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首页> 外文期刊>Hydrobiologia >Impact of a eucalyptus (Eucalyptus globulus Labill.) plantation on the nutrient content and dynamics of coarse particulate organic matter (CPOM) in a small stream
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Impact of a eucalyptus (Eucalyptus globulus Labill.) plantation on the nutrient content and dynamics of coarse particulate organic matter (CPOM) in a small stream

机译:桉树人工林对小溪中养分含量和粗颗粒有机物(CPOM)动态的影响

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摘要

Litterfall inputs, benthic storage and the transport of coarse particulate organic matter (CPOM) were studied in two headwater streams, one flowing through a mixed deciduous forest and one through a plantation of Eucalyptus globulus. Vertical and lateral traps, transported CPOM and benthic CPOM were sampled monthly to biweekly and sorted into four categories: leaves, twigs and bark, fruits and flowers and debris. The litterfall inputs were about 20% lower at the eucalyptus site but this reduction was unevenly distributed among the litter categories. The reduction of the nitrogen and phosphorus inputs was larger (50%) than that of CPOM because of the low nutrient concentration of the CPOM at the eucalyptus site. Transported CPOM was also lower at the eucalyptus site. Although total CPOM inputs to the stream were reduced in the eucalyptus plantation, benthic storage of CPOM was 50% higher due to (1) high inputs of CPOM and low discharge during summer, (2) more twig and bark inputs, (3) eucalyptus leaves being retained more efficiently in the stream than deciduous leaves (4) a lower discharge, which may in part be attributable to eucalyptus-induced changes in the hydrological cycle. Increased retention balanced lower nitrogen and phosphorus content of CPOM, so benthic storage of nitrogen and phosphorus was similar at both sites. This work demonstrates that the timing, quality and quantity of inputs and benthic storage of CPOM in streams changes substantially because of the substitution of natural deciduous forest with eucalyptus plantation. Maintenance of buffer strips of natural vegetation may be the best way to protect ecological functioning of small, forested streams.
机译:在两种源头水流中研究了凋落物输入,底栖动物的储存和粗颗粒有机物的运输,一种流过混合落叶林,另一种流过人工桉树。每月至每两周对垂直和侧向陷阱,运输的CPOM和底栖CPOM进行采样,并分为四类:树叶,树枝和树皮,水果,花朵和碎屑。桉树产地的凋落物投入减少了约20%,但是这种减少在凋落物类别之间分布不均。氮和磷的输入减少量比CPOM减少了50%,这是因为桉树部位CPOM的养分浓度较低。桉木现场运输的CPOM也较低。尽管在桉树种植园中流向中的CPOM总输入量减少了,但CPOM的底栖存储量却增加了50%,这是由于(1)CPOM的高输入量和夏季的低排放量,(2)树枝和树皮的输入量更多,(3)桉树落叶比落叶落叶(4)更有效地保留在溪流中,其排放量较低,这可能部分归因于桉树引起的水文循环变化。保留量的增加平衡了CPOM较低的氮和磷含量,因此两个地点的底栖氮和磷储量相似。这项工作表明,由于天然落叶林被桉树人工林替代,溪流中CPOM的输入时间,质量和数量以及底栖存储发生了很大变化。维护天然植被的缓冲带可能是保护森林小溪流生态功能的最佳方法。

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