic paddy fields" 농업과학연구소 44 (44): 325-331, 2017

    32 Greenhouse Gas Inventory & Research Center of Korea, "National greenhouse gas inventory report of Korea" 2016

    33 Min HG, "Modelling of methane emission in rice paddy of South Korea by DNDC model and RCP scenario" 180-, 2016

    34 김건엽, "Mitigation of Greenhouse Gas Emissions (GHGs) by Water Management Methods in Rice Paddy Field" 한국토양비료학회 48 (48): 477-484, 2015

    35 "Kyoto protocol to the united nations framework convention on climate change. United nation framework convention on climate change"

    36 Shin YK, "Influence of soil and air temperature on the diel change of methane emission in a Korean paddy soil incorporated with rice straw" 28 : 266-269, 1995

    37 Lee KB, "Influence of different rice varieties on emission of methane in soil and caudation of carbohydrates in rhizosphere" 30 : 257-264, 1997

    38 Kim SY, "Impact of methanogens originated from cattle manure on methane emission in paddy soil ecosystem during rice cultivation" Gyeongsang National Univ. 2013

    39 Ali MA, "Evaluation of silicate ion slag amendment on reducing methane emission from flood water rice farming" 179-180, 2008

    40 Lee DB, "Evaluation of mitigation technologies and footprint of carbon in unhulled rice production" 3 : 129-142, 2012

    41 Kim GW, "Evaluation of intermittent irrigation potentials for decreasing greenhouse gases emission by DNDC model in green manure amended paddy soil" 290-, 2013

    42 Jeong HC, "Evaluation of greenhouse gas emissions using DNDC model from paddy fields of 16 local government levels" 5 : 359-366, 2014

    43 Lee JB, "Estimation of methene gas emission from paddy field in alpine land and alluvial plain under rice Straw application" 206-, 2003

    44 Shin YK, "Estimation of methane emission by water management and rice straw application in paddy soil in Korea" 28 : 261-265, 1995

    45 Jeong HC, "Estimation of CH4 emission in paddy rice by DNDC model" 38-, 2013

    46 Choi SW, "Estimation and mapping of methane emissions from the metropolitan paddy field" 418-419, 2016

    47 Lee JS, "Estimate the greenhouse-gas emission on rice production in farming without agricultural chemicals" 254-, 2014

    48 Gutierrez J, "Effects of winter cover crop amendment on methane and nitrous oxide emissions in paddy soil during rice cultivation" 160-161, 2011

    49 Ko JY, "Effects of water management rice straw and compost on methane emission in dry seeded rice" 29 : 212-217, 1996

    50 Seo YJ, "Effects of soil type on methane gas emission in paddy" 250-, 2011

    51 Ali MA, "Effects of soil amendments on reducing methane emission in rice paddy soil condition" 237-, 2006

    52 Won TJ, "Effects of plowing time and water management in rice cultivation on methane emission" 206-, 2010

    53 Lee KB, "Effects of application of nitrogen fertilizers on methane emission in a paddy soil" 33 : 212-219, 2000

    54 Park JH, "Effects of alkaline materials on methane gas emission in paddy field" 276-, 2012

    55 고지연, "Effects of Cultura Practices on Methane Emission in Tillage and No-tillage Practice from Rice Paddy Fields" 한국토양비료학회 35 (35): 216-222, 2002

    56 고지연, "Effects of Barley Straw Management Practices on Greenhouse Gases(GHGs) Emission During Rice Cultivation in Rice-barley Double Cropping System" 한국토양비료학회 41 (41): 65-73, 2008

    57 Park MH, "Effective suppression of CH4 production using pre-season management of green manures under paddy condition" 37-, 2015

    58 Kim GY, "Effective mitigation of greenhouse gas emission impact by intermittent drainage in rice paddy soil" 288-, 2012

    59 Kim SY, "Effect of transplanting season on CH4 emission in rice paddy soil" 327-, 2010

    60 Lee JI, "Effect of swine slurry amendment on emission of methane and N2O in paddy soils" 214-215, 2003

    61 Ali MA, "Effect of soil amendments having electron acceptors for mitigating methane emission during rice cultivation" Gyengsang National Univ. 2008

    62 Lee KB, "Effect of rice cultivation on methane emission from submerged paddy soil" Chonnam National Univ. 1997

    63 Gutierrez J, "Effect of non-rice cultivation on methane emission in rice paddy soil" 81-, 2011

    64 Kim SY, "Effect of long-term fertilization on soil bacterial communities and methane dynamics in rice rhizosphere and bulk soils" 167-, 2017

    65 Lim CH, "Effect of gypsum application on recucing methane emission in a reclaimed coastal paddy soil" Gyeongsang National Univ. 2011

