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首页> 外文期刊>Forest Ecology and Management >Comparison of litterfall production and leaf litter decomposition between an exotic black locust plantation and an indigenous oak forest near Yan'an on the Loess Plateau, China.
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Comparison of litterfall production and leaf litter decomposition between an exotic black locust plantation and an indigenous oak forest near Yan'an on the Loess Plateau, China.

机译:黄土高原延安附近外来黑刺槐种植园和本土橡树林的凋落物产量和凋落物分解的比较。

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摘要

Litterfall production, the amount of organic matter on the forest floor, and litter decomposition rates were studied in an exotic nitrogen (N)-fixing black locust (Robinia pseudoacacia) plantation and an indigenous non-N-fixing oak (Quercus liaotungensis) forest near Yan'an, on the Loess Plateau, Shaanxi, China. The chemical composition of litterfall and soil was also examined. Litterfall production was similar in the two forests; however, the amount of N in litterfall was greater in the black locust plantation than in the oak forest because of the high N concentration of black locust leaves. The decomposition rate of black locust leaves was higher than that of oak leaves, most likely because of the higher N content of black locust leaves. These results suggested that N cycling was greater and faster in the black locust plantation than in the oak forest. However, faster decomposition caused the disappearance of the organic layer from the forest floor in the black locust plantation. Furthermore, despite greater N cycling in the black locust plantation, the soil N content was lower than in the oak forest. Our results indicated that the black locust plantation might be more susceptible to soil erosion than the oak forest. In addition, our study suggested that the black locust plantation had advantages in short-term N uptake, growth, and N cycling; however, it had disadvantages in soil development and regeneration and sustainable land management..
机译:在附近的异国固氮黑刺槐(Robinia pseudoacacia)种植园和附近的非固氮橡树(栎栎)森林中研究了凋落物的产生,森林地上有机物的量以及凋落物的分解速率。中国陕西黄土高原的延安。还检查了凋落物和土壤的化学成分。两种森林的凋落物产量相似。然而,由于刺槐叶片中的氮含量较高,因此刺槐人工林凋落物中的氮含量高于橡树林。刺槐叶片的分解速率高于橡树叶,这很可能是由于刺槐叶片的N含量较高。这些结果表明,刺槐人工林中的氮循环比橡树林中的氮循环更大且更快。但是,更快的分解导致刺槐人工林中有机层从林底消失。此外,尽管刺槐人工林的氮循环更大,但土壤氮含量却比橡树林低。我们的结果表明,刺槐人工林可能比橡木林更容易受到土壤侵蚀。此外,我们的研究表明,刺槐人工林在短期吸收氮,生长和氮循环方面具有优势。但是,它在土壤开发和更新以及可持续土地管理方面存在劣势。

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