Nyitni vagy nem nyitni? – Pilisi barlangok szellőzöttsége a geokémiai adatok tükrében

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引用次数: 1

Abstract

Speleothem formations are one of the most important and informative objects in paleoclimatological research. However, in order to interpret the data that reflect environmental conditions, we have to know the operation of the given cave, and it should be determined how the composition of the carbonate formed at the given site is related to the changes in the environmental parameters. The study presents the results of stable isotope geochemical analysis of speleothem formations and carbonate precipitated on glass plates collected in the Vacska Cave (Pilis Hills). The youngest layer of carbonate formations, formed in the last 1-2 decades, shows an isotope fractionation sign indicating strong ventilation, with the exception of a single site farthest from the entrance to the cave. The isotope shift was also accompanied by a change in carbonate fabric. Preceding the fabric change, the carbonate of the speleothem formations did not show ventilation-related shifts in the isotope compositions, suggesting that the exploration and opening of the cave areas may have caused the change. Based on this, we recommend the installation of local closures in the Vacska Cave and in the entire Ariadne cave system. The study provides a good example of how the results of basic research can be utilized in practical environmental protection, in the preservation of a strictly protected cave environment.
洞穴地层是古气候学研究中最重要的资料之一。然而,为了解释反映环境条件的数据,我们必须知道给定洞穴的运行情况,并且应该确定在给定地点形成的碳酸盐成分与环境参数变化的关系。本文介绍了在Vacska洞穴(Pilis Hills)收集的玻璃板上沉积的岩洞层和碳酸盐的稳定同位素地球化学分析结果。最年轻的一层碳酸盐地层形成于最近的1-2年,同位素分异迹象表明,除了离洞穴入口最远的一个地点外,通风条件较强。同位素的变化还伴随着碳酸盐结构的变化。在构造变化之前,岩洞层碳酸盐的同位素组成未表现出与通风相关的变化,表明这种变化可能是由于洞穴区域的勘探和开放造成的。基于此,我们建议在Vacska洞穴和整个阿里阿德涅洞穴系统中安装局部封闭装置。该研究提供了一个很好的例子,说明如何将基础研究成果应用于实际环境保护,保护受到严格保护的洞穴环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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