• 제목/요약/키워드: N-soil

검색결과 3,816건 처리시간 0.043초

가축분뇨 액비 살포가 새만금유역에서의 논토양과 수질에 미치는 영향 (Effect of Livestock Liquid Manure Released at a Rice Field on Quality of Soil and Water in the Saemangeum Watershed)

  • 김미숙;곽동희
    • 상하수도학회지
    • /
    • 제30권1호
    • /
    • pp.19-31
    • /
    • 2016
  • The Saemangeum watershed is required to manage water pollution effectively but the effect of liquid manure (LM) on soil and water quality in the basin is not clearly identified as yet. This study aims at assessing the effect on soil of a rice field and water quality of water bodies near the rice field during rice-crop time period to find out the effect of LM, the effect of rainfall, and the effect of rice-crop environment on soil and water quality by analyzing data of nitrogen components. As a result of the LM distribution, $NO_3-N$ was much higher than other N components in the entire soil layers and it was accelerated by rainfall right after the LM distribution. Compared to chemical fertilizer (CF), LM was slightly affected but still influenced on the surface water quality. During weak rainfall, low nitrogen concentration in topsoil was resulted as NH3-N decreased and Org-N and $NO_3-N$ increased. $NO_3-N$ concentration in the water of irrigation canals increased with time. During intensive rainfall, $NO_3-N$ and Org-N of the soil were measured highly in the submerged condition, while the water quality of the rice field was lower due to flooding into the irrigation canal as well as the growth of the rice plants. Also, total nitrogen was increased more than 7 times and it showed serious water quality deterioration due to LM and excessive fertilizer distribution, and rainfall during all rice-crop processes. The effect of LM on water quality should be studied consistently to provide critical data while considering weather condition, cropping conditions, soil characteristics, and so on.

Effects of elevated CO2 on growth of Pinus densiflora seedling and enzyme activities in soil

  • Kim, Sung-Hyun;Jung, Soo-Hyun;Kang, Ho-Jung;Lee, In-Sook
    • Journal of Ecology and Environment
    • /
    • 제33권2호
    • /
    • pp.133-139
    • /
    • 2010
  • Atmospheric $CO_2$ concentrations have increased exponentially over the last century and, if continued, are expected to have significant effects on plants and soil. In this study, we investigated the effects of elevated $CO_2$ on the growth of Pinus densiflora seedling and microbial activity in soil. Three-year-old pine seedlings were exposed to ambient as well as elevated levels of $CO_2$ (380 and 760 ppmv, respectively). Growth rates and C:N ratios of the pine seedlings were also determined. Dissolved organic carbon content, phenolic compound content, and microbial activity were measured in bulk soil and rhizosphere soil. The results show that elevated $CO_2$ significantly increased the root dry weight of pine seedling. In addition, overall N content decreased, which increased the C:N ratio in pine needles. Elevated $CO_2$ decreased soil moisture, nitrate concentration, and the concentration of soil phenolic compounds. In contrast, soil enzymatic activities were increased in rhizosphere soil, including ${\beta}$-glucosidase, N-acetylglucosaminidase and phosphatase enzyme activities. In conclusion, elevated $CO_2$ concentrations caused distinct changes in soil chemistry and microbiology.

Effect of Slurry Composting Bio-filtration (SCB) by Subsurface Drip Fertigation on Cucumber (Cucumis sativus L.) Yield and Soil Nitrogen Distribution in Greenhouse

  • Lim, Tae-Jun;Park, Jin-Myeon;Noh, Jae-Seung;Lee, Seong-Eun;Kim, Ki-In
    • 한국토양비료학회지
    • /
    • 제46권4호
    • /
    • pp.253-259
    • /
    • 2013
  • 지중관비를 이용한 시설오이 재배에서 돈분 액비의 공급이 오이의 생육, 수량 및 토양 중 질소 분포에 미치는 영향을 평가하고자 오이 반촉성 및 억제작형에 걸쳐서 수행하였다. 초장과 마디수 등 오이의 생육은 정식 후 50일에서는 처리간의 차이는 보이지 않았지만 정식 후 85일에서는 무시비의 초장 및 마디수가 각각 388.8 cm와 40.1 ea $plant^{-1}$를 보여 생육량의 차이를 나타내었다. 오이의 수량에서도 무시비를 제외하고 액비 1.0N 및 액비 0.5N + 요소 0.5N처리와 요소 1.0N간에는 통계적으로 차이가 없이 동일하였다. 오이 재배기간에 토양 중 질산태질소의 분포는 관비의 영향으로 지중 15~30 cm 깊이에서 무시비구를 제외하고 질산태 질소의 농도가 가장 높았으며 오이 재배가 끝난 작기 후에는 0~15 cm 깊이에서 가장 높은 질소 양분량을 나타내었다. 액비 1.0N과 액비 0.5N + 요소 0.5N의 질소이용효율은 촉성작형에서 0.34와 0.37를 억제작형에서는 0.29와 0.26를 각각 보여 요소 1.0N의 0.32와 0.21과 비교하여 약간 높은 값을 나타내었다. 액비 1.0N과 액비 0.5N + 요소 0.5N는 요소 1.0N과 동일한 수량을 만족하지만 2기작에 걸친 액비 1.0N 처리는 칼륨이 176 kg $ha^{-1}$이 추가적으로 토양에 공급되므로 장기간에 걸친 액비의 시용 시에는 칼륨이 과잉으로 집적될 수 있다. 따라서 지중관비를 이용한 시설오이 재배에서 질소 추천량에 대해서 반량은 액비로 공급하고 나머지 반량에 있어서는 화학비료로 시비하는 방법이 추천된다.

