• 제목/요약/키워드: Soil carbon sequestration

검색결과 97건 처리시간 0.021초

옥수수 재배기간 동안 바이오차 시용 수준에 따른 탄소 격리량 산정 및 이익 분석 (Estimation of Carbon Sequestration and Its Profit Analysis with Different Application Rates of Biochar during Corn Cultivation Periods)

  • 신중두;최용수;이선일
    • 유기물자원화
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    • 제24권3호
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    • pp.83-90
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    • 2016
  • 바이오차 시용이 토양비옥도나 온실가스 완화에 기여하는 것 외에, 경작지 시용에 따른 탄소격리 및 순익 분석이 평가된바 거의 없다. 본 연구는 옥수수 재배 기간 동안 온실가스 완화에 대한 이익을 평가하고, 탄소격리를 산정하기 위해 수행되었다. 본 실험의 처리구는 돈분처리구, 돈분을 퇴비로 시용하면서 바이오차 처리를 2,600(0.2%), 13,000(1%), 및 26,000(2%) kg/ha로 나누어 시용하였다. 바이오차 시용에 따른 탄소 격리량을 예측하기 위해 Y = 0.5523X - 742.57 ($r^2=0.939^{**}$) 일차 모형식을 유도하였으며, 본 수식을 바탕으로 바이오차 0.2, 1 및 2% 시용 시 탄소 격리량은 각각 1,235, 3,978, 및 14,794 kg/ha로 산정되었고, 온실가스 완화는 각각 4.5, 14.6, 및 54.2 ton/ha로 평가 되었다. 이에 대한 이익 평가는 적게는 $14.6, 많게는 $452로 산정되었다. 또한 한국 기후변화 시장의 이산화탄소 시장 거래가로는 바이오차 0.2, 1 및 2% 시용 시 $35.6, $115.3 및 $428.2로 나타났다. 바이오차 시용에 대한 작물 재배에 있어, 초장과 수량은 처리간에 유의차가 인정되지 않았다. 따라서 본 실험결과는 농사활동에서 바이오차를 토양에 시용함으로서 탄소 배출건 거래제가 시행된다는 전제 조건하에 기초자료가 될 것이다.

밭토양에서 퇴비시용과 비닐멀칭이 토양탄소 축적에 미치는 영향 (Effects of Compost Application and Plastic Mulching on Soil Carbon Sequestration in Upland Soil)

  • 강점순;서정민;신현무;조재환;홍창오
    • 한국환경농학회지
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    • 제32권4호
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    • pp.260-267
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    • 2013
  • 본 연구는 고추재배시험 기간 동안 축분퇴비의 시용량과 비닐멀칭 유무에 따른 토양 유기탄소의 함량 변화와 토양 탄소의 안정화 정도를 조사하기 위해 실시되어졌다. 고추재배기간 동안 퇴비의 시용과 비닐멀칭 처리에 따라 토양 내 유기탄소 함량의 유의한 증가는 발견되어지지 않았다. 또한 퇴비시용과 비닐멀칭 처리에 의한 토양의 물리적 특성 변화는 관찰되지 않았다. 이러한 결과는 본 연구의 짧은 조사기간과 관련이 있는 것으로 판단된다. 그러나 퇴비의 시용에 의해 쉽게 분해 가능한 형태인 열수추출 가능한 탄소의 함량은 유의하게 감소하는 결과를 나타내었다. 추천량인 20 Mg/ha의 퇴비를 시용하였을 때 지하부의 바이오매스 함량이 최대를 나타내었다. 이상의 결과를 미루어 볼 때 장기적으로 추천량의 퇴비를 지속적으로 시용한다면 토양 유기탄소의 함량 증대와 안정화 정도를 향상시킬 수 있을 것으로 판단된다.

