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首页> 外文期刊>Soil Biology & Biochemistry >Tree pruning mulch increases soil C and N in a shaded coffee agroecosystem in Hawaii
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Tree pruning mulch increases soil C and N in a shaded coffee agroecosystem in Hawaii

机译:修剪树木的覆盖物增加了夏威夷阴影咖啡农业生态系统中的土壤碳和氮

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Agroforestry can increase the sequestration of carbon (C) in soils of tropical agroecosystems through increased litter and tree pruning inputs. Decomposition of these inputs is a key process in the formation of soil organic matter and in nutrient cycling. Our objectives were to study decay of tree pruning mulch and effects on soil C and N in a shaded coffee agroecosystem in Hawaii. Chipped tree pruning residues (mulch) were added to coffee plots shaded with the Leucaena hybrid KX2 over three years. We measured mulch decomposition and nitrogen loss over one year and changes in soil carbon and nitrogen (N) over two years. Mass loss of mulch was 80% over one year and followed first-order decay dynamics. There was significant loss from all major biochemical components. Net N loss from the mulch was positive throughout the entire period. The C:N and lignin:N ratios of the mulch declined significantly over the decomposition period. Mulch additions significantly increased soil C and N in the top 20 cm by 10.8 and 2.12 Mg ha1, respectively. In the no-mulch treatment, there was no significant change in soil C or N concentration, but a decline in soil bulk density led to a significant decline in total soil C. Leucaena mulch can provide an important source of organic C and N to coffee agroecosystems and can help sequester C lost as plant biomass during shade tree management.
机译:农林业可以通过增加凋落物和树木修剪投入来增加热带农业生态系统土壤中的碳(C)固存。这些投入的分解是土壤有机质形成和养分循环的关键过程。我们的目标是研究夏威夷遮荫咖啡农业生态系统中树木修剪覆盖物的腐烂及其对土壤C和N的影响。经过三年的时间,将切碎的树木修剪残留物(覆盖物)添加到用Leucaena杂交KX2遮蔽的咖啡地中。我们测量了一年中的地膜分解和氮素损失,以及两年中的土壤碳和氮(N)变化。覆盖的质量损失在一年中为80%,并遵循一阶衰减动力学。所有主要的生化成分均造成重大损失。在整个时期,覆盖的净氮损失为正。在分解期间,覆盖物的C:N和木质素:N比显着下降。覆盖覆盖物显着增加了前20 cm的土壤碳和氮,分别增加了10.8和2.12 Mg ha1。在非覆盖处理中,土壤碳或氮浓度没有显着变化,但土壤容重的下降导致土壤总碳显着下降。银合欢覆盖物可以为咖啡提供重要的有机碳和氮源农业生态系统,可以帮助遮荫树管理过程中因植物生物量而造成的螯合碳损失。

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