Effect of Carbonized Rice Hull Application on Increasing Soil Carbon Storage and Mitigating Greenhouse Gas Emissions during Chinese Cabbage Cultivation

  • Park, Woo-Kyun;Kim, Gun-Yeob;Lee, Sun-Il;Shin, Joung-Du;Jang, Hee-Young;Na, Un-Sung;So, Kyu-Ho
    • 한국토양비료학회지
    • /
    • 제49권2호
    • /
    • pp.181-193
    • /
    • 2016
  • This experiment was conducted to evaluate the effect of carbonized rice hull (CRH) application on soil carbon storage and $N_2O$ emissions from upland soil. It was used at different rates of 0, 5, 10 and $20Mg\;ha^{-1}$. During the Chinese cabbage cultivation, several soil chemical characteristics such as soil moisture, temperature and soil carbon were observed. Also, $CO_2$ and $N_2O$ emissions were monitored. Soil organic matter contents slightly increased with carbonized rice hull applied in all the treatments. The soil carbon contents with application rate of 0, 5, 10 and $20Mg\;ha^{-1}$ were 0, 1.3, 1.2 and $2.6g\;kg^{-1}$, respectively. It was observed that soil carbon content was higher with increasing CRH application rate. Total nitrogen contents of soil applied with CRH relatively decreased with the course of time. However, $NO_3$-N contents in the soil with CRH application rate of 5, 10 and $20Mg\;ha^{-1}$ were 28.6, 25.7 and $21.5mg\;kg^{-1}$ at the end of experiment, respectively. $CO_2$ emission at the $5Mg\;ha^{-1}$ application of CRH was higher about 18.9% than non-treatment, whereas those of $10Mg\;ha^{-1}$ and $20Mg\;ha^{-1}$ treatment were lower 14.4% and 11.8% compared to non-treatment, respectively. Also, it was shown that $N_2O$ emission reduced by 19.9, 28.3 and 54.0% when CRH was applied at 5, 10 and $5Mg\;ha^{-1}$, respectively.

Lysimeter를 이용한 시비비료의 화산회토 토양중 이동에 관한 연구 (Moved of Applied Fertilizers through Volcanic Ash Soils in a Lysimeter Experiment)

  • 강봉균;조남기
    • 한국지하수토양환경학회지:지하수토양환경
    • /
    • 제6권3호
    • /
    • pp.3-12
    • /
    • 2001
  • 본 시험은 제주지역 화산회토에서 pressure-vacuum soil water sampler를 이용하여 시비 양분의 토양깊이별 이동상태를 조사하기 위하여 실시하였다. lysimeter(single chamber : model SW-071)를 각각 20, 40, 60, 80, 100, 120cm의 깊이에 매설한 후 전작물로는 옥수수, 후작물로는 감자를 재배하면서 강우시 침투수를 채수하여 pH및 양, 음이온의 농도를 조사하였다. 시비량은 질소-인산-가리를 옥수수는 36-30-30kg씩, 감자는 28-22-24kg씩 각각 파종전에 시용하였다. 채취한 침투수중 Cl, $NO_3$-N, $Ca^{+2}$, $K^{+}$의 평균농도는 시비 1개월 후에 20~40cm 깊이에서 급격하게 높아진 후 농도가 점차 낮아지면서 심토층으로의 하향 이동이 계속되어 5개월 후에는 시험 전 토양과 비슷한 수준이 되었다. 심토층(120cm)에서의 $NO_3$-N은 시비 1~l.5개월 후 그 농도가 가장 높았고, 다른 양이온도 비슷한 경향을 보였다. 용탈수의 PH와 $NO_3$-N은 부의 상관을 보였고, $NO_3$-N과 양이온간에는 고도의 정의 상관을 보여 $NO_3$-N이 표토에서 심토층으로 하향이동시 $Ca^{+2}$, $K^{+}$, $Mg^{+2}$ 등의 양이온도 동반용탈되는 것으로 조사되었다.

  • PDF

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
    • /
    • 제43권2호
    • /
    • pp.86-93
    • /
    • 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.

