References
- Chow, P. and G. L. Rolfe(1989) Carbon and hydrogen contents of short rotation biomass of five hardwood species. Wood and Fiber Science 21(1): 30-36.
- Dirr, M. A.(2009) Manual of Woody Landscape Plants. Champaign, IL: Stipes Publishing Company.
- DMC(Daegu Metropolitan City)(2017) Urban Parks in Daegu.
-
Jo, H. K. and D. H. Cho(1998) Annual
$CO_2$ uptake by urban popular landscape tree species. Journal of the Korean Institute of Landscape Architecture 26(2): 38-53. - Jo, H. K. and E. G. McPherson(1995) Carbon storage and flux in urban residential greenspace. Journal of Environmental Management 45: 109-133. https://doi.org/10.1006/jema.1995.0062
- Jo, H. K. and H. M. Park(2017) Changes in growth rate and carbon sequestration by age of landscape trees. Journal of the Korean Institute of Landscape Architecture 45(5): 97-104. https://doi.org/10.9715/KILA.2017.45.5.097
- Jo, H. K. and T. W. Ahn(2000) Indicators of carbon storage and uptake by tree growth in natural ecosystem. Korean Journal of Environment and Ecology 14(3): 175-182.
-
Jo, H. K. and T. W. Ahn(2001) Annual
$CO_2$ uptake and atmospheric purification by urban coniferous trees: For Pinus densiflora and Pinus koraiensis. Korean Journal of Environment and Ecology 15(2): 118-124. - Jo, H. K. and T. W. Ahn(2012) Carbon storage and uptake by deciduous tree species for urban landscape. Journal of the Korean Institute of Landscape Architecture 40(5): 160-168. https://doi.org/10.9715/KILA.2012.40.5.160
- Jo, H. K.(2002) Impacts of urban greenspace on offsetting carbon emissions for middle Korea. Journal of Environmental Management 64: 115-126. https://doi.org/10.1006/jema.2001.0491
- Jo, H. K., J. Y. Kim and H. M. Park(2013) Carbon storage and uptake by evergreen trees for urban landscape: For Pinus densiflora and Pinus koraiensis. Korean Journal of Environment and Ecology 27(5): 571-578. https://doi.org/10.13047/KJEE.2013.27.5.571
- Jo, H. K., J. Y. Kim and H. M. Park(2014) Carbon reduction effects of urban landscape trees and development of quantitative models: For five native species. Journal of the Korean Institute of Landscape Architecture 42(5): 13-21. https://doi.org/10.9715/KILA.2014.42.5.013
-
Jo, H. K., Y. H. Yun and K. E. Lee(1995) Atmospheric
$CO_2$ sequestration by urban greenspace - In the case of Chuncheon. Journal of the Korean Institute of Landscape Architecture 23(3): 80-93. - KFRI(Korea Forest Research Institute)(2007) Survey Manual for Forest Biomass and Soil Carbon. Seoul.
- KFRI(Korea Forest Research Institute)(2010a) Greenhouse Gas Inventory of Urban Green Areas: In Case of Seoul Metropolis. Research Report 10-19.
- KFRI(Korea Forest Research Institute)(2010b) Carbon Emission Coefficients of Major Tree Species to Inventory Greenhouse Gases from Forests. Research Report 10-25.
- KFRI(Korea Forest Research Institute)(2012) A Role of Urban Forests as a Carbon Uptake Source. Research Report 20.
- KFRI(Korea Forest Research Institute)(2014) Carbon Emission Factors and Biomass Allometric Equations by Species in Korea. Research Report 44-70.
- KFS(Korea Forest Service)(2014) Street Trees in Korea. Daejeon.
- KIAST(Korean Institute of Agricultural Science and Technology) (2000) Methods of Analysis for Soil and Plants. Suwon.
- KILA(Korean Institute of Landscape Architecture)(2016) Landscape Design Standards. Seoul.
- McGovern, M. and J. Pasher(2016) Canadian urban tree canopy cover and carbon sequestration status and change 1990-2012. Urban Forestry & Urban Greening 20: 227-232. https://doi.org/10.1016/j.ufug.2016.09.002
- McPherson, E. G.(1998) Atmospheric carbon dioxide reduction by Sacramento's urban forest. Journal of Arboriculture 24(4): 215-223.
- Nowak, D. J. and D. E. Crane(2002) Carbon storage and sequestration by urban trees in the USA. Environmental Pollution 116: 381-389. https://doi.org/10.1016/S0269-7491(01)00214-7
- Nowak, D. J.(1994) Atmospheric carbon dioxide reduction by Chicago's urban forest. In E. G. McPherson, D. J. Nowak and R. A. Rowntree, eds., Chicago's Urban Forest Ecosystem: Results of the Chicago Urban Forest Climate Project. General Technical Report NE-186. Radnor, PA: USDA Forest Service, Northeastern Forest Experiment Station. pp. 83-94.
- Nowak, D. J., E. J. Greenfield, R. E. Hoehn and E. Lapoint(2013) Carbon storage and sequestration by trees in urban and community areas of the United States. Environmental Pollution 178: 229-236. https://doi.org/10.1016/j.envpol.2013.03.019
-
Park, E. J. and K. Y. Kang(2010) Estimation of C storage and annual
$CO_2$ uptake by street trees in Gyeonggi-do. Korean Journal of Environment and Ecology 24(5): 591-600. - Park, I. H. and S. M. Lee(1990) Biomass and net production of Pinus densiflora natural forests of four local forms in Korea. Journal of Korean Forestry Society 79(2): 196-204.
- Pingrey, D. W.(1976) Forest products energy overview. In Energy and the Wood Products Industry. Madison, WI: Forest Products Research Society. pp. 1-14.
- Rowntree, R. A. and D. J. Nowak(1991) Quantifying the role of urban forests in removing atmospheric carbon dioxide. Journal of Arboriculture 17(10): 269-275.
- Song, C. Y., K. S. Chang, K. S. Park and S. W. Lee(1997) Analysis of carbon fixation in natural forests of Quercus mongolica and Quercus variabilis. Journal of Korean Forestry Society 86(1): 35-45.
- UNFCCC(United Nations Framework Convention on Climate Change) (2006) Report of the Conference of the Parties Serving as the Meeting of the Parties to the Kyoto Protocol. Montreal.
- Whittaker, R. H. and P. L. Marks(1975) Methods of assessing terrestrial productivity. In H. Lieth and R. H. Whittaker, eds., Primary Productivity of the Biosphere. New York: Springer-Verlag. pp. 55-118.
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