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      토양용액 채취를 위한 토성별 한계수분함량 설정 = Determination of moisture threshold for solution sampling in different soil texture

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      https://www.riss.kr/link?id=A105056078

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      다국어 초록 (Multilingual Abstract)

      Soil moisture is an important factor for the availability and circulation of nutrients in arable soil. The purpose of this study was to set thresholds moisture content on soil nitrate concentration in the solution for real-time diagnosis. Sandy loam, silt loam, and sandy loam was filled with $1.2g\;cm^{-3}$ at Wagner pots, 0, 100, and $200mg\;L^{-1}$ of $KNO_3$ was saturated. Nitrate in standard solution was recovered about 95% by passing the porous cup. Nitrate concentrations in sampling of soil solution were examined by using a porous cup. The soil solution was higher in accordance with sandy loam> silt loam> clay loam, limited water filled pore space for sampling soil solution was 33.7, 56.4, and 62.2%, respectively. Nitrate concentration in the soil solution was negligible at sandy loam and silt loam during sampling periods, which was decreased about 50~82% in clay loam compared to the initial $NO_3$-N concentration in the saturated $KNO_3$ solution. Over limitation of soil solution sampling, soil EC and $NO_3$-N content were increased with the saturated $NO_3$-N concentration, regardless of soil texture (p<0.05). Conclusively, soil solution by using a porous cup was possible, regardless of the soil texture, which was useful for the diagnosis in nitrate concentration of soil solution. However, because nitrate concentration of soil solution in a clay loam changes, it was necessary for careful attention in order to take advantage for the real-time diagnosis of nitrogen management in soil.
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      Soil moisture is an important factor for the availability and circulation of nutrients in arable soil. The purpose of this study was to set thresholds moisture content on soil nitrate concentration in the solution for real-time diagnosis. Sandy loam, ...

      Soil moisture is an important factor for the availability and circulation of nutrients in arable soil. The purpose of this study was to set thresholds moisture content on soil nitrate concentration in the solution for real-time diagnosis. Sandy loam, silt loam, and sandy loam was filled with $1.2g\;cm^{-3}$ at Wagner pots, 0, 100, and $200mg\;L^{-1}$ of $KNO_3$ was saturated. Nitrate in standard solution was recovered about 95% by passing the porous cup. Nitrate concentrations in sampling of soil solution were examined by using a porous cup. The soil solution was higher in accordance with sandy loam> silt loam> clay loam, limited water filled pore space for sampling soil solution was 33.7, 56.4, and 62.2%, respectively. Nitrate concentration in the soil solution was negligible at sandy loam and silt loam during sampling periods, which was decreased about 50~82% in clay loam compared to the initial $NO_3$-N concentration in the saturated $KNO_3$ solution. Over limitation of soil solution sampling, soil EC and $NO_3$-N content were increased with the saturated $NO_3$-N concentration, regardless of soil texture (p<0.05). Conclusively, soil solution by using a porous cup was possible, regardless of the soil texture, which was useful for the diagnosis in nitrate concentration of soil solution. However, because nitrate concentration of soil solution in a clay loam changes, it was necessary for careful attention in order to take advantage for the real-time diagnosis of nitrogen management in soil.

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      참고문헌 (Reference)

      1 이슬비, "시설재배지 토양에서 유기자재 투입이 염류활성도에 미치는 영향" 한국환경농학회 28 (28): 397-402, 2009

      2 Jung GB, "Soil texture, electrical conductivity abd chemical fetilizer and farm manure for major crop" 27 : 238-246, 1994

      3 Hong SD, "Relationship between leaf chlorophyll reading value and soil N suppying capability of tomato in green house" 34 : 85-91, 2001

      4 Roh KA, "Reduction of nutrient infiltration by supplement of organic matter in paddy soil" 18 (18): 196-203, 1999

      5 Hedge DM, "Nutrient requirement of solanaceous vegetable crops" ASPAC, FFTC 9-, 1997

      6 Paramasivam S, "Nitrogen recovery from controlled-release fertilizers under intermittent leaching and dry cycles" 162 : 447-453, 1997

      7 CooK WP, "Nitrogen application frequency for drip-irrigation tomatoes" 26 : 250-252, 1991

      8 NAAS., "Methods of soil and plant analysis"

      9 Han KW, "Losses of chemical components by infiltration water during the rice cultivation at silt loam paddy soil" 17 (17): 268-273, 1998

      10 Pang XP, "Irrigation quantity and uniformity and nitrogen application effects on crop yield and nitrogen leaching" 61 : 257-261, 1997

      1 이슬비, "시설재배지 토양에서 유기자재 투입이 염류활성도에 미치는 영향" 한국환경농학회 28 (28): 397-402, 2009

      2 Jung GB, "Soil texture, electrical conductivity abd chemical fetilizer and farm manure for major crop" 27 : 238-246, 1994

      3 Hong SD, "Relationship between leaf chlorophyll reading value and soil N suppying capability of tomato in green house" 34 : 85-91, 2001

      4 Roh KA, "Reduction of nutrient infiltration by supplement of organic matter in paddy soil" 18 (18): 196-203, 1999

      5 Hedge DM, "Nutrient requirement of solanaceous vegetable crops" ASPAC, FFTC 9-, 1997

      6 Paramasivam S, "Nitrogen recovery from controlled-release fertilizers under intermittent leaching and dry cycles" 162 : 447-453, 1997

      7 CooK WP, "Nitrogen application frequency for drip-irrigation tomatoes" 26 : 250-252, 1991

      8 NAAS., "Methods of soil and plant analysis"

      9 Han KW, "Losses of chemical components by infiltration water during the rice cultivation at silt loam paddy soil" 17 (17): 268-273, 1998

      10 Pang XP, "Irrigation quantity and uniformity and nitrogen application effects on crop yield and nitrogen leaching" 61 : 257-261, 1997

      11 Johnes PJ., "Evaluation and management of the impact of land use change on the nitrogen and phosphorus load delivered to surface waters: the export coefficient modelling approach" 183 (183): 323-349, 1996

      12 Lee GJ, "Effect of nitrogen fertilizers on soil pH, EC, NO3-N and Lettuce(Lactuca sativa L.) growth" 34 : 122-128, 2001

      13 Miller RJ, "Drip irrigation of nitrogen is efficient" 30 : 16-18, 1976

      14 Lee SM, "Changes in concentrations of Urea-N, NH4-N and NO3-N in percolating water during rice growing season" 28 (28): 160-164, 1995

      15 Lee KB, "Change in agricultural irrigation water uality in Mankyeong River" 18 : 6-10, 1999

      16 Lim JH, "A criteria of nitrate concnentration in soil solution and leaf petiole juice for fertigation of cucumber (cucumis sativus L.) under greenhouse cultivation" 34 (34): 316-325, 2001

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      학술지 이력
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.28 0.28 0
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
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