• 제목/요약/키워드: Soil Organic Carbon(SOC)

검색결과 39건 처리시간 0.025초

The extent of soil organic carbon and total nitrogen in forest fragments of the central highlands of Ethiopia

  • Tolessa, Terefe;Senbeta, Feyera
    • Journal of Ecology and Environment
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    • 제42권4호
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    • pp.163-173
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    • 2018
  • Background: Deforestation and degradation are currently affecting the ecosystem services of forests. Among the ecosystem services affected by deforestation and degradation are the amount of soil organic carbon (SOC) and total nitrogen (TN) stored in forest soils which have greater impacts in global climate change. This study aimed at examining the amount of SOC and TN in the forest fragments which were separated from the continuous tracts of forests of Jibat and Chillimo through fragmentation processes over four decades. Methods: We have sampled soils from 15 forest fragments of Chillimo and Jibat in the central highlands of Ethiopia. The soil samples obtained in two separate soil depths (0-30 and 30-60 cm) were bulked, dried, and sieved for analysis. Results: Our results have shown that the two sites (Jibat and Chillimo forest fragments) differed in their SOC and TN contents. While the values for Jibat were found to be 29.89 Mg/ha of SOC and 2.84 Mg/ha for TN, it was 14. 06 Mg/ha of SOC and 1.40 Mg/ha for TN for Chillimo. When all forest fragment soil samples were bulked together, Jibat site had twice the value of SOC and TN than Chillimo. When disaggregated on the basis of each fragments, there existed differences in SOC (1.86 Mg/ha and 42.15 Mg/ha) and TN (0.24 Mg/ha and 4.23 Mg/ha) values. Among the forest fragments, fragment four ($F_4$) had the highest Relative Soil Improvement Index (RSII) value of 3826.82% and fragment fifteen ($F_{15}$) had the lowest RSII value (726.87%) which indicated that the former had a better quality of soil properties than the latter. Conclusion: SOC and TN differed across sampled fragments and sites. Variations in soil properties are the reflections of inherent soil parent material, aboveground vegetation, human interferences, and other physical factors. Such differences could be very important for identifying intervention measures for restoration and enhancing ecosystem services of those fragments.

Soil organic carbon characteristics relating to geomorphology near Vestre Lovénbreen moraine in Svalbard

  • Jung, Ji Young;Lee, Kyoo;Lim, Hyoun Soo;Kim, Hyun-Cheol;Lee, Eun Ju;Lee, Yoo Kyung
    • Journal of Ecology and Environment
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    • 제37권2호
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    • pp.69-79
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    • 2014
  • Soil organic carbon (SOC) in the Arctic is vulnerable to climate change. However, research on SOC stored in the high Arctic regions is currently very limited. Thus, this study was aimed at understanding the distribution and characteristics of SOC with respect to geomorphology and vegetation in Svalbard. In August 2011, soil samples were collected near the Vestre Lov$\acute{e}$nbreen moraine. Sampling sites were chosen according to altitude (High, Mid, and Low) and differences in levels of vegetation establishment. Vegetation coverage, aboveground biomass, and SOC contents were measured, and density-size fractionation of SOC was conducted. The SOC content was the highest in the Mid site ($126.9mg\;g^{-1}$) and the lowest in the High site ($32.1mg\;g^{-1}$), although aboveground biomass and vegetation coverage were not different between these two sites. The low SOC content measured at the High site could be related to a slower soil development following glacial retreat. On the other hand, the Low site contained a high amount of SOC despite having low vegetative cover and a high ratio of sand particles. These incompatible relationships between SOC and vegetation in the Low site might be associated with past site disturbances such as runoff from snow/glacier melting. This study showed that geomorphological features combined with glacier retreat or melting snow/glacier effects could have affected the SOC distribution and vegetation establishment in the high Arctic.

