• 제목/요약/키워드: Organic matter mineralization

검색결과 71건 처리시간 0.025초

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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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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관악산의 잔디와 억새 생태계에 있어서 에너지의 흐름과 무기물의 순환 4.인의 순환 (The Energy Flow and Mineral Cycles In a Zoysia japonica and a Miscanthus sinensis Ecosystem on Mt. Kwanak 4. The Cycles of Phosphorus)

  • 장남기;김정석;강경미
    • 아시안잔디학회지
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    • 제9권4호
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    • pp.275-284
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    • 1995
  • In this investigation, the accumulation mineralization and annual cycle of organic P has been studied in grassland ecosysterns of a Z japonica grassland and a M sinensis grassland on Mt. Kwanak. The basic models of the accumulation and mineralization for ash components of a grass-litter have been presented as the equations (1), (2), and (3). The equations (7)~(10) for organic P are derived from these basic concepts. There was a highty significant relationship between organic matter and organic P. The estimates between organic matter and organic P correlated very high significance. The parameter factors k or k' of mineralization of organic P for the Z. japonica and M sinensis asslands were k=0.412 or k'=0.292 and k=0.224 or k'=0.183, respectively. The time required for a cycle to be completed from organic P to inorganic P of 50, 95 and 99 % are 3.9, 16.7 and 27.8 years in the Z. japonica grassland and 4.1, 17.7 and 29.4 years in the M sinensis grassland. The annual P cycle formulae for mineralization were based on the equations (5), (11) and (12). Annual yields of mineralization for organic P in the steady state grasslands of Z. japonica and M sinensis were 0.407 and 0.504g /$m^2$, respectively.

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Effect of Decomposition on Nitrogen Dynamics in Soil Applied with Compost and Rye

  • Ko, Byong-Gu;Kim, Myung-Sook;Park, Seong-Jin;Yun, Sun-Gang;Oh, Taek-Keun;Lee, Chang Hoon
    • 한국토양비료학회지
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    • 제48권6호
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    • pp.648-657
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    • 2015
  • Soil organic matter (SOM) plays an important role in the continuous production and environmental conservation in arable soils. In particular, the decomposition of organic matter in soil might promote soil organic matter and fertility due to the mineralization of N. In this study, to evaluate the effect of organic matter amendment on the C mineralization and N dynamic, $CO_2-C$ flux, extractable N and $N_2O$ emission were determined using closed chamber for 4 weeks at 10, 15, $20^{\circ}C$ of incubation temperature after the mixture of $2Mgha^{-1}$ rice straw compost and rye in sandy loam and clay loam. Regardless of soil texture, decomposition rates of rice straw compost and rye at $10{\sim}20^{\circ}C$ of incubation temperature ranged from 0.9 to 3.8% and 8.8 to 20.3%, respectively. Rye application in soil increased $NH_4-N$ and $NO_3-N$ content as well as the $N_2O$ emission compared to the rice straw compost. After incubation for 4 weeks, total C content in two soils was higher in rice straw compost than in rye application. In conclusion, application of rice straw compost and rye to soil was able to improve the soil organic matter and fertility. However, organic matter including the recalcitrant compounds like rice straw compost would be effective on the management of soil organic matter and the reduction of greenhouse gases in soil.

우라늄 광화작용(鑛化作用)에 기여(寄與)하는 유기물질(有機物質)의 역할(役割) (The role of organic matter associated with uranium mineralization)

  • 오천혁;김종환
    • 자원환경지질
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    • 제21권3호
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    • pp.319-329
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    • 1988
  • As a factor which can help to understand the genesis of (mata) sedimentary and/or hydrothermal uranium depisits, an interpretation of the role of organic matter associated with uranium mineralization, was attempted with the literature published up to the end of 1986. Laboratory studies, in which diageneis and metamorphism are artificially simulated, can help to elucidate how uranium with particular organic materials are formed and destroyed. Similarly, research involving a variety of techniques is needed to characterize both the soluble organic extracts (bitumen) and the insoluble organic matter (kerogen), separated from uranium ores and associated rocks. In the presence of clay minerals and amorphous oxy-hydroxde minerals, an understanding of the role of organic matter must be prudent and may require the incorporation of multidisciplinary approach (mineralogy, inorganic geochemistry ...).

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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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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.

