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농경지 토양탄소량 결정모형 추정 및 요인별 영향력 계측open accessEstimation in a Model for Determining the Amount of Carbon in Soil and Measurement of the Influences of the Specific Factors

Other Titles
Estimation in a Model for Determining the Amount of Carbon in Soil and Measurement of the Influences of the Specific Factors
Authors
서정민조재환손병구강점순홍창오김운원박정호임우택진경호
Issue Date
2014
Publisher
한국환경과학회
Keywords
Soil organic carbon; Climate change; RCP; Ordinary least square Method; Multiple regression model
Citation
한국환경과학회지, v.23, no.11, pp 1827 - 1833
Pages
7
Indexed
KCI
Journal Title
한국환경과학회지
Volume
23
Number
11
Start Page
1827
End Page
1833
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/19263
DOI
10.5322/JESI.2014.23.11.1827
ISSN
1225-4517
2287-3503
Abstract
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.
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건설환경공과대학 > 환경공학과 > Journal Articles

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건설환경공과대학 (환경공학과)
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