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    거대억새 단지 조성에 따른 토양 특성 변화 = Change in Soil Properties after Planting Giant Miscanthus

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    https://www.riss.kr/link?id=A100923982

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    Miscanthus has received wide attention as an option for biomass production in Korea, recently. New strain of giant miscanthus has been developed and was planted in two large trial sites (184 ha) in the lower reaches of the Geum River. To evaluate the susceptibility of the giant miscanthus as an bioenergy crop for the future, we investigated the influence of the giant miscanthus on the soil properties. The particle size, CEC, pH, EC, T-N, T-P, heavy metal total concentration, and heavy metal fractions of soil samples collected from abandoned field, 1 year old giant miscanthus field (1st Year GM), and 2 year old giant miscanthus field (2nd Year GM) at different depths of 0~15, 15~30, and 30~45 cm in April and August were analyzed. Results showed that the CEC and pH of the soil of the giant miscanthus field were lower than those of the soil of abandoned field. The EC of 2nd GM was lower than that of abandoned field, indicating that the giant miscanthus may facilitate soil desalination process. The organic and sulfide fraction and residual fraction of heavy metals in the giant miscanthus field was higher than in abandoned field, due to the low pH of the giant miscanthus field and the excretion of phytosiderophores by rhizome of the giant miscanthus. This study showed that the giant miscanthus can influence on the soil properties and further study for long term is needed to elucidate the interaction between the soil and the giant miscanthus.
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    Miscanthus has received wide attention as an option for biomass production in Korea, recently. New strain of giant miscanthus has been developed and was planted in two large trial sites (184 ha) in the lower reaches of the Geum River. To evaluate the ...

    Miscanthus has received wide attention as an option for biomass production in Korea, recently. New strain of giant miscanthus has been developed and was planted in two large trial sites (184 ha) in the lower reaches of the Geum River. To evaluate the susceptibility of the giant miscanthus as an bioenergy crop for the future, we investigated the influence of the giant miscanthus on the soil properties. The particle size, CEC, pH, EC, T-N, T-P, heavy metal total concentration, and heavy metal fractions of soil samples collected from abandoned field, 1 year old giant miscanthus field (1st Year GM), and 2 year old giant miscanthus field (2nd Year GM) at different depths of 0~15, 15~30, and 30~45 cm in April and August were analyzed. Results showed that the CEC and pH of the soil of the giant miscanthus field were lower than those of the soil of abandoned field. The EC of 2nd GM was lower than that of abandoned field, indicating that the giant miscanthus may facilitate soil desalination process. The organic and sulfide fraction and residual fraction of heavy metals in the giant miscanthus field was higher than in abandoned field, due to the low pH of the giant miscanthus field and the excretion of phytosiderophores by rhizome of the giant miscanthus. This study showed that the giant miscanthus can influence on the soil properties and further study for long term is needed to elucidate the interaction between the soil and the giant miscanthus.

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    참고문헌 (Reference)

    1 조재영, "우리나라 서남해안 간척지 및 간석지 토양의 화학적 특성(Ⅰ) -중금속 오염물질의 형태별 함량 분포-" 한국농공학회 48 (48): 3-10, 2006

    2 김경섭, "억새를 이용한 바이오 에탄올 생산을 위한 암모니아 침출 공정 최적화" 한국화학공학회 48 (48): 704-711, 2010

    3 박선태, "억새 바이오매스 전처리에서 압출 처리가 액상 암모니아 침지 처리에 미치는 영향" 한국신·재생에너지학회 6 (6): 6-14, 2010

    4 정재훈, "수송용 바이오에너지 개발과 미래" 한국미생물·생명공학회 36 (36): 1-5, 2008

    5 서상규, "바이오매스로서의 억새에 대한 연구 동향" 한국식물생명공학회 36 (36): 320-326, 2009

    6 안기홍, "간척지토양에서 하수슬러지 고화물 처리가 에너지작물의 생육에 미치는 영향" 한국작물학회 56 (56): 299-307, 2011

    7 Lewandowski, I., "The development and current status of potential rhizomatous grasses as energy crops in the US and Europe" 25 (25): 335-361, 2003

    8 Pauls, R. W., "The application of in situ permeable reactive (zerovalent iron) barrier technology for the remediation of chromate-contaminated groundwater: a field test" 14 : 989-1000, 1999

