Dynamics of Plant Communities under Human Impact in the Green-Belt nearby Seoul -On the Production and Decomposition of Liffters in Grassland and Forests in Mt. Guryong-
Nam-Kee Chang, Duck-Key Lee, Joon-Ho Kim
Abstract
Nam-Kee Chang, Duck-Key Lee, Joon-Ho Kim
Abstract
The rates of litter production and decomposition of litters from grasslands and forests in Mt. Guryong were studied. The annual litter production of Glycine soja showed the highest value 1950.88 g//yr in the grasslands and that in Quercus acutissima, as 2202.38 g//yr in the forests. The highest decay rate of the grasslands was found in G. soja as k=0.713 and that of the forests was in Salix koreensis as k=0.319. The Z values of k in the grasslands was higher than that in the forests. The shortest half-time of the litter decay in the grasslands was 0.9 years in G. soja and the longest one of the forests was S. koreensis as 2.1 years and the longest of all was Q. mongolica as 5.2 years. In the amount of total nitrogen of litters, G. soja was the highest of the grasslands and S. koreensis was the highest of the forest. The content of the total nitrogen in litters was directly propotional to the decay rates.
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The rates of litter production and decomposition of litters from grasslands and forests in Mt. Guryong were studied. The annual litter production of Glycine soja showed the highest value 1950.88 g//yr in the grasslands and that in Quercus acutissima, as 2202.38 g//yr in the forests. The highest decay rate of the grasslands was found in G. soja as k=0.713 and that of the forests was in Salix koreensis as k=0.319. The Z values of k in the grasslands was higher than that in the forests. The shortest half-time of the litter decay in the grasslands was 0.9 years in G. soja and the longest one of the forests was S. koreensis as 2.1 years and the longest of all was Q. mongolica as 5.2 years. In the amount of total nitrogen of litters, G. soja was the highest of the grasslands and S. koreensis was the highest of the forest. The content of the total nitrogen in litters was directly propotional to the decay rates.
Key concepts: Grassland, Litter, Glycine soja, Grassland degradation, Nitrogen, Agronomy, Ecology, Botany