• Title/Summary/Keyword: N application rate

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Establishment of a Standard Nitrogen Application Rate for Zoysia matrella Using Growth Responses to Various Fertilization Level (질소 시비 수준별 금잔디의 생육과 질소 시비량 설정)

  • Kim, Young-Sun;Choi, Mun-Jin;Youn, Jeong-Ho;Lee, Geung-Joo
    • Korean Journal of Environmental Agriculture
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    • v.41 no.3
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    • pp.167-176
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    • 2022
  • BACKGROUND: Nitrogen (N) is an important element for turfgrass (Zoysia matrella) growth; however, standard N application rate for turfgrass is not established yet. This study was conducted to evaluate the effect of N application rates on the growth and quality of turfgrass for establishment of standard N application rate. METHODS AND RESULTS: Treatments were as follows; control (0 N g/m2/month), 1N (1 N g/m2/month), 2N(2 N g/m2/month), 3N (3 N g/m2/month), 4N (4 N g/m2/month), and 5N (5 N g/m2/month). N application improved visual turfgrass quality. Compared with the control, clipping yield of all N treatments increased by 90~194%. The grass shoot weight of 3N, 4N, and 5N treatments increased by 52%, 43%, and 111%, respectively, and the stolon weight of 4N and 5N treatments increased by 412% and 201%, respectively, compared to the control. The N uptake amount and N recovery rate were estimated to be 4.10~6.28 g/m2 and 14~58%, respectively. CONCLUSION(S): These results indicate that considering visual quality, clipping yield, N uptake amount, and N recovery, the application rate of 2~3 N g/m2/month was suggested to be suitable for Z. matrella production.

Development of a Nitrogen Application System for Nitrogen Deficiency in Corn

  • Noh, Hyun Kwon
    • Journal of Biosystems Engineering
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    • v.42 no.2
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    • pp.98-103
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    • 2017
  • Purpose: Precision agriculture includes determining the right amount of nitrogen for a specific location in the field. This work focused on developing and validating a model using variable rate nitrogen application based on the estimated SPAD value from the ground-based image sensor. Methods: A variable rate N application based on the decision making system was performed using a sensor-based variable rate nitrogen application system. To validate the nitrogen application decision making system based on the SPAD values, the developed N recommendation was compared with another conventional N recommendation. Results: Sensor-based variable rate nitrogen application was performed. The nitrogen deficiency level was measured using the image sensor system. Then, a variable rate application was run using the decision model and real-ti me control. Conclusions: These results would be useful for nitrogen management of corn in the field. The developed nitrogen application decision making system worked well, when considering the SPAD value estimation.

Nitrogen Dynamics in Soil Amended with Different Rate of Nitrogen Fertilizer

  • Kim, Sung Un;Choi, Eun-Jung;Jeong, Hyun-Cheol;Lee, Jong-Sik;Lee, Hyun Ho;Park, Hye Jin;Hong, Chang Oh
    • Korean Journal of Soil Science and Fertilizer
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    • v.50 no.6
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    • pp.574-587
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    • 2017
  • Excessive application of nitrogen (N) fertilizer to support switchgrass growth for bioenergy production may cause adverse environmental effects. The objective of this study was to determine optimum N application rate to increase biomass yield of switchgrass and to reduce adverse environmental effects related to N. Switchgrass was planted in May 2008 and biomass yield, N uses of switchgrass, nitrate ($NO_3$) leaching, and nitrous oxide ($N_2O$) emission were evaluated from 2010 through 2011. Total N removal significantly increased with N rate despite the fact that yield did not increased with above $56kg\;N\;ha^{-1}$ of N rate. Apparent nitrogen recoveries were 4.81 and 5.48% at 56 and $112kg\;N\;ha^{-1}$ of N rate, respectively. Nitrogen use efficiency decreased into half with increasing N rate from 56 to $112kg\;N\;ha^{-1}$. Nitrate leaching and $N_2O$ emission were related to N use of switchgrass. There was no significant difference of cumulative $NO_3$ leaching between 0 and $56kg\;N\;ha^{-1}$ but, it significantly increased at $112kg\;N\;ha^{-1}$. There was no significant difference of cumulative $N_2O$ emission among N rates in crest, but it significantly increased at $112kg\;N\;ha^{-1}$ in toe. Excessive N application rate (above $56kg\;N\;ha^{-1}$) beyond plant requirement could accelerate $NO_3$ leaching and $N_2O$ emission in switchgrass field. Overall, $56kg\;N\;ha^{-1}$ might be optimum N application rate in reducing economic waste on N fertilizer and adverse environmental impacts.

