• 제목/요약/키워드: Soil nitrogen

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Urea Transformation and Nitrogen Loss in Waterlogged Soil Column

  • Seol, Su-Il;Lee, Sang-Mo;Han, Gwang-Hyun;Choi, Woo-Jung;Yoo, Sun-Ho
    • Journal of Applied Biological Chemistry
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    • 제43권2호
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    • pp.86-93
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    • 2000
  • An experiment was conducted to obtain the quantitative data on the transformation and loss of applied urea-N in waterlogged soil columns. The soil columns were pre-incubated for 35 days to develop oxidized and reduced soil conditions prior to urea application. After urea application at the rate of $150kg\;N\;ha^{-1}$(29.5 mg N), the amounts of nitrogen which were volatilized, leached, and remained in soil column were measured during 38 days of incubation period. On 2 and 4 days of incubation, 54.1%(15.9 mg N) and 98.4%(29.0mg N) of the applied urea was hydrolyzed, respectively. Most of the applied urea was completely hydrolyzed within 6 days. After urea application, the rates of ammonia volatilization were increased with the floodwater pH when the floodwater pH were higher than 7.0. The maximum rate of ammonia volatilization was $0.3mg\;d^{-1}$ when pH of the floodwater showed maximum value of 7.6. The total amount of volatilized nitrogen was 6.1% (1.8mg N) of the applied urea-N. A 63.2 % (18.6mg N) of the applied urea was remained in soil as $NH_4{^+}-N$ and 28.0% (8.2mg N) of the applied urea was leached as $NH_4{^+}-N$ at the end of the incubation. Amount of $NO_3{^-}-N$ in soil was smaller than 2.0 mg throughout the incubation period. The total amount of $NO_3{^-}-N$ leached was very small, which value was 1.8 mg. It suggested that nitrification process was not significant in waterlogged soil column of this study due to high infiltration rate of urea solution applied to the soil column. Therefore only small amount of $NO_3{^-}-N$ was lost by denitrification and leaching process.

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신간척지토양에서 토양염농도, 퇴비 및 추비량 차이가 밀의 수량 및 수량구성요소에 미치는 영향 (Effect of Difference in Soil Salinity, Compost and Additional Fertilizer on the Grain Yield and Yield Components of Wheat in the Newly Reclaimed Tidal Lands in Korea)

  • 손용만;송재도;전건영;김두환;박무언
    • 한국토양비료학회지
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    • 제44권5호
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    • pp.752-761
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    • 2011
  • Recently, upland crops cultivation instead of paddy crops are more popular and highlighted by increase of social demand in agricultural land use. Especially, wheat cultivation for replacing of import food grain are more interested by government, and it is urgently needed that possibility of wheat cultivation is evaluated in the reclaimed tidal land. Crop cultivation is closely related with soil salinity and cultivation method in the reclaimed tidal land. In order to evaluate possibility of wheat cultivation, effect of different application level of compost and nitrogen additional fertilizer, also soil salinity on the grain yield and yield components of three wheat cultivars was studied at the newly reclaimed Saemangeum and Hwanong tidal lands in Korea. $270-300kg\;10a^{-1}$ of grain yield were obtained at the experimental site in the Saemangeum reclaimed tidal land where soil salinity was less than $4dS\;m^{-1}$ during growing periods from December, 2009 to June, 2010. However, almost no grain yield was obtained at the experimental site in the Hwaong reclaimed tidal land, where soil salinity was more than average $8dS\;m^{-1}$ ranged from 2.0 to $25.9dS\;m^{-1}$ during growing period and then salt demage was severe. Yield was significantly different among application level of compost and nitrogen additional fertilizer in the newly reclaimed Saemangeum tidal land. However, it is considered that three cultivars such as Chopum, Chogyung and Geumgang, have similar sensibility to soil salinity and fertilizer level, because there is statistically no difference among ciltivars in Hwaong and Saemangeum, and also among cultivars in the different levels of compost and fertilizer. Finally, it is concluded that wheat can be possibly produced by reasonable fertilizer application in the Saemangeum reclaimed tidal land, but wheat cultivation is impossible because of high soil salinity in the Hwaong reclaimed tidal land.

습지에서 분리한 질소고정 세균인 Mycobacterium hominis sp. AKC-10의 특성 (Characterization of a Nitrogen Fixing Bacteria Mycobacterium hominis sp. AKC-10 Isolated from the Wetland)

