Since 1986 the multiple benefits of moso-bamboo forest, a special forest type found mainly in south China, have been investigated in a small 11.7 ha watershed in Fenyi County, Jiangxi Province. The mean annual precipitation in the study area is 1593.3mm. For the 0-60cm soil layer the average soil bu
Hydrochemical characteristics of throughfall and stemflow in a Moso-bamboo (Phyllostachys pubescens) forest
β Scribed by Masaaki Chiwa; Yuka Onozawa; Kyoichi Otsuki
- Publisher
- John Wiley and Sons
- Year
- 2010
- Tongue
- English
- Weight
- 170 KB
- Volume
- 24
- Category
- Article
- ISSN
- 0885-6087
- DOI
- 10.1002/hyp.7706
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β¦ Synopsis
Abstract
To investigate the impacts of the invasion by bamboo on fluxes of nutrients and pollutants, the nutrient/pollutant fluxes and canopy interactions, including neutralization of acidity, leaching and uptake of nitrogen (N), were characterized in conjunction with rainfall partitioning in a Mosoβbamboo (Phyllostachys pubescens) forest. Measurements of precipitation volume, pH, major ions, and silicate (SiO~2~) in rainfall, throughfall and stemflow were collected weekly in a Mosoβbamboo forest located in Munakata City, Western Japan for 1 year. Results showed that rainfall partitioning into stemflow was larger than that for other types of forest, which may be due to the properties of Mosoβbamboo forest structure, such as a straight and smooth culm. Inorganic N (NO~3~^β^ + NH~4~^+^) and S (SO~4~^2β^) fluxes of throughfall and stemflow were approximately 1Β·6 and 1Β·3 times higher than that of rainfall, respectively. Contribution of stemflow flux to inorganic N and S fluxes to the forest floor was high. This could be due to lower uptake of inorganic N through culm and a higher rainfall partitioning into stemflow than that for other types of forest. The Mosoβbamboo canopy neutralized rainfall acidity, reducing the fluxes of potentially acidifying compounds via throughfall and stemflow. Canopy leaching of K^+^ was distinctly higher than that of Mg^2+^ and Ca^2+^ and could be related to the high mobility of K^+^ in plant tissues. Cl^β^ and SiO~2~ were readily leached as for K^+^. The impact of the invasion by bamboo on nutrient cycling was discussed. Copyright Β© 2010 John Wiley & Sons, Ltd.
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