Kinetic Responses of Soil Carbon Dioxide Emission to Increasing Urea Application Rate

  • Lee, Sun-Il;Lim, Sang-Sun;Lee, Kwang-Seung;Kwak, Jin-Hyeob;Jung, Jae-Woon;Ro, Hee-Myoung;Choi, Woo-Jung
    • Korean Journal of Environmental Agriculture
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    • v.30 no.2
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    • pp.99-104
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    • 2011
  • BACKGROUND: Application of urea may increase $CO_2$ emission from soils due both to $CO_2$ generation from urea hydrolysis and fertilizer-induced decomposition of soil organic carbon (SOC). The objective of this study was to investigate the effects of increasing urea application on $CO_2$ emission from soil and mineralization kinetics of indigenous SOC. METHODS AND RESULTS: Emission of $CO_2$ from a soil amended with four different rates (0, 175, 350, and 700 mg N/kg soil) of urea was investigated in a laboratory incubation experiment for 110 days. Cumulative $CO_2$ emission ($C_{cum}$) was linearly increased with urea application rate due primarily to the contribution of urea-C through hydrolysis to total $CO_2$ emission. First-order kinetics parameters ($C_0$, mineralizable SOC pool size; k, mineralization rate) became greater with increasing urea application rate; $C_0$ increased from 665.1 to 780.3 mg C/kg and k from 0.024 to 0.069 $day^{-1}$, determinately showing fertilizer-induced SOC mineralization. The relationship of $C_0$ (non-linear) and k (linear) with urea-N application rate revealed different responses of $C_0$ and k to increasing rate of fertilizer N. CONCLUSION(s): The relationship of mineralizable SOC pool size and mineralization rate with urea-N application rate suggested that increasing N fertilization may accelerate decomposition of readily decomposable SOC; however, it may not always stimulate decomposition of non-readily decomposable SOC that is protected from microbial decomposition.

Effects of Nitrogen Application Rate on the Yields, Nutritive Value and Silage Fermentation Quality of Whole-crop Wheat

  • Li, C.J.;Xu, Z.H.;Dong, Z.X.;Shi, S.L.;Zhang, J.G.
    • Asian-Australasian Journal of Animal Sciences
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    • v.29 no.8
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    • pp.1129-1135
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    • 2016
  • Whole-crop wheat (Triticum aestivum L.) as forage has been extensively used in the world. In this study, the effects of N application rates on the yields, nutritive value and silage quality were investigated. The N application rates were 0, 75, 150, 225, and 300 kg/ha. The research results indicated that the dry matter yield of whole-crop wheat increased significantly with increasing N rate up to 150 kg/ha, and then leveled off. The crude protein content and in vitro dry matter digestibility of whole-crop wheat increased significantly with increasing N up to 225 kg/ha, while they no longer increased at N 300 kg/ha. On the contrary, the content of various fibers tended to decrease with the increase of N application. The content of lactic acid, acetic acid and propionic acid in silages increased with the increase of N rate (p<0.05). The ammonia-N content of silages with higher N application rates (${\geq}225kg/ha$) was significantly higher than that with lower N application rates (${\leq}150kg/ha$). Whole-crop wheat applied with high levels of N accumulated more nitrate-N. In conclusion, taking account of yields, nutritive value, silage quality and safety, the optimum N application to whole-crop wheat should be about 150 kg/ha at the present experiment conditions.