  • 홍선화;신기철;이은영
    • 한국미생물·생명공학회지
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    • 제38권3호
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    • pp.302-307
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    • 2010
  • Nitrogen is an element need to grow plants growth. Plants take up nitrogen in the form of nitrate or ammonium. Most of plants absorb nitrogen source as fertilizers. But from 50 to 70% of fertilizers applied were washed away. This study was conducted to isolate free-living nitrogen fixing bacteria from reed and to examine its beneficial traits for developing sustainable biofertilizers. Enriched consortium obtained from a reed in Ansan was developed for the fixing of nitrogen. Nitrogen fixing bacteria isolated from an enriched culture in Congo Red Medium was analyzed by 16s rDNA sequencing. AKC-10 was isolated and shown to have excellent nitrogen fixing ability. The optimum conditions of nitrogen fixing ability were $25^{\circ}C$ ($237.50{\pm}39.65\;nmole{\cdot}mg-protein^{-1}{\cdot}h^{-1}$ and pH 7 ($168.335{\pm}12.84$ nmole/hr mg-protein). It was identified as Microbacterium hominis [(AKC-10 (similarity : 99%)]. This strain was had to IAA (indole-3-acetic acid) productivity and ACC(1-aminocyclopropane-1-carboxylic acid) deaminase activity. Therefore, Microbacterium hominis AKC-10 stimulated plant development in the soil, enhancing the efficiency of remediation.

염해답(鹽害畓)에서 벼 무논골뿌림재배시(栽培時) 질소시비량(窒素施肥量) 및 분시방법(分施方法)에 따른 생육(生育)과 수량성(收量性) (Growth and Yield of Rice as Affected by Nitrogen Level and Split-Application Method in the Puddled Drill Seeding in Tidal Land Paddy Field)

  • 신복우;유철현;최송열;정지호
    • 한국토양비료학회지
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    • 제29권3호
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    • pp.264-269
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    • 1996
  • 본 연구는 염해답(鹽害畓)에서 벼 무논골뿌림 재배시(栽培時) 질소(窒素) 시비량(施肥量)과 질소(窒素) 분시방법(分施方法)에 의한 시비효율(施肥效率)과 수량성(收量性)을 구명하고자 계화도(界火島) 간척지(干拓地)의 세사양토(細砂壤土)인 문포통(文浦統)에서 시험한 결과를 요약(要約)하면 다음과 같다. 1. 토양중(土壤中) $NH_4-N$의 함량(含量)은 질소(窒素) 시비량(施肥量)이 많을수록, 질소(窒素) 분시방법별(分施方法別)로는 단비(單肥)(요소(尿素))시용(施用)보다 완효성(緩效性) 복비(複肥)(LCU) 시용구(施用區)에서 높았으며 최고분습기(最高分襲期)에 가장 높았다. 2. 질소(窒素) 이용률(利用率)은 질소(窒素) 시비량(施肥量)이 적을수록 높았으나 시비효율(施肥效率)은 200kg/ha에서 높았으며 분시방법별(分施方法別)로는 단비(單肥)(요소(尿素)) 시비량(施肥量)의 30% 감비(減肥)한 완효성복(緩效性複)(LCU) 시용구(施用區)에서 높았다. 3. 질소(窒素) 시비량별(施肥量別) 쌀 수량(收量)은 질소(窒素) 200kg/ha시용(施用)에서 3.83ton/ha로 가장 많았으며, 질소(窒素) 분시방법간(分施方法間) 쌀 수량(收量)은 관행시비량(慣行施肥量)의 30% 감비(減肥)한 완효성복비(緩效性複肥) 70% 전량(全量) 기비(基肥) 시용구(施用區)에서 3.24ton/ha으로 가장 많았다. 4. 사열(砂裂) 염해답(鹽害畓)에서 무논골뿌림 직반재배시(直潘栽培時) 질소(窒素) 적정(適正) 시비량(施肥量)은 ha당(當) 요소(尿素) 222kg이었다.

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Improvement of Nitrogen Efficiency by N Application at Early Tillering Stage in Direct-Seeded Rice

  • Seo Jun-Han;Lee Ho-Jin;Lee Seung-Hun
    • 한국작물학회지
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    • 제50권1호
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    • pp.16-21
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    • 2005
  • This study was conducted to establish the elaborate nitrogen fertilization method to enhance N use efficiency in direct-seeded rice on flooded paddy. The nitrogen uptake by rice plants was insignificant until 25 days after seeding, and increased gradually thereafter. During this early growth stage, rice plants absorbed only the $4\%$ of basal applied N, while the $45\%$ of N fertilizer remained in the paddy soil. The absorption of basal N by rice plants was almost completed at 46 days after application. Nitrogen top-dressed at 5-leaf stage was well matched to crop nutrient demand, so it could be absorbed so actively in 8days after application. As a result, we could cut down the amount of N fertilizer to $36\%$ of the basal N level without significant difference in yield. Plant recoveries of fertilizer $^{15}N$ applied with different application timings were $7.8\%$ for basal, $9.4\%$ for 5-leaf stage, $17.1\%$ for tillering stage, and $23.4\%$ for panicle initiation stage, respectively. When urea was applied with nitrogen fertilization practice based on basal incorporation (BN), plant recovery of $^{15}N$ at harvest was $31.0\%$, which was originated from $13.7\%$ for grain, and $21.3\%$ of the fertilizer $^{15}N$ remained in the soil, and the rest could be uncounted. Plant recovery of fertilizer $^{15}N$ applied with nitrogen fertilization practice based on topdressing at 5-leaf stage (TN), where N rate was reduced by $18\%$ compared with BN, was $35.1\%$ (grain $15.6\%$), and $19.9\%$ of the fertilizer $^{15}N$ remained in the soil, and the rest could be uncounted. TN showed a higher $^{15}N$ recovery than BN because it was to apply N fertilizer at a time to well meet the demand of rice plant direct-seeded on flooded paddy. We concluded that TN would be the nitrogen fertilization method to enhance N use efficiency in direct-seeded rice on flooded paddy.

