• 제목/요약/키워드: nitrogen leaching

검색결과 120건 처리시간 0.024초

중량식 라이시미터에서 콩 재배시 물관리 방법에 의한 양분의 용탈과 작물 흡수 (Nutrient Leaching and Crop Uptake in Weighing Lysimeter Planted with Soybean as Affected by Water Management)

  • 이예진;한경화;이슬비;성좌경;송요성;이덕배
    • 한국환경농학회지
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    • 제36권3호
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    • pp.147-153
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    • 2017
  • 본 연구는 기상 조건 및 관개 여부가 양분용탈 및 콩의 양분 흡수에 영향을 미치는지 평가하기 위하여 중량식 라이시미터에서 2015년부터 2016년까지 콩을 재배한 결과를 제시하였다. 콩 재배기간인 6월부터 10월까지의 증발산량은 무관개구의 경우 강우에 따라 변동되었으며, 2016년 7월 중순부터 8월 말까지 지온상승 및 강우 빈도의 감소로 증발산량이 감소하다가 9월 중순 강우에 의해 유효수분 함량을 회복하여 생육 후기에 증발산량이 증가하였다. 질산태질소의 지하 용탈량은 2016년 7월 초 5일간 강우가 지속되었을 때 가장 많았으며, 그동안 지하배수가 거의 없었던 무관개구에서 더 높게 나타났다. 개화기 및 착협기인 7월 중순부터 8월까지 한발로 인하여 무관개구의 토양 수분함량은 7월 초의 50% 수준으로 유지되었으며, 콩 수량은 적습관개구의 25% 수준이었다. 적습관개구와 무관개구의 양분 흡수량을 비교한 결과 질소 흡수량이 적습관개구에서 20~50% 더 높았으며, 인산, 칼리 흡수량 차이는 미미하였다. 토양 수분함량은 콩의 질소 흡수에 영향을 미치며, 적정 수량을 생산하기 위해서는 관개를 통한 적정 수분 공급이 필수적이었다.

돈분(豚糞)에서 유래(由來)한 질산태질소(窒酸態窒素)의 토양(土壤)중 행동(行動) (Behavior of NO3-N Derived from Pig Manure in Soil)

  • 윤순강;유순호
    • 한국토양비료학회지
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    • 제29권4호
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    • pp.353-359
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    • 1996
  • 돈분(豚糞)에서 유래(由來)한 질소의 토양 중 행동을 구명하고자 사양토와 양토를 공시하여 무저(無低) PVC 포트(직경 20cm, 높이 100cm) 조건에서 토양침투수 채취용 ceramic cup tube를 설치하고 시험을 실시하였다. 가축분은 생돈분과 발효돈분을 공시하여 0, 50, 100톤/ha수준으로 처리하였으며 옥수수재배에 의한 질산태질소 이동에 미치는 요인분석을 위하여 양토(壤土)에 한하여 옥수수를 공시 작물로 재배하면서 나지구(裸地區)와 비교(比較)하였다. 토양깊이 90cm에서 채취한 침투수의 질산태질소 농도는 돈분시용량이 많을수록 증가하였고 토성별(土性別)로는 사양토 보다 양토에서 돈분(豚糞)의 부숙상태별로는 생돈분에 비하여 발효돈분에서 높았다. 옥수수 재배지에서 침투수의 질산태질소 농도는 동일량의 돈분이 처리된 나지구에 비하여 64.6-68.9% 가 감소되었다. 침투수에 양(陽)이온들의 농도는 돈분시용량이 많을수록 증가하였으며 옥수수 재배구에서는 침투수의 양이온 농도가 나지에 비하여 현저히 감소되었다. 침투수(浸透水)에 질산태질소(窒酸態窒素) 농도가 증가할수록 Ca, Mg, Na 농도는 증가하여 이들 양이온들이 돈분유래 질산태질소와 동반용탈(同伴溶脫)되는 경향을 보였다. 침투수(浸透水)의 질산태질소 당량에 대한 양이온들의 당량비는 돈분시용량이 많을수록 증가하였으며 사양토(砂壤土) 양토(壤土) 공히 돈분시용량이 많을수록 심토 중에 질산태질소 농도가 증가되었다.