Evaluating Soil Carbon Changes in Paddy Field based on Different Fraction of Soil Organic Matter

  • Seo, Myung-Chul;Cho, Hyeon-Suk;Kim, Jun-Hwan;Sang, Wan-Gyu;Shin, Pyeong;Lee, Geon Hwi
    • 한국토양비료학회지
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    • 제48권6호
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    • pp.736-743
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    • 2015
  • Organic matter plays important roles in soil ecosystem in terms of carbon and nitrogen cycles. Due to recent concerns on climate change, carbon sequestration in agricultural land has become one of the most interesting and debating issues. It is necessary to understand behavior of soil carbon for evaluating decomposition or sequestration of organic matter and analyzing potential carbon decomposition pattern about the kinds of organic matter sources to cope with well. In order to evaluate decomposition of soil carbon according to organic material during cultivating rice in paddy field, we treated organic material such as hairy vetch, rice straw, oil cake fertilizer, and manure compost at $50{\times}50{\times}20cm$ blocks made of wood board, and analyzed carbon contents of fulvic acid and humic acid fraction, and total carbon periodically in 2013 and 2014. Soil sampling was conducted on monthly basis. Four Kinds of organic matter were mixed with soil in treatment plots on 2 weeks before transplanting of rice. The treatment of animal compost showed the highest changes of total carbon, which showed $7.9gkg^{-1}$ in May 2013 to $11.6gkg^{-1}$ in October 2014. Fulvic acid fraction which is considered to easily decompose ranged from 1 to $2gkg^{-1}$. Humic acid fraction was changed between 1 to $3gkg^{-1}$ in all treatments until organic material had been applied in 2014. From May to August in the second year, the contents of humic acid fraction increased to about $4gkg^{-1}$. The average of humic fraction carbon at treatments of animal compost was recorded highest among treatments during two years, $2.1gkg^{-1}$. The treatment of animal compost has showed the lowest ratio of fulvic acid fraction, humic acid fraction compared with other treatments. The average ratio of fulvic fraction carbon in soil ranged from 16 to 20%, and humic fraction carbon ranged from 19 to 22%. In conclusion, animal compost including wood as bulking agent is superior in sequestrating carbon at agricultural land to other kinds of raw plant residue.

Assessment of Ecosystem services under changing climate in the Bagmati Basin of Nepal

  • 쉬크샤 바스톨라;성연정;이상협;정영훈
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2019년도 학술발표회
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    • pp.148-148
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    • 2019
  • The 2006 Millennium Ecosystem Assessment (MA) defines ecosystem services (ES) as "the benefits people obtain from ecosystems". Identifying where ES originates, whom it benefits and how it is changing over a period of time is critical in rapidly developing country like Nepal, where the risk of ES loss is high. In the context of various ecosystem services provided by watershed, this study, particularly deals with water yield, Soil loss and Carbon sequestration computation and evaluation in Bagmati Basin of Nepal. As Bagmati Basin incorporates capital city Kathmandu of nepal, land use change is significant over decades and mapping of ES is crucial for sustainable development of Basin in future. In this regard, the objectives of this study are 1) To compute the total and sub-watershed scale water yield of the basin, 2) Computation of soil loss and sediment retention in the basin, and 3) Computation of carbon sequestration in the basin. Integrated Valuation of Environmental Services and Tradeoffs (InVEST), a popular model for ecosystem service assessment based on Budyko hydrological method is used to compute Ecosystem services. The scenario of ES in two periods of time can be referenced for various approaches of prioritization and incorporation of their value into local and regional decision making for management of basin.

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Characterization of Crop Residue-Derived Biochars Produced by Field Scale Biomass Pyrolyzer

  • Jung, Won-K.
    • 한국토양비료학회지
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    • 제44권1호
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    • pp.1-7
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    • 2011
  • Application of biochar to soils is proposed as a significant, long-term, sink for atmospheric carbon dioxide in terrestrial ecosystems. In addition to reducing emissions and increasing the sequestration of carbon, production of biochar and its application to soils will contribute improve soil quality and crop productivity. Objectives were i) to evaluate biochar productivity from crop residues using a low-cost field scale mobile pyrolyzer and ii) to evaluate characteristics of feedstocks and biochars from locally collected crop residues. Pyrolysis experiments were performed in a reactor operated at $400-500^{\circ}C$ for 3-4 hours using biomass samples of post-harvest residues of corn (Zea mays L.), cotton (Gossypium spp.), rice (Oryza sativa L.), sorghum (Sorghum bicolor L.) and wheat (Triticum aestivum L.). Feedstocks differed, but average conversion to biochar was 23%. Carbon content of biomass feedstock and biochar samples were 445 g $kg^{-1}$ and 597 g $kg^{-1}$, respectively. Total carbon content of biochar samples was 34% higher than its feedstock samples. Significant increases were found in P, K, Ca, Mg, and micro-nutrients contents between feedstock and biochar samples. Biochar from corn stems and rice hulls can sequester by 60% and 49% of the initial carbon input into biochar respectively when biochar is incorporated into the soils. Pyrolysis conversion of corn and rice residues sequestered significant amounts of carbon as biochar which has further environmental and production benefits when applied to soils. Field experiment with crop residue biochar will be investigated the stability of biochars to show long-term carbon sequestration and environmental influences to the cropping systems.

