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首页> 外文期刊>Global change biology >UV-B effect on Quercus robur leaf litter decomposition persists over fouryears
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UV-B effect on Quercus robur leaf litter decomposition persists over fouryears

机译:UV-B对栎类落叶凋落物分解的影响持续了四年

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摘要

The effects of elevated UV-B (280-315 nm) radiation on the long-term decomposition of Quercus robur leaf litter were assessed at an outdoor facility in the UK by exposing saplings to elevated UV-B radiation (corresponding to a 30% increase above the ambient level of erythemally weighted UV-B, equivalent to that resulting from a c. 18% reduction in ozone column) under arrays of cellulose diacetate-filtered fluorescent UVB lamps that also produced UV-A radiation (315-400 nm). Saplings were also exposed to elevated UV-A radiation alone under arrays of polyester-filtered fluorescent lamps and to ambient solar radiation under arrays of nonenergized lamps. After 8 months of irradiation, abscised leaves were placed into litter bags and allowed to decompose in the litter layer of a mixed deciduous woodland for 4.08 years. The dry weight loss of leaf litter from saplings irradiated with elevated UV-B and UV-A radiation during growth was 17% greater than that of leaf litter irradiated with elevated UV-A radiation alone. Annual fractional weight loss of litter (k), and the estimated time taken for 95% of material to decay (3/k) were respectively increased and decreased by 27% for leaf litter exposed during growth to elevated UV-B and UV-A radiation, relative to that exposed to UV-A alone. The present data corroborate those from a previous study indicating that UV-B radiation applied during growth accelerates the subsequent decomposition of Q. robur leaf litter in soil, but indicate that this effect persists for over four years after abscission.
机译:在英国的一个室外设施中,通过将树苗暴露在高强度的UV-B辐射下(相当于增加30%),评估了UV-B辐射(280-315 nm)的升高对栎类落叶的长期分解的影响。高于红斑加权UV-B的环境水平,相当于在双乙酸纤维素过滤的荧光UVB灯阵列下产生的UV-A辐射(315-400 nm),相当于臭氧柱减少约18%。幼树还应在聚酯过滤的荧光灯阵列下单独暴露于升高的UV-A辐射下,而在无电灯阵列下则暴露于周围太阳辐射下。辐照8个月后,将摘下的叶子放在垃圾袋中,在混合落叶林地的垃圾层中分解4.08年。在生长过程中,紫外线-B和紫外线-A辐射增强后,幼树叶片凋落物的干重损失比紫外线-A辐射单独照射时凋落物的干重损失高17%。凋落的叶片在增加的UV-B和UV-A生长期间的年凋落物重量损失(k)和95%的材料腐烂所需的估计时间(3 / k)分别增加和减少了27%相对于单独暴露于UV-A的辐射。目前的数据证实了先前的研究结果,这些研究表明在生长过程中施加的UV-B辐射会加速土壤中Q. robur叶凋落物的随后分解,但表明这种影响在脱落后持续超过四年。

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