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Leaf-litter decomposition dynamic, carbon loss and nutrient return for moso bamboo forest with different litter mass accumulation

机译:不同垃圾量积累的薄膜竹林叶凋落物分解动态,碳损失和营养回报

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To provide an important basic knowledge for the biogeochemical cycle of bamboo forest ecosystem, particularly the cycling of global carbon, we studied decomposition dynamics of leaf-litter with different mass accumulation in moso bamboo forest. Our study area located in Miaoshanwu nature reserve, Fuyang, Zhejiang province. Based on the survey, we concluded that: (1) the sequence of remaining mass of leaf-litter with different mass accumulation after 240 Days' decomposition from the most to the least was in the following order: 30g(58.53%) > 60g(51.92%) > 90g(48.48%), implying that leaf-litter with more mass accumulation decomposed faster in the unit area. (2)The more accumulated leaf-litter lead to more TOC loss in leaf-litter which will not helpful for TOC increase on surface soil carbon pools. This implying that the faster leaf-litter decomposed, the less TOC increased on surface soil carbon pools in 240 Day s' observation. (3)The concentration of N, P, K. and Ca showed the similar tendency with initially increasing but decreasing gradually in the following stage and then increasing again in the next stage. And concentration of Mg, Fe, Cu and Zn increased gradually in the period of 0-240 Days.
机译:为竹林生态系统的生物地球化学循环提供了重要的基本知识,特别是全球碳的循环,研究了莫斯竹林不同大量积累的叶凋落物的分解动态。我们的学习区位于浙江省阜阳市苗山武自然保护区。根据调查,我们得出结论:(1)240天的分解后240天分解后剩余质量叶凋落物的剩余物质序列按以下顺序:30g(58.53%)>​​ 60g( 51.92%)> 90g(48.48%),暗示叶窝,在单位区域中具有更高的质量积累。 (2)较累计的叶子导致叶子垃圾中的更多TOC损失,这对地表土壤碳库的增加不会有助于TOC增加。这意味着较快的叶窝分解,在240天观察的表面土壤碳库上增加了TOC的增加。 (3)N,P,K.和Ca的浓度显示出类似的趋势,其初始增加但在下一阶段逐渐降低,然后在下一阶段再次增加。 Mg,Fe,Cu和Zn的浓度在0-240天的时间内逐渐增加。

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