연결성 분석을 활용한 산림의 주연부와 내부의 탄소저장량 비교 (Comparison of Carbon Stock Between Forest Edge and Core by Using Connectivity Analysis)

  • 성선용;이동근;모용원
    • 농촌계획
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    • 제21권4호
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    • pp.27-33
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    • 2015
  • Forest ecosystem is considered as an important stepping stone to minimize the impact of climate change. However, the rapid urbanization has caused fragmentation of forest ecosystem. The fragmentation of forest patch results in edge effect which brings about adverse impacts on forest function and structure. Degradation of forest ecosystem decreases carbon sequestration because edge effect reduces productivity. Therefore, we analyzed the impact of forest edge effect on forest ecosystem carbon stock change in Seongnam-si, Gyeonggi-do. We used connectivity analysis to determine forest edge and core area. The field study sites were selected with considering forest age, density, class and soil type. Secondly, forest carbon stock was calculated with allometric equation. The soil carbon stock was derived from Walkely-Black method. Lastly, Mann-Whitney test was conducted to validate differences between carbon stock in edge and core area. As a result of study, the connectivity analysis was effective to determine forest edge and core. The core and edge of forest patch showed different composition of tree species and soil properties. Carbon stock per tree in the edge area was lower than that in the core area. However, the difference of soil organic carbon content between the edge and core were relatively small. This assessment can be applied for the conservation of forest patch as well as quantitative assessment on the forest carbon stock change caused by fragmentation.

농경지 토양탄소량 결정모형 추정 및 요인별 영향력 계측 (Estimation in a Model for Determining the Amount of Carbon in Soil and Measurement of the Influences of the Specific Factors)

  • 서정민;조재환;손병구;강점순;홍창오;김운원;박정호;임우택;진경호
    • 한국환경과학회지
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    • 제23권11호
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    • pp.1827-1833
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    • 2014
  • This study has been carried out to present the valuation system of soil carbon sequestration potentials of soil in accordance with the new climate change scenarios(RCP). For that, by analyzing variation of soil carbon of the each type of agricultural land use, it aims to develop technology to increase the amount of carbon emissions and sequestration. Among the factors which affects the estimation of determining the soil carbon model and influence power after the measurement on soil organic carbon, under the center of a causal relationship between the explanatory variables this study were investigated. Chemical fertilizers (NPK) decreased with increasing the amount of soil organic carbon and as with the first experimental results, when cultivating rice than pepper, the fact that soil organic carbon content increased has been found out. The higher the carbon dioxide concentration, the higher the amount of organic carbon in the soil and this result is reliable under a 10% significance level. On the other hand, soil organic carbon, humus carbon and hot water extractable carbon has been found out that was not affected the soils depth, sames as the result of the first year. The higher concentration of carbon dioxide, the higher carbon content of humus and hot water extractable carbon content. According to IPCC 2006 Guidelines and the new climate change scenario RCP 4.5 and the measurement results of the total amount of soil organic carbon to the crops due to abnormal climate weather, 1% increase in atmospheric carbon dioxide concentration was found to be small when compared to the growing rate of increasing 0.01058% of organic carbon in the soil.

