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首页> 外文期刊>Forest Ecology and Management >Mixed-species plantation with Pinus massoniana and Castanopsis hystrix accelerates C loss in recalcitrant coniferous litter but slows C loss in labile broadleaf litter in southern China
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Mixed-species plantation with Pinus massoniana and Castanopsis hystrix accelerates C loss in recalcitrant coniferous litter but slows C loss in labile broadleaf litter in southern China

机译:Cinus Massoniana和Castanopsis Hystrix的混合物种种植园加速了顽皮的针叶垃圾中的C损失,但在中国南部的赤字宽松垃圾垃圾中减缓了C损失

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摘要

Litter decomposition varies with forest type in complex ways and is significantly dependent on tree species diversity. A field litterbag experiment was conducted in monospecific and mixed-species plantations of Pinus massoniana and Castanopsis hystrix in subtropical China, to examine the effects of litter mixing and changing stand environment on the litter decomposition rate and the composition-specific litter organic C loss rate of P. massoniana and C. hystrix. Admixing with the lower-quality P. massoniana litter slowed C. hystrix litter decomposition and recalcitrant C loss, whereas admixing with the higher-quality C. hystrix litter hastened P. massoniana litter decomposition in the mixed-species plantation. The P. massoniana litter exhibited a faster decomposition rate in the mixed-species plantation than in the P. massoniana monospecific plantation. The same trend was found in the loss rates of aromatic C and carbonyl C from P. massoniana litter. The greater soil organic matter content and nitrogen availability in the mixed-species plantation than in the P. massoniana monospecific plantation could have resulted in the increased rates of decomposition and organic C loss in P. massoniana litter. This study highlights that maintaining mixed conifer-broadleaf forests and/or adopting close-to-nature forest management could accelerate the decomposition of recalcitrant coniferous litter, facilitating C sequestration and mitigating the C emissions derived from the labile broadleaf litter.
机译:垃圾分解随着复杂方式的森林类型而变化,并且显着取决于树种多样性。在亚热带中国的单特异性和混合物种种植园进行了一个田间垃圾袋实验,在亚热带的中国,Castanopsis Hystrix进行了垃圾混合和变化静止环境对凋落物分解率的影响和组成特异性凋落物的影响P. Massoniana和C. hystrix。与较低质量的P. Massoniana凋落物混合缓慢C. hystrix凋落物分解和顽固性C损失,而与更高质量的C. hystrix垃圾混合,在混合物种种植园中加速了P. Massoniana凋落物分解。 P. Massoniana凋落物在混合物种种植植物中表现出比在Massoniana单特异性种植园的更快的分解速率。来自P. Massoniana凋落物的芳香C和羰基C的损失率存在相同的趋势。在混合物种种植园中的土壤有机质含量和氮可用性比在P. Massoniana单体种植算中可能导致P. Massoniana凋落物的分解和有机C损失增加。本研究突出了维持混合针叶树 - 阔叶林和/或采用近乎自然森林管理可以加速顽皮的针叶垃圾的分解,促进C封存并减轻衍生自不稳定阔叶垃圾的C排放。

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