• 제목/요약/키워드: Mineralization rate

검색결과 146건 처리시간 0.02초

Nitrogen Mineralization of Cereal Straws and Vetch in Paddy Soil by Test Tube Analysis

  • Cho, Young-Son;Lee, Byong-Zhin;Choe, Zhin-Ryong
    • 한국작물학회지
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    • 제44권2호
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    • pp.102-105
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    • 1999
  • Mineralization of organic N is an important factor in determining the appropriate rate of organic matter application to paddy fields. A kinetic analysis was conducted for nitrogen mineralization of rice, barley, Chinese milk Ovetch (Astragalus sinicus L.; MV) and narrow leaf vetch straw in paddy soil. Nitrogen immobilization occurred rapidly and its rate increased in straw with high C/N ratio. The amount of nitrogen mineralization was rapid in the first year of rice-vetch cropping system. The rate constant (K) depended on the C/N ratio of organic matter. Mineralization of straw increased at high temperature. The amount of available N increment resulted in fast mineralization of straw, especially in rice and barley straw. Chinese milk vetch had the greatest mineralization rate at all temperatures and fertilization levels followed by narrow-leaf vetch. However, rice and barley straws with high C/N ratio immobilized the soil N at the initial incubation duration. Chinese milk vetch or narrow leaf vetch was not effectively mineralized in mixed treatments with rice or barley straw. The mineralization rate of organic matter was mostly affected by the C/N ratio of straw and temperature of incubation. Organic matter with low C/N ratio should be recommended to avoid the immobilization of soil N and the increasing mineralization rate of straw.

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Estimation of N Mineralization Potential and N Mineralization Rate of Organic Amendments as Affected by C:N Ratio and Temperature in Paddy Soil

  • Shin, Jae-Hoon;An, Nan-Hee;Lee, Sang-Min;Ok, Jung-Hun;Lee, Byun-Woo
    • 한국토양비료학회지
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    • 제49권6호
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    • pp.712-719
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    • 2016
  • Understanding N mineralization dynamics in soil is essential for efficient nutrient management. An anaerobic incubation experiment was conducted to examine N mineralization potential and N mineralization rate of the organic amendments with different C:N ratio in paddy soil. Inorganic N in the soil sample was measured periodically under three temperature conditions ($20^{\circ}C$, $25^{\circ}C$, $30^{\circ}C$) for 90 days. N mineralization was accelerated as the temperature rises by approximately $10%^{\circ}C^{-1}$ in average. Negative correlation ($R^2=0.707$) was observed between soil inorganic N and C:N ratio, while total organic carbon extract ($R^2=0.947$) and microbial biomass C ($R^2=0.824$) in the soil were positively related to C:N ratio. Single exponential model was applied for quantitative evaluation of N mineralization process. Model parameter for N mineralization rate, k, increased in proportion to temperature. N mineralization potential, $N_p$, was very different depending on C:N ratio of organic input. $N_p$ value decreased as C:N ratio increased, ranged from $74.3mg\;kg^{-1}$ in a low C:N ratio (12.0 in hairy vetch) to $15.1mg\;kg^{-1}$ in a high C:N ratio (78.2 in rice straw). This result indicated that the amount of inorganic N available for crop uptake can be predicted by temperature and C:N ratio of organic amendment. Consequently, it is suggested that the amount of organic fertilizer application in paddy soil would be determined based on temperature observations and C:N ratio, which represent the decomposition characteristics of organic amendments.

소화신산의 화산분화후에 성립한 두메오리나무 임분의 질소무기화와 질화작용 - NH$_{4}$

  • 문현식;춘목아관
    • The Korean Journal of Ecology
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    • 제21권6호
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    • pp.751-757
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    • 1998
  • Nitrogen dynamics in mineral soils of an alder (Alnus maximowiczii) stand established on volcano Mt. Showa-Shinzan were measured by laboratory incubation method in order to clarify characteristics of $NH_{4}^{+}$ mineralization and nitrification rate, from August 1994 to July 196. Contents of total N and organic matter were relatively low, but increased in May-July. Extractable $NH_{4}^{+}$ concentrations and $NH_{4}^{+}$ mineralization were high in June and July, and decreased in midsummer and fall. Extractable $NO_{3}^{-}$ concentrations did not vary seasonally. Negative values at $NH_{4}^{+}$ mineralization and nitrification rate were observed in August and September. $NH_{4}^{+}$ mineralization was positively correlated with soil organic matter, and nitrification rates were influenced by extractable $NH_{4}^{+}$ concentration and $NH_{4}^{+}$ mineralization.