Estimation of Soil Organic Carbon Stock in South Korea

  • Thi, Tuyet-May Do;Le, Xuan-Hien;Van, Linh Nguyen;Yeon, Minho;Lee, Giha
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2022년도 학술발표회
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    • pp.159-159
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    • 2022
  • Soil represents a substantial component within the global carbon cycle and small changes in the SOC stock may result in large changes of atmospheric CO2 particularly over tens to hundreds of years. In this study, we aim to (i) evaluate the SOC stock in the topsoil 0 - 15 cm from soil physical and chemical characteristics and (ii) find the correlation of SOC and soil organic matter (SOM) for national-scale in South Korea. First of all, based on the characteristics of the soil to calculate the soil hydraulic properties, SOC stock is the SOC mass per unit area for a given depth. It depends on bulk density (BD-g/cm3), SOC content (%), the depth of topsoil (cm), and gravel content (%). Due to insufficient data on BD observation, we establish a correlation between BD and SOC content, sand content, clay content parameter. Next, we present linear and non-linear regression models of BD and the interrelationship between SOC and SOM using a linear regression model and determine the conversion factor for them, comparing with Van Bemmelen 1890's factor value for the country scale. The results obtained, helps managers come up with suitable solutions to conserve land resources.

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Organic Carbon Distribution of the Pinus densiflora Forest on Songgye Valley at Mt. Worak National Park

  • Jeon, In-Yeong;Shin, Chang-Hwan;Kim, Gwang-Hoon;Mun, Hyeong-Tae
    • Journal of Ecology and Environment
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    • 제30권1호
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    • pp.17-21
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    • 2007
  • The organic carbon (OC) distribution of Pinus densiflora forest in Songgye valley at Mt. Worak National Park were studied as a part of the National Long-Term Ecological Research in Korea. In order to investigate the OC distribution, OC in plant biomass, litterfall, litter layer on forest floor, and soil were estimated. The density of P. densiflora forest was 1,300 trees/ha, average DBH was $15.2{\pm}6.17\;cm$ and average tree height was $10.7{\pm}2.56\;m$. The shrub layer was dominated by shrubby Quercus variabilis, Fraxinus sieboldiana and lndigofera kirilowii with low frequency, and herb layer was dominated by Pteridium aquilinum and Miscanthus sinensis. Total amount of OC stored in this pine forest was 142.78 ton C/ha. Organic carbon stored in soil and plant biomass accounted for 59.2% and 37.8%, respectively. Amount of OC distributed in trees, shrubs, herbs and litter layer in this pine forest was 51.79, 2.03, 0.12 and 4.29 ton C/ha, respectively. Amount of OC returned to forest floor via litterfall was $1.50\;ton\;C\;ha^{-1}\;yr^{-1}$. Soil organic carbon (SOC) decreased along the soil depth. Total amount of SOC within 50cm soil depth was $84.55\;ton\;C\;ha^{-1}\;50\;cm-depth^{-1}$.

Effect of Carbonized Biomass Application on Organic Carbon Accumulation and Soy Bean Yields in Upland Soil

  • Lee, Sun-Il;Park, Woo-Kyun;Kim, Gun-Yeob
    • 한국토양비료학회지
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    • 제49권1호
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    • pp.1-6
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    • 2016
  • Carbonized biomass could be used as a mechanism for long-term storage of C in soils. However, experimental results are variable. Objective of this study was carried out to evaluate the effect of carbonized biomass made from soybean residue on soil organic carbon and seed yield during soybean cultivation. The carbonized biomass was made by field scale mobile pyrolyzer. Pyrolyzer was performed in a reactor operated at $400{\sim}500^{\circ}C$ for 2 hours using soybean residue. The treatments consisted of four levels as the control without input and three levels of carbonized biomass inputs as $357kg\;ha^{-1}$, C-1 ; $714kg\;ha^{-1}$, C-2 ; $1,428kg\;ha^{-1}$, C-3. It was appeared that seed yield of soybean was $2,847kg\;ha^{-1}$ for control, $2,897kg\;ha^{-1}$ for C-1, $2,946kg\;ha^{-1}$ for C-2 and $3,211kg\;ha^{-1}$ for C-3 at the end of experiment. It was shown that the contents of SOC were $5.21g\;kg^{-1}$ for C-1, $5.93g\;kg^{-1}$ for C-2, $7.00g\;kg^{-1}$ for C-3 and $4.73g\;kg^{-1}$ for the control at the end of experiment. Accumulated SOC contents linearly significantly (P < 0.001) increased with increasing the carbonized biomass input. The slopes (0.00162) of the regression equations suggest that SOC contents from the soil increase by $0.162g\;kg^{-1}$ with every $100kg\;ha^{-1}$ increase of carbonized biomass rate. Consequently the carbonized biomass for byproducts such as soybean residue could increase SOC. It might be considered that the experimental results will be applied to soil carbon sequestration for future study. More long-term studies are needed to prove how long does SOC stay in agricultural soils.

