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Response of soil respiration and ecosystem carbon budget to vegetation removal in Eucalyptus plantations with contrasting ages

机译:不同年龄桉树人工林土壤呼吸和生态系统碳收支对植被去除的响应

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摘要

Reforested plantations have substantial effects on terrestrial carbon cycling due to their large coverage area. Although understory plants are important components of reforested plantations, their effects on ecosystem carbon dynamics remain unclear. This study was designed to investigate the effects of vegetation removal/understory removal and tree girdling on soil respiration and ecosystem carbon dynamics in Eucalyptus plantations of South China with contrasting ages (2 and 24 years old). We conducted a field manipulation experiment from 2008 to 2009. Understory removal reduced soil respiration in both plantations, whereas tree girdling decreased soil respiration only in the 2-year-old plantations. The net ecosystem production was approximately three times greater in the 2-year-old plantations (13.4 t C ha−1 yr−1) than in the 24-year-old plantations (4.2 t C h−1 yr−1). The biomass increase of understory plants was 12.6 t ha−1 yr−1 in the 2-year-old plantations and 2.9 t ha−1 yr−1 in the 24-year-old plantations, accounting for 33.9% and 14.1% of the net primary production, respectively. Our findings confirm the ecological importance of understory plants in subtropical plantations based on the 2 years of data. These results also indicate that Eucalyptus plantations in China may be an important carbon sink due to the large plantation area.
机译:再造林由于覆盖面积大,对陆地碳循环具有重大影响。尽管林下植物是人工造林的重要组成部分,但它们对生态系统碳动态的影响仍不清楚。本研究旨在调查年龄不同(2岁和24岁)的华南桉树人工林的植被去除/林下去除和树木环剥对土壤呼吸和生态系统碳动态的影响。我们从2008年至2009年进行了田间操作实验。清除林下树木会降低两个人工林的土壤呼吸,而树木环剥只会降低2岁龄人工林的土壤呼吸。 2年龄人工林(13.4 t C ha -1 yr -1 )的生态系统净产量大约是24年龄人工林的三倍人工林(4.2 t C h -1 yr -1 )。 2年生人工林下林下植物的生物量增加为12.6 t ha -1 yr -1 和2.9 t ha -1 在具有24年历史的人工林中,yr −1 分别占净初级生产的33.9%和14.1%。根据2年的数据,我们的发现证实了亚热带种植园中林下植物的生态重要性。这些结果还表明,由于人工林面积大,中国的桉树人工林可能是重要的碳汇。

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