Influence of Nitrogen Application Rate on Growth and Dry Matter Yield of Achyranthes japonica Nakai (질소시비량이 쇠무릎의 생육 및 건물수량에 미치는 영향)

  • Kang, Young-Kil
    • Korean Journal of Medicinal Crop Science
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    • v.11 no.2
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    • pp.109-114
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    • 2003
  • To determine the optimum N rate m Jeju island for utricle and root production of Achyranthes japonica Nakai, a medicinal plant, the plants were grown at two plant densities $(50\;and\;100\;hills/m^2$, two plants per hill; mall plots) at six N application rates (0, 6, 12, 18, 24, and 30 kg/10a; split plots) in 2001. There was no significant interaction between plant density and N application rate for all measured agronomic characters. Main root length and roots per hill were 5 and 52% greater, respectively, but N content of stover was lower under lower plant density compared to higher plant density. The other characters were not affected by plant density. N application rate did not significantly affect mall stem diameter, spikes per hill, spike length, utricles per spike, mall root length and diameter, and utricle N content. As N rate increased from 0 to 30 kg/10a, SPAD values and stover N content increased linearly from 35.0 to 40.5 and 1.09 to 1.38%, respectively, and plant height, branches per hill, stover, utricle and root dry matter yields, roots per hill, and top N yield increased quadratically. Spikes per hill were increased in a cubic manner with increased N application rates. N application rate for the maximum dry matter yield of utricle and root in A. japonica was estimated to be 21 kg N/10a.

On-the-go Nitrogen Sensing and Fertilizer Control for Site-specific Crop Management

  • Kim, Y.;Reid, J.F.;Han, S.
    • Agricultural and Biosystems Engineering
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    • v.7 no.1
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    • pp.18-26
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    • 2006
  • In-field site-specific nitrogen (N) management increases crop yield, reduces N application to minimize the risk of nitrate contamination of ground water, and thus reduces farming cost. Real-time N sensing and fertilization is required for efficient N management. An 'on-the-go' site-specific N management system was developed and evaluated for the supplemental N application to com (Zea mays L.). This real-time N sensing and fertilization system monitored and assessed N fertilization needs using a vision-based spectral sensor and controlled the appropriate variable N rate according to N deficiency level estimated from spectral signature of crop canopies. Sensor inputs included ambient illumination, camera parameters, and image histogram of three spectral regions (red, green, and near-infrared). The real-time sensor-based supplemental N treatment improved crop N status and increased yield over most plots. The largest yield increase was achieved in plots with low initial N treatment combined with supplemental variable-rate application. Yield data for plots where N was applied the latest in the season resulted in a reduced impact on supplemental N. For plots with no supplemental N application, yield increased gradually with initial N treatment, but any N application more than 101 kg/ha had minimal impact on yield.

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Studies on the Application Rate of Cattle Slurry and Urea N on Productivity of Silage Corn and Leaching of Nitrogen in Lysimeter (액상발효우분(Cattle Slurry) 및 요소의 N 시용수준이 옥수수의 생산성과 N의 용탈에 관한 연구)

  • 육완방;최기춘
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.22 no.1
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    • pp.37-44
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    • 2002
  • This study was conducted to investigate the effects of the application rate of cattle slury and urea N on productivity of corn and environmental pollution in com cultivation soil. The experiment was conformed in lysimeter which was constructed with 0.33m diameter and 1m height. This study was arranged in split plot design. Main plots were the application rate of mineral fertilizer, as urea, such as 0, 100 and 200kgN/ha and subplots were the application rate of cattle slurry, such as 0, 200 and 400kgN/ha. The results obtained were summarized as follows. 1. Dry matter yields of corn increased as the application rate of cattle slurry and urea increased. 2. Total nitrogen content of whole corn was increased as the application rate of cattle slurry and urea increased 3. The average nitrate content in leaching water by application rate of the slurry and urea N was 7.78$\mu\textrm{g}$/$m\ell$(ranged from 6.27 to 9.02$\mu\textrm{g}$/$m\ell$). Nitrate content was hardly influenced by application rates of the slurry and urea. However, nitrate content rises in proportion to a rise in precipitation.

