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树木年轮生长对温度和降水的不敏感性加剧了意大利埃特纳火山喷发前归一化植被指数增强之谜。

Insensitivity of Tree-Ring Growth to Temperature and Precipitation Sharpens the Puzzle of Enhanced Pre-Eruption NDVI on Mt. Etna (Italy).

作者信息

Seiler Ruedi, Kirchner James W, Krusic Paul J, Tognetti Roberto, Houlié Nicolas, Andronico Daniele, Cullotta Sebastiano, Egli Markus, D'Arrigo Rosanne, Cherubini Paolo

机构信息

Swiss Federal Institute for Forest, Snow and Landscape Research WSL, Birmensdorf, Switzerland.

Department of Geography, University of Zurich, Zürich, Switzerland.

出版信息

PLoS One. 2017 Jan 18;12(1):e0169297. doi: 10.1371/journal.pone.0169297. eCollection 2017.

Abstract

On Mt. Etna (Italy), an enhanced Normalized Difference in Vegetation Index (NDVI) signature was detected in the summers of 2001 and 2002 along a distinct line where, in November 2002, a flank eruption subsequently occurred. These observations suggest that pre-eruptive volcanic activity may have enhanced photosynthesis along the future eruptive fissure. If a direct relation between NDVI and future volcanic eruptions could be established, it would provide a straightforward and low-cost method for early detection of upcoming eruptions. However, it is unclear if, or to what extent, the observed enhancement of NDVI can be attributed to volcanic activity prior to the subsequent eruption. We consequently aimed at determining whether an increase in ambient temperature or additional water availability owing to the rise of magma and degassing of water vapour prior to the eruption could have increased photosynthesis of Mt. Etna's trees. Using dendro-climatic analyses we quantified the sensitivity of tree ring widths to temperature and precipitation at high elevation stands on Mt. Etna. Our findings suggest that tree growth at high elevation on Mt. Etna is weakly influenced by climate, and that neither an increase in water availability nor an increase in temperature induced by pre-eruptive activity is a plausible mechanism for enhanced photosynthesis before the 2002/2003 flank eruption. Our findings thus imply that other, yet unknown, factors must be sought as causes of the pre-eruption enhancement of NDVI on Mt. Etna.

摘要

在意大利的埃特纳火山,2001年和2002年夏季在一条明显的线上检测到植被指数归一化差异(NDVI)特征增强,2002年11月该区域随后发生了一次侧翼喷发。这些观测结果表明,喷发前的火山活动可能增强了未来喷发裂隙沿线的光合作用。如果能确定NDVI与未来火山喷发之间的直接关系,将为早期探测即将到来的喷发提供一种简单且低成本的方法。然而,尚不清楚观测到的NDVI增强是否或在多大程度上可归因于随后喷发之前的火山活动。因此,我们旨在确定喷发前由于岩浆上升和水蒸气脱气导致的环境温度升高或额外的水分供应是否会增加埃特纳火山树木的光合作用。我们利用树木年轮气候分析量化了埃特纳火山高海拔地区树木年轮宽度对温度和降水的敏感性。我们的研究结果表明,埃特纳火山高海拔地区的树木生长受气候的影响较弱,喷发前活动导致的水分供应增加或温度升高都不是2002/2003年侧翼喷发前光合作用增强的合理机制。因此,我们的研究结果意味着必须寻找其他未知因素来解释埃特纳火山喷发前NDVI增强的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d1e/5242533/44465908ecd4/pone.0169297.g001.jpg

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