Tree carbon stock in middle mountain forest types: A case study from Chandragiri hills, Kathmandu, Nepal

Ranjan Gurung, H. Adhikari, R. S. Dani, C. Baniya
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Abstract

The forest carbon stock usually depends on the forest types, forest density, age of forest, size of trees, site quality, wood density, annual precipitation, and species composition. This research aims to analyze the relationship among tree carbon stock, species richness, soil chemical properties such as soil organic carbon, and soil pH in the Forests of Chandragiri Hills, Kathmandu, Central Nepal. Along this forest, five square plots (20 × 20 m2 ) each were established along the two transects at a maximum interval of 100 m. Carbon stock of each tree was estimated by using allometric equation based on measured tree height and DBH. The mean tree carbon stock was found to be highest in Mixed Forest (87.13 t/ha) followed by Oak Forest (52.75 t/ha), and Pine Forest (22.5 t/ha). The tree carbon stock showed significant negative correlation with tree species richness (r = -0.56, p = 0.001). The tree carbon stock showed significant positive correlation with soil organic carbon (r = 0.57, p = 0.001) and soil pH (r = 0.37, p = 0.05). Tree carbon was found positively highly significant correlation with altitude, Soil organic carbon, pH, and Shannon diversity index.
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中山森林类型的树木碳储量:以尼泊尔加德满都Chandragiri山为例
森林碳储量通常取决于森林类型、森林密度、森林年龄、树木大小、场地质量、木材密度、年降水量和物种组成。本研究旨在分析尼泊尔中部加德满都Chandragiri山森林中树木碳储量、物种丰富度、土壤化学性质(如土壤有机碳)和土壤pH值之间的关系。沿着这片森林,沿着两个样带建立了五个正方形地块(20×20m2),每个地块的最大间隔为100m。根据测得的树高和DBH,使用异速生长方程估计每棵树的碳储量。混合林的平均树木碳储量最高(87.13 t/ha),其次是橡树林(52.75 t/ha)和松林(22.5 t/ha)。树木碳储量与树种丰富度呈显著负相关(r=-0.56,p=0.001),与土壤有机碳(r=0.57,p=0.001。
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