• Title/Summary/Keyword: nitrogen leaching

Search Result 119, Processing Time 0.032 seconds

Effect of Applications of Swine Waste and Chemical Fertilizer on Productivity of Silage Corn and Nitrogen and Phosphorus Leaching in Lysimeter (Lysimeter에서 돈분 및 화학비료의 시용수준이 옥수수의 생산성 및 N과 P의 용탈에 미치는 영향)

  • 육완방;김범준;최기춘;곽병관
    • Journal of The Korean Society of Grassland and Forage Science
    • /
    • v.22 no.2
    • /
    • pp.85-92
    • /
    • 2002
  • This study was conducted to investigate the effects of application levels of swine waste and chemical fertilizer on productivity of corn and nitrogen and phosphorus leaching in Lysimeter containing sandy loam soil. Main Plots were consisted of two types of swine waste, such as swine slurry(SS) and compost of swine manure fermented with sawdust(CSMFS), and chemical fertilizer(CF) and the subplots were consisted of application levels of N-fertilezer, such as 100kgN/ha, 200kgN/ha and 400kgN/ha. Lysimeters were constructed with 1m depth, 30cm diameter. The results obtained were summarized as follows ; 1. Dry matter(DM) yield of com enhanced as increased application levels of SS, CSMFS and CF. DM yield reveals that there is an increase in order CS > SS > CSMFS. 2. Nitrogen contents of the whole corn enhanced as increased application levels of SS, CSMFS and CF. Nitrogen content reveals that there is an increase in order CS > SS > CSMFS. 3. $NO_3^{-}$ and P contents in the leaching water increased as increased application levels of SS, CSMFS and CF. $NO_3^{-}$ content was highly elevated in the concentrated rainy season in the experimental early stage. However, P content was affected with the rainfall. The maximum $NO_3^{-}$ and P contents in the leaching water were 14.8ppm and 0.26ppm, respectively.ively.

Effects of Horse Manure Compost Application Level on the Productivity of Italian Ryegrass and Soil Nitrate Leaching (마분 퇴비 시용 수준이 이탈리안 라이그라스 생산성과 용탈수 성분에 미치는 영향)

  • Yoo, Ji-Hyun;Park, Nam-Geon;Woo, Jae-Hoon;Ahn, Hee-Kwon;Yang, Byoung-Chul
    • Journal of The Korean Society of Grassland and Forage Science
    • /
    • v.40 no.2
    • /
    • pp.117-122
    • /
    • 2020
  • This study was conducted to figure out the productivity of Italian ryegrass(IRG) and leaching water characteristics based on horse manure compost level in Jeju. This study was conducted for about six months. Six treatments were established : non-fertilizer(NF), chemical fertilizer 100%(CF), horse manure compost 50% and chemical fertilizer 50% combination(Combination), horse manure compost with 50% of nitrogen (50%), 100% of nitrogen(100%), 150% of nitrogen(150%). The highest amount of dry matter yield of IRG was revealed in CF(11,965±564 kg/ha), and both 150% and Combination were second(p<0.05). Nitrate leaching tended to increase until the third analysis and then decreased. There were not significantly differences among mean nitrate concentrations. The findings of the study suggest that horse manure compost with 50% of nitrogen be applied for IRG as basal fertilization and then 50% of chemical fertilizer be applied as top fertilization.

Nitrogen Budget of South Korea Including Gaseous Nitrogen Oxides from 2012 to 2014 (기체상 질소산화물을 포함한 2012~2014년도 대한민국 질소수지 연구)

  • Lee, Hanuk;Oa, Seyeon;Park, Jae-Woo
    • Journal of Soil and Groundwater Environment
    • /
    • v.22 no.4
    • /
    • pp.49-59
    • /
    • 2017
  • This study estimated the nitrogen budget, including gaseous nitrogen oxides ($NO_x$), of South Korea in 2012~2014. The nitrogen budget was classified into three categories: agricultural and livestock, forest, and city. To estimate the nitrogen budget, several input and output parameters were investigated, including deposition, fixation, irrigation, chemical fertilizer use, compost, fuel, denitrification, volatilization, runoff, crop uptake, leaching, and $NO_x$ emissions. The annual nitrogen inputs from 2012 to 2014 were 6,202,828, 6,137,708, and 6,022,379 ton/yr, respectively. The corresponding annual nitrogen outputs were 1,393,763, 1,380,406, and 1,360,819 ton/yr, respectively, signifying a slight decrease from 2012 to 2014. $NO_x$ was the parameter contributing to the nitrogen budget to the greatest extent. The annual ratios of $NO_x$ emissions by vehicles, power plants, and businesses were 0.31, 0.31, and 0.30 in 2012, 2013, and 2014, respectively. A change in government policy that prohibited the disposal of livestock manure and sewage sludge in the ocean from 2012 affected nitrogen budget profile. As a result, the ocean disposal ratio completely diminished, which differs from previous studies.