SOIL ORGANIC CARBON APPRAISAL IN A SEMI-EVERGREEN FOREST, EASTERN GHATS OF INDIA AS A RESULT OF DEGRADATION - A GEOSPATIAL STUDY

  • Jayakumar, S.;Ramachandran, A.;Bhaskaran, G.;Cho, Hyoung-Sig;Heo, Joon
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2007년도 Proceedings of ISRS 2007
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    • pp.98-100
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    • 2007
  • Tropical forests have variety of biodiversity values, which provide invaluable services to the living being on earth. In the recent years, tropical forests are regarded as valuable global resources that act as sink for carbon dioxide in order to mitigate global climatic change. In many parts of the world, tropical forests are being rapidly cleared by various means. Soil organic carbon (SOC) is concentrated in the upper 12 inches of the soil. So it is readily depleted owing to the degradation activities. In the present study, it was aimed to assess the magnitude of disturbance in the availability of SOC in a semi- evergreen forest, situated in the Eastern Ghats of Tamil Nadu, India. The forest density of this region was mapped with QuickBird satellite data. Intensive field soil sampling and floristic study were conducted to estimate the SOC status in different density classes and to identify the species availability. The SOC density ranged from 274.06 t/ha to 147.84 t/ha in the very dense and degraded semi-evergreen forest respectively. The SOC content was also varied from 3.70 to 1.83 % in the very dense semi-evergreen and medium semi-evergreen forests respectively. The species composition in different density classes was also varied considerably. As a result of this study, it was identified that the disturbance to forests by various means not only affect the density of forests but also affect the below ground SOC status proportionately.

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논 토양의 유기탄소 변동에 관한 비료와 개량제의 장기연용 효과 (Long-term Application Effects of Fertilizers and Amendments on Changes of Soil Organic Carbon in Paddy Soil)

  • 김명숙;김유학;강성수;윤홍배;현병근
    • 한국토양비료학회지
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    • 제45권6호
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    • pp.1108-1113
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    • 2012
  • 1954년부터 운영해온 장기 연용 포장은 벼를 경작하는 체계에서 토양의 비옥도를 향상하기 위한 방안을 모색하고자 수행되었다. 59년 동안의 시험에서 볏짚퇴비의 시용은 토양의 유기탄소 함량을 41년 이후에 최대 $19{\sim}20g\;kg^{-1}$까지 도달하게 하였고, 볏짚퇴비를 시용하지 않은 것보다 표토에서는 1.4배, 심토에서는 2배까지 높아지게 하였다. 또한 처리구별로 토양용액중의 수용성유기탄소의 함량도 달라졌는데, 퇴비구에서 가장 높았고, 종합개량구에서는 퇴비구의 1/2 수준으로 환경으로 유출되는 수용성 유기탄소의 양이 감소하였다. 화학비료와 볏짚퇴비, 그리고 토양개량제인 규산질비료를 59년 동안 시용하였을 때, 토양의 pH, 유효인산, 치환성 양이온, 유효규산 함량 모두 증가하였다. 따라서, 무기질 비료와 유기질비료, 그리고 토양개량제인 규산질비료를 혼용하는 것은 토양의 탄소축적을 증대시키고, 환경으로 유출될 수 있는 수용성탄소의 함량을 감소시키며, 토양비옥도의 질을 향상시켜 작물을 안정적으로 생산할 수 있는 가장 적합한 방법이라 생각된다.

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.