    66 Kim SY, "Effect of green manure and silicate application on CH4 production in paddy soil" 285-286, 2010

    67 Ali MA, "Effect of electron acceptor containing silicate fertilizer on reducing methane emission in paddy soil during rice cultivation" 80-, 2015

    68 Kim SY, "Effect of cultivars on methane emission rice productivity in a paddy soil" 154-155, 2011

    69 Park JH, "Effect of byproduct gypsum fertilizer on methane gas emission in paddy field" 255-, 2014

    70 Kim TJ, "Effect of ammonium sulfate as an electron acceptor on reducing methane emission in paddy soil during rice cultivation" 254-, 2011

    71 신용광, "Effect of Rice Vegetation and Water Management on Turnover of Incorporater Organic Materials to Methane in a Korean Paddy Soil" 한국토양비료학회 36 (36): 50-56, 2003

    72 Min HG, "Effect of RCP 8.5 scenario and management difference to greenhouse gases emission in rice paddy of South Korea" 197-, 2017

    73 김건엽, "Effect of Intermittent Drainage on Methane and Nitrous Oxide Emissions under Different Fertilization in a Temperate Paddy Soil During Rice Cultivation" 한국응용생명화학회 57 (57): 229-236, 2014

    74 Lee CH, "Effect of Chinese milk vetch (Astragalus sinicus L.) as a green manure on rice productivity and methane emission in paddy soil" 285-286, 2010

    75 박준홍, "Effect of By-Product Gypsum Fertilizer on Methane Gas Emissions and Rice Productivity in Paddy Field" 한국토양비료학회 49 (49): 30-35, 2016

    76 Lee HJ, "Ecological characterization of methanogens and methanotrophs in major methane sources, rumens and rice paddies" Jungang Univ. 2015

    77 Haque MM, "Direct contributions from soil and rice plant on CH₄ emission during rice cultivation in green manure-amended paddy soil" 318-, 2013

    78 Kim GW, "Different reactions of urea fertilization on methane emission in rice plant with and without soils during rice cultivation period" 51-, 2016

    79 Yong-KwangShin, "Diel Change of Methane Emission through Rice Plant under Different Water Management and Organic Amendment" 한국토양비료학회 36 (36): 32-40, 2003

    80 Kim SY, "Comparison of methane oxidation potential of forest and paddy soils at different depth" 121-122, 2009

    81 Kim SH, "Comparison of methane emissions by soil texture in rice paddy" 196-, 2017

    82 Jeong HC, "Comparison of methane emission using model from major paddy fields in 9 local government levels" 188-, 2017

    83 Kim SY, "Comparison of livestock manures on methane emission in paddy soil during rice cultivation" 84-85, 2011

    84 Park YG, "Characterization of methane dynamics in paddy soil condition during rice cultivation" 251-252, 2011

    85 Gwon HS, "Changes of methane flux and methanotroph and methanogen abundances in a temperate mono rice paddy soil" Gyeongsang National Univ. 2014

    86 Kim YW, "Changes in methane emissions in rice due to rainfall in interim drafting period" 423-425, 2015

    87 Lee JS, "Assessment of greenhouse gases emissions of agricultural sector in 2010" 318-, 2013

    88 Pramanik P, "Application of composted livestock manure to mitigate methane emission from rice field" 82-83, 2011

    89 Seo JY, "Analysis on reducing effect of greenhouse gases and irrigation water from paddy by system of rice intensification (SRI)" 75-76, 2016

    90 Lee DK, "Analysis of research papers of greenhouse gas emission in Korean paddy soil" 177-, 2016

    91 이슬비, "Analysis of components and applications of major crop models for nutrient management in agricultural land" 농업과학연구소 43 (43): 537-546, 2016

    92 Shin YK, "A simplified closed static chamber method for measuring methane flux in paddy soil" 28 : 183-190, 1995

    93 Kim MS., "A comparison of methane production and community structure for methanogen in rice paddy soil and dry farm soils" Hannam Univ. 2009

    94 유종희, "A Case Study to Estimate the Greenhouse-Gas Mitigation Potential on Conventional Rice Production System" 한국토양비료학회 46 (46): 502-509, 2013

    95 정현철, "2020년 이후 농업부문 온실가스 배출량 전망과 감축잠재량 분석" 한국기후변화학회 6 (6): 233-241, 2015

    96 최은정, "1990년부터 2013년까지 농업 분야 국가 온실가스 배출량 평가 - 경종부문 중심으로 -" 한국기후변화학회 7 (7): 443-450, 2016

    97 정현철, "1990년부터 2008년까지 우리나라 경종분야 온실가스 (메탄) 배출량 평가" 한국토양비료학회 43 (43): 911-916, 2010

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    2009-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    학술지 인용정보
    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.28 0.28 0
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0 0 0 0.1
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