    9 An, G. H., "Study on growth responses of miscanthus planted in reclaimed soil" (Autumn) : 76-76, 2010

    10 Kim, G. H, "Soil Science" Hyangmunsa 2006

    1 조재영, "우리나라 서남해안 간척지 및 간석지 토양의 화학적 특성(Ⅰ) -중금속 오염물질의 형태별 함량 분포-" 한국농공학회 48 (48): 3-10, 2006

    2 김경섭, "억새를 이용한 바이오 에탄올 생산을 위한 암모니아 침출 공정 최적화" 한국화학공학회 48 (48): 704-711, 2010

    3 박선태, "억새 바이오매스 전처리에서 압출 처리가 액상 암모니아 침지 처리에 미치는 영향" 한국신·재생에너지학회 6 (6): 6-14, 2010

    4 정재훈, "수송용 바이오에너지 개발과 미래" 한국미생물·생명공학회 36 (36): 1-5, 2008

    5 서상규, "바이오매스로서의 억새에 대한 연구 동향" 한국식물생명공학회 36 (36): 320-326, 2009

    6 안기홍, "간척지토양에서 하수슬러지 고화물 처리가 에너지작물의 생육에 미치는 영향" 한국작물학회 56 (56): 299-307, 2011

    7 Lewandowski, I., "The development and current status of potential rhizomatous grasses as energy crops in the US and Europe" 25 (25): 335-361, 2003

    8 Pauls, R. W., "The application of in situ permeable reactive (zerovalent iron) barrier technology for the remediation of chromate-contaminated groundwater: a field test" 14 : 989-1000, 1999

    9 An, G. H., "Study on growth responses of miscanthus planted in reclaimed soil" (Autumn) : 76-76, 2010

    10 Kim, G. H, "Soil Science" Hyangmunsa 2006

    11 Ministry of Environment, "Soil Environment Conservation Act (in Korean)"

    12 Tessier, A., "Sequential extraction procedure for the speciation of particulate trace metals" 51 (51): 844-851, 1979

    13 Ali, H., "Phytoremediation of heavy metals—Concepts and applications" 91 : 869-881, 2013

    14 Lone, M. I., "Phytoremediation of heavy metal polluted soils and water : progresses and perspectives" 9 (9): 210-220, 2008

    15 Clifton-Brown J. C., "Miscanthus biomass production for energy in Europe and its potential contribution to decreasing fossil fuel carbon emissions" 10 (10): 509-518, 2004

    16 Alford, E. R., "Metallophytes-a view from the rhizosphere" 337 : 33-50, 2010

    17 Moon, Y. H., "Influence of flooding irrigation on aerial stem and subterranean stem of “1st Giant Miscanthus”" (Autumn) : 76-76, 2010

    18 Alloway, B. J., "Heavy metals in soils" Blackie Academic and Professional 1995

    19 Rauret, G., "Extraction procedures for the determination of heavy metals in contaminated soil and sediment" 46 : 449-455, 1998

    20 Keith, C., "Economic issues related to bio fuels; a written testimony for field hearing (Aug. 26, 2006)"

    21 Shigechi, H., "Direct Production of Ethanol from Raw Corn Starch via Fermentation by Use of Novel Surface-Engineered Yeast Strain Codisplaying Glucoamylase and a-Amylase" 70 (70): 5037-5040, 2004

    22 Heaton, E., "A quantitative review comparing the yields of two candidate C4 perennial biomass crops in relation to nitrogen, temperature and water" 27 (27): 21-30, 2004

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    2022 평가 계속평가 신청대상 (등재유지)
    2017-01-01 등재 우수등재학술지 선정 (계속평가)
    2015-12-02 학술지명변경 외국어명 : 미등록 -> Journal of the Korean Society of Agricultural Engineers KCI등재
    2013-01-01 등재 등재 1차 FAIL (등재유지) KCI등재
    2010-01-01 등재 등재학술지 유지 (등재유지) KCI등재
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    2005-06-07 학술지명변경 한글명 : 한국농공학회지 -> 한국농공학회논문집 KCI등재
    2004-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2001-07-01 등재 등재학술지 선정 (등재후보2차) KCI등재
    1999-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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