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밭토양 조건에서 질소함량별 유기자원의 질소 무기화율 추정 (Estimation of Nitrogen Mineralization of Organic Amendments Affected by Nitrogen Content in Upland Soil Conditions)

  • 임진수;이방현;강승희
    • 한국환경농학회지
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    • 제38권4호
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    • pp.262-268
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    • 2019
  • 토양에서 유기자원의 무기화 특성을 구명하기 위하여 질소함량별로 볏짚, 우분퇴비, 균배양체, 유박, 아미노볼 등 총 5가지를 각각 처리하여 128일 동안 실내 항온배양실험을 실시하였으며, 이 분석결과를 질소 무기화 모형에 적용하여 유기자원의 질소 무기화 양상을 구명하였다. 항온배양 기간 동안 유기자원의 질소 순 무기화율은 질소함량이 가장 높은 아미노볼에서 가장 높았고, 질소함량이 가장 낮은 볏짚에서 가장 낮았다.잠재적 질소 무기화율은 전질소 함량과는 양의 상관관계(0.96)가 인정되었다. 무기화 속도상수 k는 유기자원의 유기물(-0.96) 및 탄소함량(-0.97)과 음의 상관관계가 인정되었다. 모형에 의해 추정된 1작기 동안의 질소 무기화율은 볏짚 6.6%, 우분퇴비 11.6%, 균배양체 30.9%, 유박 70.7%이었으며 아미노볼은 81.0%를 나타냈다. 질소 무기화율은 유기자원의 종류 또는 질소함량에 따라 다르게 나타나 질소 무기화율을 유기자원의 질소 공급 특성을 결정하는 지표로 사용할 수 있다. 질소함량이낮거나 발효과정을 거치는 퇴비 등의 유기자원은 퇴비화 과정에서 유기태 질소가 안정화되어 질소의 무기화율이 무발효 유기자원보다 낮으므로 시비량 결정시 양분공급의 목적보다는 토양 물리성 개량을 목적으로 사용하는 것이 바람직하다.

Estimation of N Mineralization Potential and N Mineralization Rate of Organic Amendments in Upland Soil

  • Shin, Jae-Hoon;Lee, Sang-Min;Lee, Byun-Woo
    • 한국토양비료학회지
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    • 제48권6호
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    • pp.751-760
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    • 2015
  • Management of renewable organic resources is important in attaining the sustainability of agricultural production. However, nutrient management with organic resources is more complex than fertilization with chemical fertilizer because the composition of the organic input or the environmental condition will influence organic matter decomposition and nutrient release. One of the most effective methods for estimating nutrient release from organic amendment is the use of N mineralization models. The present study aimed at parameterizing N mineralization models for a number of organic amendments being used as a nutrient source for crop production. Laboratory incubation experiment was conducted in aerobic condition. N mineralization was investigated for nineteen organic amendments in sandy soil and clay soil at $20^{\circ}C$, $25^{\circ}C$, and $30^{\circ}C$. N mineralization was facilitated at higher temperature condition. Negative correlation was observed between mineralized N and C:N ratio of organic amendments. N mineralization process was slower in clay soil than in sandy soil and this was mainly due to the delayed nitrification. The single and the double exponential models were used to estimate N mineralization of the organic amendments. N mineralization potential $N_p$ and mineralization rate k were estimated in different temperature and soil conditions. Estimated $N_p$ ranged from 28.8 to 228.1 and k from 0.0066 to 0.6932. The double exponential model showed better prediction of N mineralization compared with the single exponential model, particularly for organic amendments with high C:N ratio. It is expected that the model parameters estimated based on the incubation experiment could be used to design nutrient management planning in environment-friendly agriculture.

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
    • 한국환경농학회지
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    • 제30권2호
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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.

시용된 유기물 종류별 토양중 질소무기화 (Nitrogen Mineralization in Soils Added with Different Organic Materials)

  • 이종식
    • 한국토양비료학회지
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    • 제31권3호
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    • pp.233-237
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    • 1998
  • 토양에 시용되는 각종 폐유기물들의 토양중 질소 무기화율을 알아보기 위하여 3종의 폐유기물(A:도시고형폐기물+하수슬러지, B:목재잔사, C:목재잔사+하수슬러지)를 토양에 처리한 뒤 12주 동안 $25^{\circ}C$ 호기조건에서 질소 무기화율을 조사한 결과, 초기 질산화율은 C 처리구가 다른 처리구에 비하여 높았다. 또한 무기화된 총질소량은 C 처리구에서 가장 많았으나 실험기간 동안의 질소 무기화율과 질산화율은 무처리구에서 높게 나타났다.

