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首页> 外文期刊>Applied Soil Ecology >Changes in eucalypt litter quality during the first three months of field decomposition in a Congolese plantation
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Changes in eucalypt litter quality during the first three months of field decomposition in a Congolese plantation

机译:刚果人工林田地分解的前三个月桉树凋落物质量的变化

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摘要

In fast-growing tree plantations, decomposition of leaf litter is considered as a key process of soil fertility. A three-month field experiment, spanning both rainy and dry seasons, was conducted to determine how changes in litter decomposition affect the main parameters of litter quality-namely, the concentrations of phenolic and non-phenolic carbon (C) compounds, nitrogen (N), and fibres, and the litter C mineralization rate. This Study was conducted to test (1) if these changes vary according to the Compound and to the season, and if they are greater for soluble compounds, and (2) if after a three-month period of field decomposition, the chemical composition of the remaining litter drives C mineralization, as measured in laboratory conditions, through a greater influence on the concentration of N and lignin. We found that the concentrations of water- and methanol-soluble phenolic compounds and the concentrations of non-phenolic compounds decreased during decomposition in all plots and in each season, while the fibre and N concentrations increased. The relationships among litter decomposition, C mineralization, and litter quality depended on the season, which strongly suggests that different processes are involved in dry and rainy seasons. The C mineralization rates were driven by soluble organic Compounds in the initial litter and by soluble phenolic compounds in the decomposed litter.
机译:在快速生长的人工林中,枯枝落叶的分解被认为是土壤肥力的关键过程。进行了为期三个月的田间试验,涵盖雨季和旱季,以确定凋落物分解的变化如何影响凋落物质量的主要参数,即酚和非酚碳(C)化合物,氮(N ),纤维和垃圾C的矿化率。进行这项研究的目的是测试(1)这些变化是否随化合物和季节的变化而变化,以及对于可溶性化合物而言变化是否更大;以及(2)如果经过三个月的现场分解后,其化学成分在实验室条件下测得,剩余的垃圾会通过对N和木质素浓度的更大影响来驱动C矿化。我们发现,在所有地块和每个季节的分解过程中,水溶性和甲醇可溶性酚类化合物的浓度以及非酚类化合物的浓度均降低,而纤维和氮的浓度则升高。凋落物分解,碳矿化和凋落物质量之间的关系取决于季节,这强烈表明干旱和雨季涉及不同的过程。 C矿化速率由初始垫料中的可溶性有机化合物和分解垫料中的可溶性酚类化合物驱动。

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