• 제목/요약/키워드: soil organic carbon storage values

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토양 특성을 이용한 토양유기탄소저장량 산정 모형 개발 (Development of Soil Organic Carbon Storage Estimation Model Using Soil Characteristics)

  • 이태화;김상우;신용철;정영훈;임경재;양재의;장원석
    • 한국농공학회논문집
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    • 제61권6호
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    • pp.1-8
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    • 2019
  • Carbon dioxide is one of the major driving forces causing climate changes, and many countries have been trying to reduce carbon dioxide emissions from various sources. Soil stores more carbon dioxide(two to three times) amounts than atmosphere indicating that soil organic carbon emission management are a pivotal issue. In this study, we developed a Soil Organic Carbon(SOC) storage estimation model to predict SOC storage amounts in soils. Also, SOC storage values were assessed based on the carbon emission price provided from Republic Of Korea(ROK). Here, the SOC model calculated the soil hydraulic properties based on the soil physical and chemical information. Base on the calculated the soil hydraulic properties and the soil physical chemical information, SOC storage amounts were estimated. In validation, the estimated SOC storage amounts were 486,696 tons($3.526kg/m^2$) in Jindo-gun and shown similarly compared to the previous literature review. These results supported the robustness of our SOC model in estimating SOC storage amounts. The total SOC storage amount in ROK was 305 Mt, and the SOC amount at Gyeongsangbuk-do were relatively higher than other regions. But the SOC storage amount(per unit) was highest in Jeju island indicating that volcanic ashes might influence on the relatively higher SOC amount. Based on these results, the SOC storage value was shown as 8.4 trillion won in ROK. Even though our SOC model was not fully validated due to lacks of measured SOC data, our approach can be useful for policy-makers in reducing soil organic carbon emission from soils against climate changes.

Statistically estimated storage potential of organic carbon by its association with clay content for Korean upland subsoil

  • Han, Kyung-Hwa;Zhang, Yong-Seon;Jung, Kang-Ho;Cho, Hee-Rae;Seo, Mi-Jin;Sonn, Yeon-Kyu
    • 농업과학연구
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    • 제43권3호
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    • pp.353-359
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    • 2016
  • Soil organic carbon (SOC) retention has gradually gotten attention due to the need for mitigation of increased atmospheric carbon dioxide and the simultaneous increase in crop productivity. We estimated the statistical maximum value of soil organic carbon (SOC) fixed by clay content using the Korean detailed soil map database. Clay content is a major factor determining SOC of subsoil because it influences the vertical mobility and adsorption capacity of dissolved organic matter. We selected 1,912 soil data of B and C horizons from 13 soil series, Sangju, Jigog, Jungdong, Bonryang, Anryong, Banho, Baegsan, Daegog, Yeongog, Bugog, Weongog, Gopyeong, and Bancheon, mainly distributed in Korean upland. The ranges of SOC and clay content were $0-40g\;kg^{-1}$ and 0 - 60%, respectively. Soils having more than 25% clay content had much lower SOC in subsoil than topsoil, probably due to low vertical mobility of dissolved organic carbon. The statistical analysis of SOC storage potential of upland subsoil, performed using 90%, 95%, and 99% maximum values in cumulative SOC frequency distribution in a range of clay content, revealed that these results could be applicable to soils with 1% - 25% of clay content. The 90% SOC maximum values, closest to the inflection point, at 5%, 10%, 15%, and 25% of clay contents were $7g\;kg^{-1}$, $10g\;kg^{-1}$, $12g\;kg^{-1}$, and $13g\;kg^{-1}$, respectively. We expect that the statistical analysis of SOC maximum values for different clay contents could contribute to quantifying the soil carbon sink capacity of Korean upland soils.