  • PDF

Effect of Nitrogen Application Levels on Nitrate Concentration in Soil Solution under Plastic Film House

  • Lee, Chang Hoon;Kang, Seong Soo;Kim, Myung Sook;Kim, Yoo Hak
    • 한국토양비료학회지
    • /
    • 제48권1호
    • /
    • pp.30-35
    • /
    • 2015
  • This study was conducted to investigate investigated the effect of nitrogen fertilizer on nitrate concentration in soil solution and to determine the relationship between yield and nitrate concentration in soil solution for cucumber cultivation under plastic film house. Nitrogen as urea was applied at rates of 0, 120, 240, 360, and $480kg\;N\;ha^{-1}$ as an additional fertilizer by trickle irrigation during cucumber cultivation. Monitoring of nitrate concentration in soil solution was investigated using porous cups at 25 cm depth under soil surface. Nitrate concentration in soil solution increased with increasing the rate of additional nitrogen. Correlation coefficient between EC value and nitrate concentration was positive in soil and soil solution (p<0.05). An additional nitrogen of about $300kg\;ha^{-1}$ was shown the highest yield of cucumber, and improved yield by 5% compared to N recommendation of $240kg\;N\;ha^{-1}$. The highest yield was determined at nitrate concentration of $82mg\;L^{-1}$ in soil solution by regression equation ($Y=74.2+0.73X+0.000504X^2$, $R^2=0.629^*$). These results means indicate that nitrate concentration in soil solution would be useful method to rapid determination for additional nitrogen during cucumber cultivation under plastic film house.

Soil Mineral Nitrogen Upteke and Com Growth from Hairy Vetch with Conventional and No-Tillage Systems

  • Seo, Jong-Ho;Lee, Ho-Jin
    • 한국작물학회지
    • /
    • 제48권5호
    • /
    • pp.381-387
    • /
    • 2003
  • Winter hairy vetch (HV) can be used as green manure with conventional tillage system (CT), in which chemical N fertilizer required for cultivation of sub-sequent com could be fully saved, or as cover crop with no-tillage system (NT) in which soil could be protected from erosion, control of weed, and the reduction of N fertilizer application. This experiment was carried out to compare the enrichment of soil mineral nitrogen (SMN) at corn root zone, and the changes of com growth and N uptake according to HV amounts (winter fallow, above-ground HV removed, intact HV, and HV added from aboveground HV removed) under two tillage systems in the upland field of National Crop Experiment Station, Suwon, Korea in 1996. HV cultivation during winter decreased SMN a little at com planting. HV incorporation with CT increased SMN rapidly during early growth stage according to rapid decomposition of Hv. SMN by HV cover with NT was increased slowly and its increase was higher in the surface soil (soil layer 0-7.5cm) compared to deep soil layer 7.5-22cm. Com growth and N status at corn silking stage, com yield and N uptake at harvest were increased in proportion to aboveground HV amounts regardless of tillage system. Average hairy vetch nitrogen (HV-N) uptake efficiency by com was 10% higher with CT than with NT in which average HV-N uptake efficiency was 43 %. Corn yields were not different between two tillage systems, but corn N uptake was increased by 33 kgN/ha more with CT than with NT due to the increase of corn N concentration. The increase of SMN and com N uptake from HV cover with NT could not be disregarded though those with CT were higher than with NT

Incorporation Effect of Green Manure Crops on Improvement of Soil Environment on Saemangeum Reclaimed Land during Silage Corn Cultivation

  • Yang, Chang-Hyu;Lee, Jang-Hee;Baek, Nan-Hyun;Shin, Pyeong;Cho, Kwang-Min;Lee, Sang-Bok;Lee, Gyeong-Bo
    • 한국토양비료학회지
    • /
    • 제46권3호
    • /
    • pp.187-192
    • /
    • 2013
  • This study was carried out to investigate the incorporation effect of green manure crops (GMC) such as the hairy vetch on improvement of soil environment in reclaimed land during silage corn cultivation over the past two years. Plots consisted of conventional fertilization (CF) and incorporation of GMC were divided by addition rate of nitrogen fertilizer (100 kg $ha^{-1}$) with 30 - 100% of non nitrogen fertilization (NNF). Soil physico-chemical properties and growth and yield potential of silage corn were examined. The tested soils showed strong alkali and saline properties with low contents of organic matter and available phosphate while contents of exchangeable sodium and magnesium were high. Soil salinity increased during cultivation of summer crop. However, corn was not affected by salt content. The fresh weight of GMC at incorporation time was 18,345 kg $ha^{-1}$. Content of total nitrogen was 3.09% and the C/N ratio was 12.8 at incorporation time. Fresh and dry matter yield of silage corn were higher in the order of N30% reduction, CF, N50% reduction, N70% reduction, N100% reduction and NNF. Fresh and dry matter yield potential of silage corn for N30% reduction were comparable to those of CF. Bulk density of the soil decreased with incorporation of GMC, while porosity was increased. The soil pH decreased while content of exchangeable calcium, available phosphate, and organic matter increased. Also contents of exchangeable sodium and potassium decreased with incorporation of GMC. The data indicate that incorporation of hairy vetch can improve soil physical and chemical properties and reduce nitrogen fertilizer application especially for alkali saline reclaimed soil such as Saemangeum reclaimed land.