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首页> 外文期刊>The Cryosphere Discussions >Impact of impurities and cryoconite on the optical properties of the Morteratsch Glacier (Swiss Alps)
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Impact of impurities and cryoconite on the optical properties of the Morteratsch Glacier (Swiss Alps)

机译:杂质和冰晶石对Morteratsch冰川(瑞士阿尔卑斯山)的光学特性的影响

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pstrongAbstract./strong The amount of reflected energy by snow and ice plays a fundamental role in their melting processes. Different non-ice materials (carbonaceous particles, mineral dust (MD), microorganisms, algae, etc.) can decrease the reflectance of snow and ice promoting the melt. The object of this paper is to assess the capability of field and satellite (EO-1 Hyperion) hyperspectral data to characterize the impact of light-absorbing impurities (LAIs) on the surface reflectance of ice and snow of the Vadret da Morteratsch, a large valley glacier in the Swiss Alps. The spatial distribution of both narrow-band and broad-band indices derived from Hyperion was analyzed in relation to ice and snow impurities. In situ and laboratory reflectance spectra were acquired to characterize the optical properties of ice and cryoconite samples. The concentrations of elemental carbon (EC), organic carbon (OC) and levoglucosan were also determined to characterize the impurities found in cryoconite. Multi-wavelength absorbance spectra were measured to compare the optical properties of cryoconite samples and local moraine sediments. In situ reflectance spectra showed that the presence of impurities reduced ice reflectance in visible wavelengths by 80a??90span class="thinspace"/span%. Satellite data also showed the outcropping of dust during the melting season in the upper parts of the glacier, revealing that seasonal input of atmospheric dust can decrease the reflectance also in the accumulation zone of the glacier. The presence of EC and OC in cryoconite samples suggests a relevant role of carbonaceous and organic material in the darkening of the ablation zone. This darkening effect is added to that caused by fine debris from lateral moraines, which is assumed to represent a large fraction of cryoconite. Possible input of anthropogenic activity cannot be excluded and further research is needed to assess the role of human activities in the darkening process of glaciers observed in recent years./p.
机译:> >摘要。雪和冰的反射能量在其融化过程中起着至关重要的作用。不同的非冰材料(碳质颗粒,矿物粉尘(MD),微生物,藻类等)会降低雪和冰的反射率,从而促进融化。本文的目的是评估野外和卫星(EO-1 Hyperion)高光谱数据的能力,以表征光吸收杂质(LAI)对Vadret da Morteratsch大型冰和雪的表面反射率的影响山谷的冰川在瑞士的阿尔卑斯山。分析了从Hyperion导出的窄带和宽带指数的空间分布,并与冰雪杂质相关。获得了原位和实验室反射光谱,以表征冰和冰晶岩样品的光学特性。还确定了元素碳(EC),有机碳(OC)和左旋葡聚糖的浓度,以表征在冰晶石中发现的杂质。测量了多波长吸收光谱,以比较冰晶岩样品和局部冰sediment沉积物的光学性质。原位反射光谱表明,杂质的存在使可见光中的冰反射率降低了80a≤90 class =“ thinspace”> %。卫星数据还显示,冰川融化季节在冰川上部露头,这表明季节性的大气尘埃输入也会降低冰川积聚区的反射率。冰晶岩样品中EC和OC的存在表明碳质和有机物质在消融区变黑中具有相关作用。这种变暗的效果被添加到由侧部沟纹的细碎屑引起的效果上,这被认为代表了很大一部分的冰晶。不能排除可能的人为活动输入,需要进一步研究以评估人类活动在近年来观察到的冰川变黑过程中的作用。

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