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전기선 폭발법에 의하여 제조된 Al-Ni 합금 나노분말의 선택적 침출 (The Selective Leaching of Al-Ni Alloy Nano Powders Prepared by Electrical Wire Explosion)

  • 박제신;김원백;서창열;장한권;안종관;김병규
    • 한국분말재료학회지
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    • 제15권4호
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    • pp.308-313
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    • 2008
  • Al-Ni alloy nano powders have been produced by the electrical explosion of Ni-plated Al wire. The porous nano particles were prepared by leaching for Al-Ni alloy nano powders in 20wt% NaOH aqueous solution. The structural properties of leached porous nano powder were investigated by nitrogen physisorption, X-ray diffraction (XRD) and transmission Microscope (TEM). The surface areas of the leached powders were increased with amounts of AI in alloys. The pore size distributions of these powders were exhibited maxima at range of pore diameters 3.0 to 3.5 nm from the desorption isotherm. The maximum values of those were decreased with amounts of Al in alloys.

하천변 양배추 밭에서의 영양물질의 거동 (Nutrient Behavior in an Upland Field of Cabbage Adjacent to the River)

  • 송철민;김진수;장훈
    • 한국농공학회논문집
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    • 제52권3호
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    • pp.65-71
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    • 2010
  • This study was conducted to investigate the dynamics of nutrients such as total nitrogen (TN), nitrate nitrogen ($NO_3$-N) total phosphorous (TP), and phosphate phosphorous ($PO_4$-P) in outflow from a cabbage farmland in a mixed land-use watershed. The TN concentrations in groundwater showed twice peaks in late July 2006 and late March 2007 (3.8, 4.7 mg/L, respectively), when it rained shortly after fertilizer application, indicating that nitrogen leaching is greatly influenced by fertilization and rainfall. The mean concentrations of TN and $NO_3$-N in surface water were not significantly higher than those in groundwater, while the mean concentrations of TP and $PO_4$-P in surface water were significantly (p < 0.05) were higher than those in groundwater. The TN concentrations in groundwater were generally higher than those in surface water during fertilization and early growing season due to the effect of fertilization, but vice versa in the other periods. In contrast, the TP concentrations in groundwater were always lower than those in surface water due to the sorption of particulate phosphorous by soil. The ratio of TN load in baseflow to that in total TN load (39 %) was much greater than the TP ratio (7 %), suggesting that baseflow contribute to nitrogen export. Therefore, proper fertilization management should be taken to reduce nitrogen load through baseflow.

On-field Crop Stress Detection System Using Multi-spectral Imaging Sensor

  • Kim, Yunseop;Reid, John F.;Hansen, Alan;Zhang, Qin
    • Agricultural and Biosystems Engineering
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    • 제1권2호
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    • pp.88-94
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    • 2000
  • Nitrogen (N) management is critical for corn production. On the other hand, N leaching into the groundwater creates serious environmental problems. There is a demand for sensors that can assess the plant N deficiency throughout the growing season to allow producers to reach their production goals, while maintaining environmental quality. This paper reports on the performance of a vision-based reflectance sensor for real-time assessment of N stress level of corn crops. Data were collected representing the changes in crop reflectance in various spectral ranges over several stages of development in the growing season. The performance of this non-contact sensor was validated under various field conditions with reference measurement from a Minolta SPAD meter and stepped nitrogen treatments.

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습지 미소생태계에서 질소 보유와 제거에 대한 고마리 ( Persicaria thunbergii ) 의 효과 (Effects of Persicaria thunbergii on Nitrogen Retention and Loss in Wetland Microcosms)

