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논문 기본 정보

자료유형
학술저널
저자정보
Lee, Eun Yeob (Korea Land & Housing Corporation) Kang, Myung Soo (Korea Land & Housing Corporation) Kim, Jong Kon (Korea Land & Housing Corporation)
저널정보
한국생태환경건축학회 KIEAE Journal KIEAE Journal Vol.14 No.2(Wn.66)
발행연도
2014.4
수록면
87 - 98 (12page)

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초록· 키워드

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This study is to identify quantitatively the function of carbon dioxide emissions reduction due to temperature and energy reduction according to direct carbon dioxide storage, shade provision, and evaportanspiration of urban park. According to the result of study, landscape tree indicated high carbon dioxide storage effect compare to bush, in which broadleaf tree indicated higher storage function than coniferous tree. It is believed to be the storage of carbon dioxide can be increased by increasing the composition rate of forest plants in the urban park. According to the direct estimation result of carbon dioxide storage in terms of example area, storage of carbon dioxide is estimated to be "seoul a zone" 476,818.8 kg?CO₂/㎡?yr, "anyang b zone" 186,435.7 kg?CO₂/㎡?yr, "daejeon c zone" 262,826 kg?CO₂/㎡?yr, "kwangju d zone" 231,657.8 kg?CO₂/㎡?yr. The carbon dioxide storage per unit area estimated to be "seoul a zone" 3.4 kg?CO₂/㎡?yr, "anyang b zone" 5.0 kg?CO₂/㎡?yr, "daejeon c zone" 2.6 kg?CO₂/㎡?yr, "kwangju d zone" 5.6 kg?CO₂/㎡?yr. The result of indirect carbon dioxide reduction effect estimated to be "seoul a zone" 291,603.4 kg?CO₂/㎡?yr, "anyang b zone" 165,462.4 kg?CO₂/㎡?yr, "daejeon c zone" 141,719.2 kg?CO₂/㎡?yr, "kwangju d zone" 154,803.4 kg?CO₂/㎡?yr. Carbon dioxide reduction potential amount through the urban park was increased to 1.6 times to 1.8 times when calculated to the indirect effect.

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ABSTRACT
1. Introduction
2. Theoretical Review
3. Research Scope and Target Areas
4. Calculation Model of Potential CO₂ Reduction and Hypothesis
5. Results and Discussion
6. Conclusion
References

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