Leaching of lonic Components from the Soil Applied with Swine Slurry (돈분뇨의 토양처리시 이온 성분의 용탈 특성)

  • 김태헌;류성필;김성수;오윤근;허철구
    • Journal of Environmental Science International
    • /
    • v.12 no.3
    • /
    • pp.325-335
    • /
    • 2003
  • An agricultural land application of swine slurry is one of the best management practices in Jeju island whose ground water must be protected. So as to study the effect of appling swine slurry on ground water or aquifer, incubation-leaching technique was used by assuming the incubating period of 1, 2, 4, 8, 16, or 32 days, and application rate of 3200.0 mgT-N/$\ell$ , 820.0 mgT-P/$\ell$, and 1887.0 mgK$\^$+/$\ell$ in swine slurry. The leachates were collected from the soil columns(PVC 30 cm L${\times}$5.5 cm D) packed 15cm in depth with Gangjeong soil series by washing with 100 mL distilled water. The leached components were measured by using ion chromatography far Cl$\^$-/, NO$_3$-N, F$\^$-/, Br$\^$-/, Na$\^$+/, K$\^$+/, Ca$^2$$\^$+/, and Mg$^2$$\^$+/ , atomic absorption spectrophotometry for Fe and Mn, and UV-Vis spectrophotometry for T-N and T-p. Application of swine slurry in naked soil could influence on the ground water or aquifer by increasing nitrate-nitrogen in leachate with time, or leaching the cations present in soils in accompany with anions because of H$\^$+/produced in nitrification. Therefore, careful consideration should be taken about what amount, when, where, and how fur protecting ground water system.

Crop Growth and Nutrient leaching from Soil with Application of Urea and Compost in Volcanic Ash Soil (화산회토에서 퇴비 및 요소시용에 따른 토양중 $NO_3$-N, 양이온의 용탈)

  • 강봉균;송창길
    • Korean Journal of Organic Agriculture
    • /
    • v.9 no.2
    • /
    • pp.101-115
    • /
    • 2001
  • Nitrogen applied as fertilizer for crop production is partly absorbed by plant , and the remaining nitrogen in soil might be leached out through complicated processes to the subsoil layer Especially, NO$_3$-N in leachate causes environmental pollution. The purpose of this study was focused on understanding of uptake of nutrients by plants, the behaviors of nutrients in soil and the possibility of leaching loss when nitrogen fertilizer and completely decomposed compost were applied. Lysimeters(Volume 0.15㎥, Diameter 62cm, Height 62.8cm) were installed for collecting leachate in the Jeju volcanic ash soils. Lysimeter study consisted of thirteen treatments : fallow, fallow with weeding, cropping without fertilizer and compost, three N fertilizer soil surface applications(16, 32, 64kg/10a), three N fertilizer and compost soil surface applications(16+800, 32+1600, 64+32kg/10a), two water dissolved N fertilizer applications(16, 32kg/10a), and low and high plant densities. N fertilizer was applied as urea. The growth of com(preceding crop) and potatoes(succeeding crop) and leaching loss were determined during the experimental period. The results obtained were summarized as follows ; With Increased N, pH of leachate tended to decrease and NO$_3$-N concentration of leachate increased. NO$_3$-N leaching loss was remarkably greater in soil from the bare plot without fertilization and the weed control than from plots with medium N rate and was least in the cropping plot without fertilization. NO$_3$-N concentration in leachates from the water dissolved N fertilizer application plots was 64% of that from the soil surface application plots. The concentration of Ca and K ions and the leaching loss of these ions were least from the cropping plot without fertilization and were greatest from bare plots(T1 and T2) without fertilization. The proportion of leaching and residual N in soil increased as N rate increased indicting that higher N rates increase the possibility of N leaching to subsoil layer The proportion of N leaching losses was lower at the low N rate and the high plant density. In future, fertilization prescription which can maximize fertilizer use efficiency and minimize the pollution of ground water will be needed for conserving the environments.