유기 논토양의 토양탄소 저장효과 평가 (Evaluation of Soil Carbon Storages in the Organic Farming Paddy Fields)

  • 한양수;남홍식;박광래;이영미;이병모;박기춘
    • 유기물자원화
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    • 제28권1호
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    • pp.73-82
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    • 2020
  • 본 연구는 토양의 탄소저장 능력과 관련하여 유기 및 관행 재배에 따른 차이를 비교분석하고, 이를 바탕으로 예측된 토양탄소 저장량에 대한 경제적 가치를 평가하고자 2018년 3월부터 5월 사이에 수행하였다. 전국 6개 지역에서 107개의 유기 및 관행 벼 재배토양을 분석한 결과 부여-I 지역을 제외하고, 나머지 5개 지역(부여-II, 김해, 산청-I, II, 순천)은 유기토양의 탄소 함량이 관행토양 탄소함량보다 높게 나타났다. 이를 바탕으로 토양탄소 저장량을 분석한 결과, 유기토양(36.1 MgC ha-1)이 관행토양(29.4 MgC ha-1)보다 약 23 % 많은 토양탄소를 저장한 것으로 나타났다. KOSIS (KOrea Statistical Information Service)의 탄소배출권 가격으로 추정한 유기 및 관행 재배의 단위 면적당 토양탄소 저장량에 대한 경제적 가치는 유기토양 758,100원 ha-1과 관행토양 617,400원 ha-1으로 나타났고, 우리나라 전체 논토양의 탄소저장량 가치는 5,281억 원이며, 이 중 친환경논토양의 가치는 367억 원, 관행논토양의 가치는 4,914억 원으로 추정되었다. 우리나라 전체 논토양의 5.7 %인 친환경논토양의 면적을 확대하는 것이 전체 논토양의 탄소저장량 가치를 향상시키는데 효과적이라 판단된다.

Properties of Soils under Different Land Uses in Chittagong Region, Bangladesh

  • Akhtaruzzaman, Md.;Osman, K.T.;Sirajul Haque, S.M.
    • Journal of Forest and Environmental Science
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    • 제31권1호
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    • pp.14-23
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    • 2015
  • In this study, we investigated the effects of three land uses on soil properties in two soil layers; surface soil (0~15 cm) and subsoil (15~30 cm). Soil samples were collected from planted forest, barren lands and cultivated lands from different areas in Chittagong Cox's Bazar and analyzed for some physical and chemical properties. Results showed that soil textural class varied from sandy clay loam in planted forest and barren land site to sandy loam in cultivated soils. Maximum water holding capacity was higher in forest followed by barren land and the lowest in cultivated lands. At both soil depths, soils of cultivated land showed the highest values of bulk density (1.42 to $1.50g\;cm^{-3}$), followed by barren lands (1.37 to $1.46g\;cm^{-3}$) and the least (1.32 to $1.45g\;cm^{-3}$) in forest soils. Total porosity decreased with depth ranging from 40.24% to 41.53% in subsoils and from 42.04 to 43.23% in surface soil of cultivated and of planted forest sites respectively. The result further revealed that organic carbon (OC) and total nitrogen (TN) contents were higher in the planted forest soil than in other two land uses. The soils of all land uses under study are acidic in nature and the lowest pH was found in both surface and subsoils of barren land. Cultivated soil contained the highest amount of available P, Ca, Mg and K in both surface soil and subsoils. In contrast, barren site had the lowest contents of available P, Ca, Mg and K in both layers. The soil organic carbon (SOC) and total N storage were higher in planted forest than in barren and cultivated land uses.

지리산국립공원 낙엽활엽수림 세 군락의 탄소저장량 평가 (Estimation of Carbon Storage in Three Cool-Temperate Broad-Leaved Deciduous Forests at Jirisan National Park, Korea)

  • 이나연
    • 환경생물
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    • 제30권2호
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    • pp.121-127
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    • 2012
  • 지리산국립공원 산림생태계의 탄소 수지에 관한 기초자료를 확보하기 위해 낙엽활엽수림에 대한 탄소저장량을 추정하였다. 지리산국립공원의 대표 낙엽활엽수림 군락을 중심으로 뱀사골 지구, 중산리 지구, 성삼재 지구로 나누어 조사구 ($30m{\times}30m$, 3지점)를 설치, 식생권과 토양권의 탄소저장량을 추정하였다. 식생권의 탄소량은 $107{\sim}119tC\;ha^{-1}$의 범위로 평균 약 $112tC\;ha^{-1}$ 정도의 양을 축적하고 있다. 또한 토양권의 탄소량은 $64{\sim}77tC\;ha^{-1}$의 범위로 평균 약 $66tC\;ha^{-1}$ 정도의 양을 축적하고 있다. 토양권과 식생권을 포함한 생태계 전체의 탄소저장량은 $167{\sim}184tC\;ha^{-1}$의 범위로 평균 약 $178tC\;ha^{-1}$ 정도의 양을 축적하고 있다. 값의 범위에서 알 수 있듯이 지구별 차이는 크게 나타나지 않았다. 다른 연구 결과와 비교하여 설악산국립공원을 비롯한 강원권 생태계를 제외하고 매우 많은 양의 탄소가 저장되어 있음을 알 수 있다.