고추 재배 밭에서 채취한 토양의 유기물 함량과 질소 무기화 량의 관계 (Relation of Organic Matter Content and Nitrogen Mineralization of Soils Collected from Pepper Cultivated Land)

  • 이예진;이슬비;김양민;송요성;이덕배
    • 한국환경농학회지
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    • 제38권3호
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    • pp.119-123
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    • 2019
  • 우리나라 노지 밭토양의 질소 비료 추천은 토양 유기물 범위에 따라 차등하여 추천한다. 토양 유기물 함량에 따른 질소 공급 가능량을 확인하기 위하여 노지 고추 재배 밭토양에서 작물 재배 전 토양을 채취하여 70일간 누적 질소 무기화량을 구하였다. 토양 유기물 함량(SOM)과 무기화 될 수 있는 토양 질소(SNM)의 관계식은 '$MSN(kg\;10a^{-1})=0.2933{\ast}SOM(g\;kg^{-1})+0.0897$ ($r^2=0.6224$, P<0.001)'이었다. 토양 유기물 범위별 평균 질소 무기화량은 각각 10.5, 26.6, 83.3, 105.6 mg kg-1으로 토양 유기물 함량이 많을수록 질소 무기화량도 많았으나, 같은 토양 유기물 범위에 속하는 토양이어도 질소 무기화량은 약 3~4.6배 차이가 있었다. 따라서 밭토양 질소 관리를 위해서는 토양 특성에 따른 질소 공급량 예측을 통해 질소 비료를 추천하는 것이 중요하다.

혐기성 해양환경에서 철 환원세균에 의한 유기물 분해 및 생물정화 (Significance of Dissimilatory Fe(III) Reduction in Organic Matter Oxidation and Bioremediation of Environmental Contaminants in Anoxic Marine Environments)

  • 현정호
    • 한국해양학회지:바다
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    • 제10권3호
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    • pp.145-153
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    • 2005
  • 산소가 고갈된 혐기성 환경의 유기물 분해 및 물질순환에서 철 환원반응의 생태/환경적 중요성에 대해 고찰하였다. 다양한 해양환경에서 유기물 분해 시 철 환원이 차지하는 중요성은 미약한 수준에서 거의 $100\%$에 이르기까지 그 범위가 극단적으로 다양하게 나타났다. 일반적으로 철 환원은 Fe(III)의 농도가 높은 곳에서 황산염 환원보다 중요한 유기물 분해 경로로 나타나, 유기물 분해에서 철 환원의 중요성은 철 환원세균이 이용 가능한 Fe(III)의 공급정도에 의해 결정되는 것으로 인식되었다. 산소공급이 미약한 연안혐기성 퇴적토 내에서 Fe(III)의 공급은: (1)조석에 의한 퇴적물 내 공극수의 교환(tidal flushing): (2)저서동물에 의한 생물교란: (3)식생의 유무에 따른 퇴적물의 산화/환원 상태의 변화 등에 의해 주로 영향을 받는 것으로 나타났다 철 환원세균에 의한 유기물 분해 및 다양한 금속원소의 전환기능을 이용한 특정 유기오염원과 금속오염원의 생물정화는 우리나라와 같이 부영양화된 연안생태환경의 개선 및 독성 유t무기 오염원의 생물정화 등 연안역의 환경친화적 관리가 절실히 요구되는 환경에서 생태/환경공학 분야의 유용한 해결수단으로 간주된다.

Survival and Performance of Two Cellulose-Degrading Microbial Systems Inoculated into Wheat Straw-Amended Soil

  • Li, Peipei;Zhang, Dongdong;Wang, Xiaojuan;Wang, Xiaofen;Cui, Zongjun
    • Journal of Microbiology and Biotechnology
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    • 제22권1호
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    • pp.126-132
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    • 2012
  • A cellulose-degrading composite microbial system containing a mixture of microbes was previously shown to demonstrate a high straw-degrading capacity. To estimate its potential utilization as an inoculant to accelerate straw biodegradation after returning straw to the field, two cellulose-degrading composite microbial systems named ADS3 and WSD5 were inoculated into wheat straw-amended soil in the laboratory. The microbial survival of the inoculant was confirmed by a denaturing gradient gel electrophoresis (DGGE) analysis, whereas the enhancement of straw degradation in soil was assessed by measuring the mineralization of the soil organic matter and the soil cellulase activity. The results indicated that most of the DGGE bands from ADS3 were detected after inoculation into straw-amended autoclaved soil, yet only certain bands from ADS3 and WSD5 were detected after inoculation into straw-amended non-autoclaved soil during five weeks of incubation; some bands were detected during the first two weeks after inoculation, and then disappeared in later stages. Organic matter mineralization was significantly higher in the soil inoculants ADS3 and WSD5 than in the uninoculated controls during the first week, yet the enhanced degradation did not persist during the subsequent incubation. Similar to the increase in soil organic matter, the cellulase activity also increased during the first week in the ADS3 and WSD5 treatments, yet decreased during the remainder of the incubation period. Thus, it was concluded that, although the survival and performance of the two inoculants did not persist in the soil, a significant enhancement of degradation was present during the early stage of incubation.