Literature Cited
Karp, A. and Shield, I., Bioenergy from plants and the sustainable yield challenge, New Phytologist 179(1):15-32 (2008).
10.1111/j.1469-8137.2008.02432.xHamelinck, C. N., Van Hooijdonk, G., and Faaij, A. P., Ethanol from lignocellulosic biomass techno-economic performance in short-, middle- and long-term, Biomass and Bioenergy 28(4):384-410 (2005).
10.1016/j.biombioe.2004.09.002Lee, D. S., Kim, D. G., Bea, K. H., and Suh, H. M., The growth characteristics of the main afforestation species using the change of the annual ring in Uiseong area, Korean Journal of Agricultural and Forest Meteorology 7(4):274-281 (2005).
Newman, S. M., Poplar agroforestry in India, Forest Ecology and Management 90(1):13-17 (1997).
10.1016/S0378-1127(96)03874-1Fang, S., Xue, J., and Tang, L., Biomass production and carbon sequestration potential in poplar plantations with different management patterns, Journal of Environmental Management 85(3):672-679 (2007).
10.1016/j.jenvman.2006.09.014Sennerby-Forsse, L., Growth processes, Biomass and Bioenergy 9(1):35–43 (1995).
10.1016/0961-9534(95)00077-1Dillen, S. Y., Djomo, S. N., Al Afas, N., Vanbeveren, S., and Ceulemans, R., Biomass yield and energy balance of a short rotation poplar coppice with multiple clones on degraded land during 16 years, Biomass and bioenergy 56:157-165 (2013).
10.1016/j.biombioe.2013.04.019Hergert, H. L., Chemical composition of tannins and polyphenols from conifer wood and bark, Forest Products Journal 10(11):610-617 (1960).
Kačík, F., Ďurkovič, J., and Kačíková, D., Chemical profiles of wood components of poplar clones for their energy utilization, Energies 5(12):5243-5256 (2012).
10.3390/en5125243Kim, K. J. and Eom, T. J., Chemical characteristics of ozone treated aspen wood meal, Journal of Korea TAPPI 43(1):29-35 (2011).
Luo, Z. B. and Polle, A., Wood composition and energy content in a poplar short rotation plantation on fertilized agricultural land in a future CO2 atmosphere, Global Change Biology 15(1):38-47 (2009).
10.1111/j.1365-2486.2008.01768.xMoura, J. C. M. S., and Bonine, C. A. V., de Oliveira Fernandes Viana, J., Dornelas, M. C., and Mazzafera, P., Abiotic and biotic stresses and changes in the lignin content and composition in plants, Journal of Integrative Plant Biology 52(4):360-376 (2010).
10.1111/j.1744-7909.2010.00892.xKarácsonyi, S., Toman, R., Janec-ek, F., and Kubac-ková, M., Polysaccharides from the bark of the white willow (Salix alba L.): Structure of an arabian, Carbohydrate Research 44(2):285-290 (1975).
10.1016/S0008-6215(00)84172-5Toman, R., Karácsonyi, Š., and Kubačková, M., Studies on the pectin present in the bark of white willow (Salix alba L.): Fractionation and acidic depolymerization of the water-soluble pectin, Carbohydrate Research 43(1):111-116 (1975).
10.1016/S0008-6215(00)83977-4Han, S. H., Shin, S. J., Kim, B. R., Aggangan, N. S., and Yun, C. W., Growth, chemical composition and energy contents of seven clones of one-year-old Salix caprea L . as short-rotation coppice, Asia Life Sciences 22(2):413-426 (2013).
- Publisher :Korea Technical Association of The Pulp and Paper Industry
- Publisher(Ko) :한국펄프종이공학회
- Journal Title :Journal of Korea TAPPI
- Journal Title(Ko) :펄프종이기술
- Volume : 48
- No :6
- Pages :137-143
- Received Date : 2016-11-04
- Revised Date : 2016-12-15
- Accepted Date : 2016-12-19
- DOI :https://doi.org/10.7584/JKTAPPI.2016.12.48.6.137


Journal of Korea TAPPI