Carbon balance and net ecosystem production in Quercus glauca forest, Jeju Island in South Korea

  • Jeong, Heon Mo;You, Young Han;Hong, Seungbum
    • Journal of Ecology and Environment
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    • 제46권3호
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    • pp.250-258
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    • 2022
  • Background: To assess the carbon sequestration capacity and net ecosystem productivity (NEP) of Quercus glauca forests, we analyzed the net primary productivity (NPP), carbon storage, and carbon emission of soil in a Q. glauca forest on Jeju Island (South Korea) from 2016 to 2018. Results: The average carbon stock in the above- and below-ground plant biomass was 223.7 Mg C ha-1, while the average amount of organic carbon fixed by photosynthesis was 9.8 Mg C ha-1 yr-1, and the average NPP was 9.6 Mg C ha-1 yr-1. Stems and branches contributed to the majority of the above- and below-ground standing biomass and NPP. The average heterotrophic carbon emission from the soil was 8.7 Mg C ha-1 yr-1, while the average NEP was 1.1 Mg C ha-1 yr-1. Although the carbon stock, carbon absorption, and soil respiration values were higher than those reported in other oak forests in the world, the NEP was similar or lower. Conclusions: These results indicator that Q. glauca forests perform the role of a large carbon sink through the CO2 absorption in the plants in terms of carbon balance. And it is judged to be helpful as data for assessment of carbon storage and flux in the forests and mitigation of elevated CO2 in the atmosphere.

폐탄광 산림복구지의 수종별 탄소 저장량 추정: 자작나무, 잣나무, 소나무류 식재지를 중심으로 (Estimation of carbon storage in reclaimed coal mines: Focused on Betula platyphylla, Pinus koraiensis and Pinus spp. plantations)

  • 김광은;김성준;김현준;장한나;김형섭;박용하;손요환
    • 환경생물
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    • 제38권4호
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    • pp.733-743
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    • 2020
  • 본 연구는 폐탄광에서 산림으로 복구된 지역의 임목, 낙엽층, 토양, 그리고 산림의 총 탄소 저장량을 추정하고, 수종별 탄소 저장량 차이를 비교하기 위해 수행되었다. 이를 위하여 강원도, 경상북도, 전라남도의 폐탄광 산림복구지에서 자작나무, 잣나무, 소나무류(소나무, 리기다소나무, 곰솔)가 서로 다른 시기에 식재된 산림과 주변의 일반 산림을 조사하였다. 일반 산림에 비하여 폐탄광 산림복구지 내 낙엽층 및 토양(ton C ha-1; 자작나무: 3.31±0.59 및 28.62±2.86, 잣나무: 3.60±0.93 및 22.26±5.72, 소나무류: 4.65±0.92 및 19.95±3.90), 그리고 산림의 총 탄소 저장량(ton C ha-1; 자작나무: 54.81±7.22, 잣나무: 47.29±8.97, 소나무류: 45.50±6.31)은 낮게 나타났으며, 임목 탄소 저장량(ton C ha-1; 자작나무: 22.57±6.18, 잣나무: 21.17±8.76, 소나무류: 20.80±6.40)은 자작나무가 식재된 곳에서만 낮은 결과가 나타났다. 수종별로 토양 탄소 저장량을 제외한 임목, 낙엽층, 산림의 총 탄소 저장량에서 차이가 나타나지 않았으며, 임목 및 산림의 총 탄소 저장량은 복구 후 경과시간에 따라 증가하는 경향을 보였다. 한편, 폐탄광 산림복구지의 자작나무와 소나무류에서 토양 pH 및 CEC가 낮게 나타났으며, 수종별 불안정탄소, 유효인산, 미생물 바이오매스 탄소가 일반 산림토양보다 2배 이상 낮은 결과를 보였다. 폐탄광 산림복구지에 석회 및 유기질 비료의 시비와 경운을 통해 토양 성질을 개선하고, 가지치기 및 간벌 등과 같은 산림관리로 임목 생육을 증진시키면 폐탄광 산림복구지 내 탄소 저장량을 증가시킬 수 있을 것으로 기대된다.