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首页> 外文期刊>The Cryosphere Discussions >Alpine permafrost thawing during the Medieval Warm Period identified from cryogenic cave carbonates
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Alpine permafrost thawing during the Medieval Warm Period identified from cryogenic cave carbonates

机译:从低温山洞碳酸盐岩中发现,中世纪温暖期的高山多年冻土融化

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Coarse crystalline cryogenic cave carbonates (CCCsubcoarse/sub) dated to the last glacial period are common in central European caves and provide convincing evidence of palaeo-permafrost during this time. Little is known, however, about the exact nature of the environment in which CCCsubcoarse/sub formed as no modern analogue setting is known. Here, we report the first findings of sub-recent, albeit inactive, CCCsubcoarse/sub from a cave of the Western Alps which is located in the present-day permafrost zone. The globular shape and the presence of ubiquitous euhedral crystal terminations are comparable to previously reported aggregates from the last glacial period and strongly suggest that these aggregates formed subaqueously in pools lacking agitation. Furthermore, stable isotope values of mm-sized spheroids point to calcite precipitation in a closed system with respect to COsub2/sub, strongly supporting the hypothesis of a cryogenic origin associated with the freezing of water ponds. U-series analyses revealed three clusters of late Holocene calcite precipitation intervals between 2129 and 751 a b2k. These ages correlate with known periods of elevated summer temperatures, suggesting that warming and thawing of the frozen catchment above the cave allowed water infiltration into the karst system. The growth of CCCsubcoarse/sub resulted from the re-freezing of this water in the still cold karst cavities.
机译:追溯至上一个冰川期的粗晶低温山洞碳酸盐(CCC coarse )在欧洲中部山洞中很常见,并提供了令人信服的证据表明这段时期的古多年冻土层。然而,关于CCC coarse 形成的环境的确切性质却知之甚少,因为没有现代的模拟装置。在这里,我们报告了位于现今多年冻土带的西阿尔卑斯山一个山洞中近来的CCC <粗> 的首次发现。球形和普遍存在的正面体晶体末端的存在与上次冰期以前报道的聚集体相当,并且强烈暗示这些聚集体在缺乏搅拌的水中以水下形成。此外,毫米大小的椭球的稳定同位素值表明在封闭系统中相对于CO 2 的方解石沉淀,有力地支持了与冻结水塘有关的低温起源的假说。 U系列分析显示,晚全新世方解石的三个降水簇在2129至751 a b2k之间。这些年龄与已知的夏季气温升高时期有关,表明洞穴上方冰冻集水区的变暖和解冻使水渗透到岩溶系统中。 CCC coarse 的生长是由于这种水在仍然很冷的岩溶腔中重新冻结而造成的。

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