  • PDF

Estimation of Nitrate Leaching Rates for a Small Rural Watershed Using a Distributed Watershed Model (분포형 유역모델을 이용한 농촌지역 소유역의 질산성 질소 지하침출량 평가)

  • Park, Min-Hye;Park, Sunhwa;Kim, Hyun-Koo;Hwang, Jong-Yeon;Kim, Tae-seung;Chung, Hyen Mi;Cho, Hong-Lae;Lee, Taehwan;Koo, Bhon K.;Park, Yun Hee
    • Journal of Korean Society on Water Environment
    • /
    • v.33 no.6
    • /
    • pp.661-669
    • /
    • 2017
  • A distributed watershed model CAMEL (Chemicals, Agricultural Management and Erosion Losses) was applied to a small rural watershed where intensive livestock farming sites are located to estimate nitrate leaching rates from soil to groundwater. The model was calibrated against the stream flows, and T-N and $NO_3-N$ concentrations were observed at the watershed outlet for three rainfall events in 2014. The simulation results showed good agreement with the observed stream flows ($R^2=0.67{\sim}0.93$), T-N concentrations ($R^2=0.40{\sim}0.58$) and $NO_3-N$ concentrations ($R^2=0.43{\sim}0.65$). The estimated annual nitrate leaching rate of the watershed was 33.0 kg N/ha/yr. The contributing proportions of individual activities to the total nitrate leaching rate of the watershed were estimated for livestock farming, applications of chemical fertilizer, and manure. The simulation results showed that the highest contributor to the nitrate leaching rate of the watershed was chemical fertilizer applications. The simulation period was for one year only, however, and results may vary depending on different conditions. Gathering input data over a longer period of time and monitoring data for calibration is needed. When this has been accomplished, it is expected that this model can be applied to small rural watersheds for evaluating temporal and spatial variations of nitrogen transformations and transport processes.

The Effect of Cattle Slurry on N-Dynamics and $NO_3$ Leaching in Pasture Mixtures (목초 생산성과 액상분뇨 시용이 토양의 질소동태와 $NO_3$ 용탈에 미치는 영향)

  • 류종원
    • Journal of The Korean Society of Grassland and Forage Science
    • /
    • v.17 no.1
    • /
    • pp.43-50
    • /
    • 1997
  • The aim of the study is to describe the fate and transformation of nitrogen in grassland ecosystems. Field experiments were conducted using sandyloam soil under variabling conditions: Zen, fertilization, reduced slurry application(l20kg N $ha^{-1}\;yr^{-1}$), usual sluny application (240 kg N $ha^{-1}\;yr^{-1}$).Soil water samples were gathered with 120cm ceramic cups with initial pressure of 0.5 bar. Samples were collected twice a month and analysed for NO, colormetrically. Percolation was calculated as the difference between precipitation and potential evapotranspiration, and leaching as the product of percolation and nitrate content of the water h m the ceramic cups. The N$H_4$-N content in soil had no significant effect on slurry application, but high slurry application on grassland resulted in high N$O_3$-N content in soil. The NO, concentration in soil water was remarkably variable during the year. The average N$O_3$, concentration during experiment became the lowest(8.5 mg/e ) without slurry application and highest with 240kOa cattle sluny(25.3 mg4 ). For each of the three different amounts of cattle sluny applied (0, 120, and 240kOa), the amount of N$O_3$-N leached per year were 12, 23 and 29kg/ha respectively. On grassland under the climatic conditions of Allgau showed enormous nitrate leaching, which has a p a t potential of polluting the ground water. The high pool of mineral N in the soil are the source for N$O_3$ leaching. The leaching of N$O_3$ cannot be avoided completely, but minimized by optimizing N fertilization rate.

  • PDF

Effect of Rice Cultural Practices on Water Percolation, Irrigation Requirement, and Nitrogen Leaching under Lysimeter Condition