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보리수나무 군락의 근류계절학 및 근계의 질소무기화 (Nodule Phenology and Nitrogen Mineralization of Rhizosphere in Autumn-olive(Elaeagnus umbellata) Stand)

  • You, Young-Han;Kyung-Bum Kim;Chung-Sun An;Joon-Ho Kim;Seung-Dal Song
    • The Korean Journal of Ecology
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    • 제18권4호
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    • pp.493-502
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    • 1995
  • Nodulation phenology in relation to plant phenology, vertical distribution of nodul and root biomass in different soil, correlation between nodule and root size, and nitrogen mineralization around the rhizosphere by ion-exchange resin bag buried at 10 cm of soil were studied in Elaeagnus nmbellata (autumn-olive) stand, Korea. Nodulation appeared from spring to autumn and nodule phenology was coincided with the timing of root activity rather than that of foliation. Nodul size increased in proportion to the root size. In the sand dune with the lower root biomass, nodule appeared up to 80 cm deep in soil and the nodule biomass was 1,070 kg/ha, which was the highest value reported for several actinorhizal plants in the temperate regions. It is suggested that nodule distribution and production are mainly influenced by soil aeration among environmental factors. The higher ammonification or lower nitrification rate contrasted markedly with the earlier studies that reported lower ammonification or higher nitrification in actinorhizal plant soil. Nitrogen mineralization rate around the rhizosphere with root and nodule was characterized by higher nitrification rate than that in the control soil without root and nodule.

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경기도(京畿道) 광릉(光陵) 상수리나무 성숙림(成熟林)의 질소(窒素) 무기화(無機化)에 관(關)한 연구(硏究) (Nitrogen Mineralization and Nitrification in a Mature Quercus acutissima Stand in Kwangnung, Kyonggi Province)

  • 김춘식
    • 한국산림과학회지
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    • 제87권1호
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    • pp.20-26
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    • 1998
  • 경기도 광릉 중부임업시험장 내에 위치한 상수리나무임분의 무기 질소 동태를 구명하기 위하여 3개의 $20{\times}10m$의 조사구를 선정하고 각 조사구로부터 직경 5cm, 김이 15cm 토양을 비닐주머니매설 배양법을 이용하여 1995년 11월부터 96년 11월까지 1년 동안 조사하였다. 조사 기간 동안 질소 무기화량은 95.2mg/kg/yr, 질산화량은 65.4mg/kg/yr 이었으며, 질산화가 질소 무기화에 차지하는 비율은 69%였다. 질소 무기화나 질산화에 영향을 미치는 환경 인자 중 토양 온도나 토양 수분 조건은 이 임분의 질소 무기화나 질산화에 큰 영향을 미치지 않았다.

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하계 강화도 갯벌의 혐기성 유기물 분해능 및 황산염 환원력 (Anaerobic Mineralization of Organic Matter and Sulfate Reduction in Summer at Ganghwa Intertidal Flat, Korea)

  • 현정호;목진숙;조혜연;조병철;최중기
    • 한국습지학회지
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    • 제6권1호
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    • pp.117-132
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    • 2004
  • 갯벌이나 연안습지의 생태구조 및 생지화학적 물질 순환을 이해하기 위해서는 유기물 분해기능 평가 및 분해경로에 대한 연구가 필수적으로 진행되어야 함에도 불구하고 국내에는 이에 대한 연구가 거의 없다. 본 논문에서는 하계 강화도 남단의 갯벌에서 미생물에 의한 혐기성 유기물 분해정도를 파악하고, 황산염 환원을 통한 유기물 분해경로의 정량적 중요성을 평가하고자 하였다. 유기물 분해율은 깊이 6 cm 이내에서 $41.9{\sim}89.4mmol\;m^{-2}d^{-1}$의 범위로 나타났으며, 이를 강화도 갯벌의 전체 면적(약 $300km^2$)으로 환산할 경우, 하루에 216 ton의 유기물이 혐기적 과정을 통해 분해되는 것으로 계산되었다. 이러한 결과는 하구갯벌인 강화도 갯벌의 유기물 분해능이 생산력이 높은 염습지의 유기물 분해능에 비해 결코 뒤지지 않음을 보여주는 결과이다. 한편, 인위적으로 유기물(acetate)을 공급하였을 경우 유기물 분해율이 약 2배~5배의 증가율을 나타냈다. 이러한 결과는 미생물의 유기물 분해가 이용 가능한 유기물의 공급 부족에 의해 제한되고 있음을 의미한다. 한편 깊이 6 cm 이내에서 적분한 황산염 환원율은 $20.7{\sim}45.1mmol\;SO{_4}^{2-}m^{-2}d^{-1}$의 범위로 나타났으며, 전체 혐기성 유기물 분해의 대부분을 차지하였다. 이러한 연구결과는 황산염 환원력의 과도한 증대가 향후 갯벌 주변 생태계의 생물 다양성 감소로 이어질 수 있음을 시사하는 것이다.

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