首页> 外文期刊>Acta Physiologiae Plantarum >The importance of slope aspect and stand age on the photosynthetic carbon fixation capacity of forest: a case study with black locust (Robinia pseudoacacia) plantations on the Loess Plateau
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The importance of slope aspect and stand age on the photosynthetic carbon fixation capacity of forest: a case study with black locust (Robinia pseudoacacia) plantations on the Loess Plateau

机译:坡向和林分年龄对森林光合固碳能力的重要性:以黄土高原刺槐(Robinia pseudoacacia)人工林为例

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摘要

The black locust (Robinia pseudoacacia L.) is an important tree species not only for the vegetation rehabilitation but also for the photosynthetic carbon dynamics on the Loess Plateau. Slope aspect and stand age play important roles in the photosynthesis of the black locusts. To investigate the photosynthetic carbon fixation capacity (PCFC) of the juvenile and mature black locusts located on the sunny and shady slopes, we have analyzed the capacity and daily dynamics of photosynthesis of the whole canopy of juvenile (6-year-old) and mature (18-year-old) black locusts located on the sunny (southeast facing) and shady (northwest facing) slopes. Mature plantations on the sunny slopes have lower average daily E, VPD, CE, A (n), LAI and PCFC than those on the shady slopes. Juvenile plantations have higher average daily g (s), E, C (i)/C (a), CE, A (n) and PCFC compared to the mature plantations. It is concluded that the lower average daily A (n) and PCFC of the mature black locust plantations on the sunny slopes may be due to variations in the microclimatic conditions between sunny and shady slope aspects. The higher average daily A (n) and PCFC of the juvenile black locust plantations are likely associated with stand age-related differences in tree sizes.
机译:刺槐(Robinia pseudoacacia L.)不仅是植被恢复的重要树种,而且是黄土高原光合作用碳动态的重要树种。坡度和林分年龄在黑蝗虫的光合作用中起着重要作用。为了调查位于阳光充足和阴凉的山坡上的少年和成熟黑刺槐的光合作用固碳能力(PCFC),我们分析了整个(6岁以上)和成熟少年的整个冠层的光合作用能力和日动态(18岁)黑色蝗虫,位于阳光充足(朝东南)和阴暗(西北朝)的山坡上。在阳光充足的山坡上,成熟的人工林的日平均E,VPD,CE,A(n),LAI和PCFC均低于在阴凉的坡地上。与成熟人工林相比,幼小人工林的日平均g(s),E,C(i)/ C(a),CE,A(n)和PCFC较高。结论是,在阳光充足的山坡上成熟的刺槐人工林的平均每日A(n)和PCFC较低,可能是由于阳光充足和阴凉的坡向之间的微气候条件变化所致。幼年刺槐人工林的平均日平均A(n)和PCFC较高可能与林分年龄相关的树木大小差异有关。

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