에디 공분산 및 자동화 토양챔버 시스템을 이용한 탄소 플럭스 관측 기반 태화산 57년생 잣나무조림지의 탄소흡수능력 평가 (Evaluation of Carbon Sequestration Capacity of a 57-year-old Korean Pine Plantation in Mt. Taeh wa based on Carbon Flux Measurement Using Eddy-covariance and Automated Soil Chamber System)

  • 이호진;주형준;전지현;이민수;서상욱;김현석
    • 한국산림과학회지
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    • 제110권4호
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    • pp.554-568
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    • 2021
  • 산림은 육상생태계에서 가장 큰 탄소흡수원으로 기후변화 대응에 있어 산림의 대기 중 이산화탄소 농도 저감 역할은 중요하다. 최근 '2050 탄소중립 계획'에 산림의 탄소흡수 기능의 강화가 기본 방향으로 제시되면서 정확한 산림의 탄소흡수량 산정이 강조되고 있다. 산림부문의 탄소흡수량은 Intergovernmental Panel on Climate Change 지침을 따라 산림 내 생물량, 고사목, 임상 유기물층, 토양층, 수확된 목재제품 등 여러 탄소 저장고 내 탄소축적 변화량으로부터 산정한다. 그러나 국내 산림의 경우 하층 식생을 제외한 주요 수종의 임목 재적 증가로부터 추정한 생물량 증가량만을 산림의 탄소흡수량으로 산정하고 있어 실제 산림의 탄소흡수량과 큰 차이가 발생할 수 있다. 이에 본 연구에서는 경기도 광주시 태화산에 위치한 57년생 잣나무 조림지에서 에디 공분산 시스템과 자동화 토양챔버 시스템을 이용한 탄소 플럭스 관측을 통해 산림의 탄소 교환량 및 순 탄소흡수량을 정량화하고, 이를 현재 산림의 탄소흡수량 산정 방법에 따라 법정림 임분수확표 내 연평균 생장량과 국가 고유계수를 이용하여 계산한 잣나무 조림지 임목의 생물량 증가량과 비교하였다. 또한 탄소 플럭스 관측기반의 순 탄소흡수량과 잣나무 조림지의 생물량 증가량 및 임상 유기물층의 탄소저장 변화량 등의 차이로부터 나머지 탄소 저장고에서 연간 탄소저장 변화량을 추정하였다. 그 결과 탄소 플럭스로부터 계산한 잣나무 조림지의 연간 순 탄소흡수량은 5.96 MgC ha-1으로 생물량 증가로부터 계산한 임목의 연간 탄소흡수량 2.77 MgC ha-1보다 약 2.2배 많았다. 연간 임상 유기물층의 탄소저장 변화량은 0.75 MgC ha-1로 추정되어, 연간 하층 식생, 고사목, 토양층 등의 탄소 저장고로 유입되는 탄소의 양이 2.45 MgC ha-1으로 추정되었다. 본 연구의 결과는 국내 산림이 현재 평가 수준보다 더 큰 탄소흡수원임을 보여주며, 탄소 플럭스 관측과 더불어 하층 식생, 고사목, 토양층 등의 탄소 저장고에서 탄소축적 변화량의 정량화를 통해 더욱 정확한 산림부문 탄소흡수량 산정이 필요함을 시사한다.

Evaluating Feasibility of Soil Quality Assessment According to Soil Carbon Contents

  • Kim, Sung-Chul;Hong, Young Kyu;Lee, Sang Phil;Oh, Seung Min;Lim, Kyung Jae;Yang, Jae E.
    • 한국토양비료학회지
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    • 제50권1호
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    • pp.65-70
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    • 2017
  • Soil was regarded as infinite resources but recently, soil is considered as invaluable resources that we need to protect and conserve. Main objective of this research was to evaluate soil value in terms of soil carbon contents. Soil was classified into forest, paddy, upland, and grass. Carbon contents in each soil was calculated based on soil chemical properties. Calculated soil carbon contents was ranged $15.31-108.86mg\;kg^{-1}$. Based on soil carbon contents, soil value was assumed adapting economic concepts. Calculated total soil value based on soil carbon contents was about 18.46 trillion won. Among others, carbon contents in forest was the highest and value was assumed 11.95 trillion won followed by paddy field (3.7 trillion won).