  • Woo, Yeun-Kyung;Eun-Jin Park;Dowon Lee;Kye Song Lee
    • The Korean Journal of Ecology
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    • 제19권2호
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    • pp.179-189
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    • 1996
  • Growth and nitrogen retention of Persicaria thunbergii were investigated in the wetland microcosms which contained the plants growing on soil bed. Nitrogen solution was supplied to the microcosms with the same amount of $NH_4^{+}-N\; and\; NO_3^{-}-N$ at the rates of 0.00, 0.78, 1.57, 3.14g $N{\cdot}m^{-2}{\cdor}wk^{-1}$ from May 1 to August 31, 1995. The solution was detained for 5 days to react with soil and plant and then allowed to leach. The contents of NH_4^{+}-N\;and\; NO_3^{-}-N$ in the leachate, total Kjeldahl nitrogen, plant biomass, and soil characteristics were determined. Nitrogen retained by plant was estimated as the increment of TKN in plant biomass. The addition of 0.78 and 1.57g $N{\cdot}m^{-2}{\cdot}wk^{-1}$ resulted in significant increase of plant biomass. However, plant growth was inhibited when nitrogen was added at the rate of 3.14g $N{\cdot}m^{-2}{\cdot}wk^{-1}$. Overall, the plant biomass was positively correlated with the amount of nitrogen retained by plant and soil system. The amounts of $NO_3^{-}-N$ leached from the microcosms were 5~10 times higher than those of $NH_4^{+}-N$. While total nitrogen added ranged from 143.2 to 576.5g $N/m^2$, total leaching loss of inorganic nitrogen and nitrogen retained by plant was as little as 1.04~22.71g $N/m^2$, and 5.46~12.91g $N/m^2$, respectively. Then, the plant seemed to contribute to KDICical and microbial immobilization of nitrogen in the soil. Finally, it is suggested that a large portion of nitrogen added was lost into the air by denitrification and volatilizaton, and / or leached in organic forms.

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가축분뇨 이용 및 농가 선호도에 관한 조사연구 (A Case Study on the Farm Preference and the Use of Livestock Feces)

  • 권승구;유덕기
    • 한국유기농업학회지
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    • 제12권3호
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    • pp.249-264
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    • 2004
  • High yield arable and crop farming demands a temporally and quantitatively determined application of plant nutrients according to field and culture. The nutrients may come from commercial fertilizers or from animal wastes. Regarding the dangers to soil, water and air, which come from current agricultural application measures for nitrogen, a sectoral approach for a nonpolluting liquid manure utilization can-not be used ally longer. An integrated system approach has to be found, leading to a drastic improvement of nutrient utilization and hence to a considerably reduced nutrient use. This can be only expected, if the organic manure can be applicated at times, when losses through leaching and volatilization can be minimized.

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Effect of Soil Textures on Fruit Yield, Nitrogen and Water Use Efficiencies of Cucumber Plant as Affected by Subsurface Drip Fertigation in the Greenhouse

  • Lim, Tae-Jun;Park, Jin-Myeon;Park, Young-Eun;Lee, Seong-Eun;Kim, Ki-In
    • 한국토양비료학회지
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    • 제48권5호
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    • pp.372-378
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    • 2015
  • Growing crops under different soil textures may affect crop growth and yield because of soil N availability, soil N leaching, and plant N uptake. The objective of this study was to evaluate effects of three different soils (sandy loam, loam, and clay loam) on cucumber (Cucumis sativus L.) yield, nitrogen (N) use efficiency (NUE), and water use efficiency (WUE) by subsurface drip fertigation in the greenhouse. Three different soil textures are sandy loam, loam, and clay loam with 3 replications. The dimension of each lysimeter was $1.0m(W){\times}1.5m(L){\times}1.0m(H)$. Cucumber was transplanted on April $8^{th}$ and Aug $16^{th}$ in 2011. The subsurface drip line and tensiometer was installed at 30 and 20 cm soil depth, respectively. An irrigation with $100mg\;NL^{-1}$ concentration was automatically applied when the tensiometer reading was 10 kPa. Volumetric soil water content for cucumber cultivation was the highest in 30 cm soil depth regardless of soil texture and was lowered when soil depth was deeper. The volumetric soil water contents at soil depths of 10, 30, 50, and 70 cm were the highest at clay loam, followed by loam, and sandy loam. The growth of cucumber at the $50^{th}$ day after transplanting was the lowest at sandy loam. Cucumber fruit yields were similar for all three soil textures. The highest amount of water use at sandy loam was observed. Nitrogen and water use efficiencies for cucumber were higher for clay loam, followed by loam and sandy loam, while the amount of N leaching was the greatest under sandy loam, followed by loam, and clay loam. Overall, growing cucumber on either loam or clay loam is better than sandy loam if subsurface drip fertigation is used in the greenhouse.