  • Kim, Dea-wook;Chae, Je-Cheon;Kim, Sung-Woo
    • KOREAN JOURNAL OF CROP SCIENCE
    • /
    • v.46 no.1
    • /
    • pp.6-11
    • /
    • 2001
  • In this lysimeter experiment, temporal changes of water percolation rate, irrigation requirement and ${No}_3$--N leaching were investigated under different cultural practices that were no-till direct seeding on flooded paddy (NTDSF), till direct seeding on flooded paddy (TDSF), and transplanting. The highest water percolation rate of 3,001 l/$m^2$ was measured in NTDSF. Others were 2,551 l/$m^2$ and 2,210 l/$m^2$ in TDSF and transplanting. Water percolation rate in NTDSF and TDSF was increased by 36% and 15% compared to transplanting. Water percolation rates in all cultural practices were increased remarkably from the reproductive growth stage and relatively large amount of water loss through percolation was measured even after the reproductive growth stage. A total irrigation requirement was 3,469 l/$m^2$ in NTDSF and 2,898 l/$m^2$ in TDSF. That was equivalent to 45% and 21 % of increase compared to 2,389 l/$m^2$ in transplanting. The largest ${No}_3$--N leaching through the entire rice growing period was 701 mg/$m^2$ in NTDSF and was followed by 494 mg/$m^2$ in TDSF and 465 mg/$m^2$ in transplanting. The ratios to the total amount of ${No}_3$--N leaching at the vegetative growth stage, reproductive growth stage and ripening stage were 31 %, 41 % and 28% in NTDSF; 21 %, 48% and 31 % in TDSF; and 18%, 48% and 35 % in transplanting.

  • PDF

Adjustment of Nitrogen by the Absorbing Patterns of Nutrients of Some Crops and N - Leaching in the Soil (시비보정(施肥補正)을 위(爲)한 작물(作物)의 양분(養分) 흡수(吸收) 양상(樣相)과 토양중(土壤中) 비료성분(肥料成分) 용탈(溶脫)에 관(關)한 연구(硏究))

  • Kim, Moon-Kyu;Chang, Ki-Woon;Woo, In-Shik;Ham, Suon-Kyu;Nam, Yun-Kyu
    • Korean Journal of Soil Science and Fertilizer
    • /
    • v.22 no.4
    • /
    • pp.307-314
    • /
    • 1989
  • Barley, garlic, and soybean were cultivated in the silt loam, sandy loam, and loam, respectively, and the absorbing patterns of N, P, and K during growing of the crops were determined. While, the leaching of N, P, and K applied in the above soils in four levels of topsoil depths and in four leachate levels of excess precipitation was measured through the column. The depths of the soil were devised to 20, 35, 50, and 65cm, and the levels of excess water were classified to each leachate of 20, 40, 60, and 80mm precipitation, and nitrogen, phosphorous, and potassium in each fraction of the leachate were analyzed. By the analyses of the chemical components during growth of the crops, their absorbing patterns of N, P, and K were investigated. The order of N-leachings in the soils was sandy loam > loam > silt loam, and the leaching of $K_2O$ was very similar to N. The leaching of $P_2O_5$ was slight in all kinds of the soils. By the combination of the absorbing patterns of the crops in three kinds of soils and the leaching of the nitrogen in four levels of soil depth and four levels of excess precipitation, the method to replace the nitrogen lost by leaching was presented.

  • PDF

Distribution and Leaching of Basal Nitrogen in Direct Seeding Rice on Dry Paddy (벼 건답직파 재배에서 기비질소의 토층간 분포와 용탈)

  • 한상준;이호진
    • KOREAN JOURNAL OF CROP SCIENCE
    • /
    • v.42 no.6
    • /
    • pp.752-758
    • /
    • 1997
  • Urea, which is the major nitrogenous fertilizer used in Korea, has been used inefficiently in direct-seeding on dry soil by farmers. This study was conducted to investigate changes in concentrations of basal N within soil layers and its loss during early stage of rice growth. Urea fertilizer was applied in the rates of 7, 5.25, 3.5, 1.75, 0kg- N /10a under direct-seeded rice in dry paddy soil. The concentrations of ammonium and nitrate were determined in soil samples with different depths during period from seeding to the 3rd leaf stage. Futhermore, N leaching was measured in lysimeter designed with pot in greenhouse. ${NH_4}^+ \; and\; {NO_3}^-$ adsorption by soil increased with increasing concentration of added urea and decreased as deeper in soil layers. ${NH_4}^+$ concentration reached its peak at 7 days after urea application (DAA) and disappeared almostly at 14 DAA. ${NO_3}^-$ reached its peak at 10 DAA and decreased slowly until 14 DAA. ${NO_3}^-$N leaching started next day after urea application and completed until 11 DAA. We concluded that most of basal N applied to direct-seeded paddy was lost by leaching and not useful for rice plant which was in stage of germination. It is urgent need to develop new nitrogen application method for direct-seeding rice on dry soil.

  • PDF