Effect of Different Fertilizers on Growth and Fiber Yield in Ramie Plant (모시풀의 생육과 섬유수량에 미치는 비료의 영향)

  • 김상곤;정동희;권병선;임준택
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.38 no.3
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    • pp.235-239
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    • 1993
  • To determine the optimal application level of fertilizers, nitrogen, phosphate, potassium and lime in ramie(Beohmeria nivia Hooker et Arnot), the experiments were conducted for four years from seedling stage propagated by suckers to fully-grown stage under various comibinations of $N, P_2O_5, O$ and lime. Increasing in application rate of N and $K_2$O enhanced stem growth of ramie greatly, and it appeared that lime application also had large effect on increase of stem growth. Yield increased greatly by increasing of application rate with two or three times in N and two times in $K_2$O as much as the standard application rate of fertilizers N-$P_2O_5$-$K_2$O =9-3-9kg/l0a. Especially, treatment with 18kg N, 3kg $P_2O_5, $, 18kg $K_2$O and 200kg lime per l0a showed higher percentage of productive culm and increased yield of crude fiber about 33%. The variation among treatments was relatively small in stem length but larger in fresh weight of shoot and stem. The variation was large at early stage of experiment, that is, from one to two years after planting, but decreased progressively from three years after planting. There was no large difference in number of stems among application rates of fertilizers from three years after planting which was fully-grown stage. However, increasing in application rate of Nand $K_2$O twice as much as the standard rate had large effect on increasing the percentage of productive culm, and hence increased yield greatly.

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Study on the Application of Miwon Organic Fertilizer (Byproduct of Amino Acid Fermentation) to the Ginseng Cultivation I. The Application Effect of Miwon Organic Fertilizer on the Germination rate of Ginseng Seed, Growth of Ginseng Plant and Physicochemical Properties of Soil (미원유기질비료(味元有機質肥料)(아미노산발효부산비료박(酸醱酵副産肥料粕)) 시용(施用)에 의(依)한 인삼재배(人蔘栽培)에 관(關)한 연구(硏究) I. 미원유기질비료(味元有機質肥料) 시용(施用)이 인삼(人蔘)의 발아(發芽)와 생육(生育) 및 토양(土壤)의 이화학적(理化學的) 성질(性質)에 끼치는 영향(影響))

  • Uhm, Dai-Ick;Han, Kang-Wan
    • Korean Journal of Soil Science and Fertilizer
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    • v.16 no.3
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    • pp.274-279
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    • 1983
  • In order to find out the application effect of commercial organic fertilizer on the germination rate of ginseng seed, growth of ginseng plant and changes of the physicochemical properties of soils, a Miwon organic fertilizer, byproduct of amino acid fermentation, was applied to the ginseng nursery bed. The application rates of Miwon organic fertilizer were 0kg-N from organic fertilizer and 30kg-N from wild grass compost per 10a as control(namely 0kg-N/10a), 2.5kg-N and 27.5kg-N/ 10a(2.5kg-N/10a) 5.0kg-N and 25kg-N/10a(5.0kg-N/10a), 10kg-N and 20kg-N/10a(10kg-N/10a), 15kg-N and 15kg-N/10a(15kg-N/10a) respectively, The obtained results are as follows: 1. The germination rate of ginseng seed were better in the plots that received 2.5kg, 5.0kg and 10kg-N/10a as compared with control plot. However no difference was found on germination rate between control and 15kg-N/10a, 2. The higher rate of missing plant was found in the 15kg-N/10a plot that showed poor growth. However control and 10kg-N/10a plot showed similar rate of missing plant. The best result, lower rate of missing plant, was obtained in the order of 5kg-N and 2.5kg-N/10a respectively. 3. The significant heavier ginseng root weight was obtained in 5kg-N/10a and 10kg-N/10a plot. However the root weight was decreased in the order of 2.5kg-N/10a, control, 15kg-N/10a. 4. In the physicochemical changes of soils between control and organic fertilizer treated soil before and after harvesting the increment of pH, C.E.C. and organic matter content along with the rate of organic fertilizer application were found. There were significant correlation between nitrate nitrogen and the rate of organic fertilizer application. 5. In the view points of germination rate, missing rate of plant and yield of ginseng root, it can be stated that the best result could be obtained from the plot that received 10kg-N/10a from Miwon commercial organic fertilizer and 10kg-N/10a from wild grass compost.

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