혐기성 소화액의 농지환원에 따른 질소 거동 (Assessment of Nitrogen Fate in the Soil by Different Application Methods of Digestate)

  • 은콤보 로리 리셋 시미;홍성구
    • 한국농공학회논문집
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    • 제63권3호
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    • pp.35-45
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    • 2021
  • Digestate or slurry produced from anaerobic digestion is mostly applied to crop lands for its disposal and recovering nutrients. However, minimizing nitrogen losses following field application of the digestate is important for maximizing the plant's nitrogen uptake and reducing environmental concerns. This study was conducted to assess the effects of three different biogas digestate application techniques (sawdust mixed with digestate (SSD), the hole application method (HA), and digestate injected in the soil (SD)) on nitrate leaching potential in the soil. A pot laboratory experiment was conducted at room temperature of 25 ± 2 ℃ for 107 days. The experimental results showed that sawdust application method turned out to be appropriate for quick immobilization of surplus N in the form of microbial biomass N, reflecting its lower total nitrogen and NH4-N contents and low pH. The NH4-N and total nitrogen fate in the soil fertilized with manure showed no statistically significant (p > 0.05) differences between the different methods applied during the incubation time under room temperature. In contrast, NO3-N concentration indicates significant reduction in sawdust treatment (p < 0.05) compared to the control and other application methods. However, the soil sawdust mixed with digestate was more effective than the other methods, because of the cumulative labile carbon contents of the amendment, which implies soil net N immobilization.

논 토양성분(土壤成分)의 용탈(溶脫)에 관(關)한 연구(硏究) -III. 논 토양(土壤) 화학성분(化學成分)의 용탈(溶脫)에 미치는 볏짚의 영향(影響) (Studies on the Leaching of the Constituents in Paddy Soil -III. Effects of Rice Straw on the Leaching of the Constituents in Paddy Soil)

  • 김광식;김용웅
    • 한국토양비료학회지
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    • 제16권4호
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    • pp.311-317
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    • 1983
  • 논토양성분(土壤成分)의 용탈(溶脫)에 미치는 볏짚의 영향(影響)을 구명(究明)하기 위하여 논토양(土壤)에 볏짚을 시용(施用)하고 투수조건하(透水條件下)에서 수도(水稻)를 재배(栽培)하면서 침투수중(浸透水中) 용탈성분(溶脫成分)을 분석(分析) 검토(檢討)한 결과(結果)는 다음과 같다. 석회(石灰)와 고토(苦土)의 용탈(溶脫)은 초기(初期)에는 볏짚시용(施用)의 영향(影響)을 받았고 후기(後期)에는 수도근(水稻根)의 영향(影響)을 받았으며 철(鐵)과 망간의 초기용탈(初期溶脫)은 볏짚시용(施用)에 의(依)한 토양환원(土壤還元) 발달(發達)의 영향(影響)을 받았으나 후기(後期)에는 수도근(水稻根)의 영향(影響)을 크게 받아 증대(增大)되었다. 칼리, $NH_4-N$, 염소(鹽素) 등(等)의 용탈(溶脫)은 볏짚시용(施用)의 영향(影響)이 크지 않았으며 $CO_2$의 용탈(溶脫)은 볏짚의 영향(影響)을 받아 증대(增大)되고 동시(同時)에 수도근(水稻根)의 영향(影響)이 컸다. 침투수중(浸透水中) 용탈(溶脫)되는 양(陽)이온과 음(陰)이온의 양(量)은 대체로 같은 당량비(當量比)였으며 양(陽)이온은 석회(石灰)와 고토(苦土), 철(鐵), 음(陰)이온은 $HCO_3{^-}$$SO_4{^{-2}}$이 중요(重要)한 용탈성분(溶脫成分)이었다.

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