동일비료장기연용 논에서 토양유기탄소의 변동 (Long-term Impact of Single Rice Cropping System on SOC Dynamics)

  • 정원교;김선관;연병열;노재승
    • 한국토양비료학회지
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    • 제40권4호
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    • pp.292-297
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    • 2007
  • 이산화탄소 등 온실가스의 농도 증가로 인한 지구온난화 에 따른 기후의 변화 및 환경적 영향이 증가하고 있으며 토양내 유기탄소의 축적을 통해 대기 중 이산화탄소등 온실 가스의 감축을 효과적으로 제어할 수 있는 방법들이 연구되어 보고되고 있으나, 우리나라의 논의 경우에는 토양유기탄소의 토양 축적에 관한 연구가 매우 적게 보고되고 있다. 따라서 우리나라 주요 경지 이용형태인 논에 대해서도 토양중 탄소를 축적할 수 있는 토양관리 방법의 연구가 매우 필요하게 되었다. 본 연구는 농촌진흥청 농업과학기술원 동일비료 및 개량제 처리 장기시험 포장에서 퇴비, NPK 비료, 석회, 및 규산등의 처리구별 토양유기탄소의 동태를 분석하였다. 연구결과 인산, 칼리 및 석회의 시용은 장기간 시용한 이후에 처리한 구에서 미처리구에서 보다 토양유기탄소의 함량이 높게 나타났다. 한편 퇴비 시용구의 경우 퇴비 미시용구에서 보다 퇴비 시용구에서 토양유기탄소의 함량이 지속적으로 증가하는 것으로 나타났으며 시간이 지날수록 유기탄소축적비율도 증가하는 것으로 나타났다. 결론적으로 단일 논 작부체계하에서 장기간 지속적인 퇴비의 시용 결과 토양 중 유기탄소의 효과적인 축적이 이루어 졌다. 따라서 우리나라 논에서 중 유기탄소의 축적을 위하여 퇴비의 지속적인 시용을 제안하고자 한다.

Soil Organic Carbon of Soil Series from 2003 to 2010 in Korea

  • Kim, Yoo Hak;Kang, Seong Soo;Kim, Myung Sook;Kong, Myung Suk;Choi, Soon Kun;Oh, Taek Keun
    • 한국토양비료학회지
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    • 제46권6호
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    • pp.623-640
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    • 2013
  • Soil organic carbon (SOC) of soil series is necessary to calculate soil C sequestration due to IPCC default categorized by climate regions and by soil types. The 3,400 thousand data were downloaded from agricultural soil information system and analyzed to get averages of soil order, soil series, and textual family for the three different soil management practices in Korea. The SOC content was $13.3{\pm}5.38g\;kg^{-1}$ in paddy field, $13.7{\pm}7.19g\;kg^{-1}$ in upland field, and $15.2{\pm}8.22g\;kg^{-1}$ in orchard soil, respectively. As SOC in orchard was 10% greater than that in upland, orchard must be managed with applying compost. The SOCs of inceptisols, which was largely distributed in Korea, were $13.6{\pm}5.48g\;kg^{-1}$ in paddy field, $14.1{\pm}7.38g\;kg^{-1}$ in upland field, and $15.3{\pm}8.20g\;kg^{-1}$ in orchard soil, respectively. The SOCs of alfisols were $13.6{\pm}4.96g\;kg^{-1}$ in paddy field, $13.7{\pm}6.99g\;kg^{-1}$ in upland field, and $15.6{\pm}8.59g\;kg^{-1}$ in orchard soil, respectively. The SOCs of entisols were $11.7{\pm}5.16g\;kg^{-1}$ in paddy field, $12.8{\pm}7.05g\;kg^{-1}$ in upland field, and $13.7{\pm}7.81g\;kg^{-1}$ in orchard soil, respectively. The SOCs of ultisols were $12.7{\pm}4.79g\;kg^{-1}$ in paddy field, $12.7{\pm}6.22g\;kg^{-1}$ in upland field, and $16.3{\pm}8.49g\;kg^{-1}$ in orchard soil, respectively. The fact that soils containing greater clay content in textual family had also more SOC content revealed that SOC could be also dependent on some soil properties as well as soil order. Because SOC differences among soil series representing same textual family were greater than those among textual family, SOC differences should be mainly affected by management practices such as compost application.