교통량과 대기질이 도시 공원 토양 특성에 미치는 영향 (Effects of Traffic Volume and Air Quality on the Characteristic of Urban Park Soil)

  • 주선영;이현진;전주희;서인혜;유가영
    • Ecology and Resilient Infrastructure
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    • 제9권1호
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    • pp.77-82
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    • 2022
  • 본 연구에서는 서울의 세 지점에서 이동 및 고정오염원이 대기질과 도시 공원 토양의 특성에 미치는 영향을 파악하고자 하였다. 조사 대상지로는 도시에서 질소 침적의 주요 발생원인 이동 및 고정오염원의 여부에 따라 서울시 마포구의 하늘공원 (Site_M), 서울시 강남구의 일원에코파크 (Site_G), 서울시 서초구의 양재시민의 숲 (Site_Y)을 선정하였고, 각 사이트별 교통량과 대기질 농도, 토양 분석 결과를 비교하였다. 교통량은 Site_G와 Y에 이어 Site_M에서 가장 많았다; Site_M과 G는 Site_Y보다 자원회수시설과 더 가까웠다. 따라서, 본 연구에서는 PM과 NO2 농도가 Site_Y, G에서보다 Site_M에서 많을 것이며, 사이트마다 다른 대기 침적량에 의해 토양 질소 함량도 다를 것으로 예상했다. 예상과 동일하게 PM2.5와 NO2 농도는 Site_M과 G에서 높았지만 PM10 농도는 Site_Y에서 약간 높았다. 식물이 주로 흡수하는 무기질소의 형태인 NO3-의 함량은 세 사이트에서 유의한 차이가 보이지 않았고, NH4+의 함량은 Site_Y에서 다른 두 지역에 비해 더 높았는데, 이는 대기 침적에 의한 결과라기 보다는 공원 관리 차원에서의 질소 비료 투입에 따른 영향인 것으로 생각된다. Site_Y에서 다른 사이트보다 낮은 pH를 보인 것 또한 과다한 비료 시용으로 인해 산성화가 일어난 것으로 생각된다. 그러나 토양 내 NH4+ 함량이 상대적으로 적은 Site_M과 G를 포함한 모든 조사 대상지에서 식생이 건강하게 보이는 것으로 보아, 공원 관리에 있어서 과도한 비료 투입을 재고할 필요가 있음을 시사한다. 비록 이동 및 고정오염원으로 인해 대기의 PM, NO2 등의 농도가 달랐지만 그 영향이 토양의 질소 영양 상태에 직접적 영향을 미치지 않는 수준이었다.

수도에 대한 시비방법이 질소효율 및 잡초군락에 미치는 영향 (The Effects of Nitrogen Application Methods on the Nitrogen Efficiency and Weed Population under the Lowland Rice)

  • 이문희
    • 한국작물학회지
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    • 제21권2호
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    • pp.269-276
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    • 1976
  • This experiment was conducted to find out how to increase efficiency of fertilizer nitrogen and how to change the weed population with different methods of nitrogen application. Mudball deep placement, at 10-12cm soil depth, produced significantly the highest grain yield within the application methods with same amount of nitrogen (60kg N/ha). It produced also same grain yield with conventional application methods, timely split application method, with 90kg N/ha. Basal application of nitrogen increased weed population and it showed higher dry weight of weed than top dressing methods at early growth stage of rice.

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전주 체련공원내 조경식물 식재구성과 토양절지동물상에 관한 연구 (A Study on Composition of Landscape Species and the Soil Microarthropods Athletic Training Park in Chonju)

  • 장석기;장규관;정진철;최성식
    • 한국토양동물학회지
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    • 제2권2호
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    • pp.98-103
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    • 1997
  • This study was investigated, from October to November, 1995, how environmental factors affected both the diversity and the ecology of soil microarthropods according to the sampling sites at althletic training park located in Chonju, Chonbuk. The results obtained are as follow: At the sampling areas, the soil microarthropods were identified into 6 classes, 15 orders, 17,145 individuals. Arachnida showed the highest individual rate (74.10%) in soil mictoarthropods and Acari occupied the great majority (97.98%) in Archinida. Collembola showed the highest individual rate (82.01%) in Insecta. Species planted at althletic training park were 10 famillies 12 genera 20 species 2 varietas 1 forma. In environmental factors which have an effect on the distribution of the soil microarthropods, acarina showed positive correlation for rate of carbon/nitrogen, soil moisture, soil acidity, and lead(Pb) and also negative correlation for solidity and intensity of lightness. Collembola and other animals showed negative correlation for solidity.

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