Çalışkanoğlu A Zeynep, Camara Alessandra S B, Cimarelli Corrado, Dingwell Donald B, Hess Kai-Uwe
Department of Earth and Environmental Sciences, Ludwig-Maximilians-Universität, Theresienstraße 41, 80333, Munich, Germany.
Institute of Energy Systems Munich, Universität der Bundeswehr, Werner-Heisenberg-Weg 39, 85577, Neubiberg, Germany.
Sci Rep. 2023 Jul 19;13(1):11685. doi: 10.1038/s41598-023-38781-8.
Fulgurites have been documented in geological deposits from throughout Earth's history. They have also been assigned a potential role in prebiotic chemistry as a source of reactants. Fulgurites are generated in nature by cloud-to-ground lightning strikes. The unpredictability in space and time of the occurrence of lightning events has limited the investigation of both the mechanisms by, and the conditions under, which fulgurites form. A laboratory-based approach can mitigate these limitations. Here, we describe experimentally generated fulgurites generated from Laacher See volcanic ash. We employ a DC source with a trigger-pulse setup in a high voltage laboratory, whose capabilities enable experimental conditions that correspond closely to the electrical characteristics of natural lightning strikes. The experimentally generated fulgurites closely resemble naturally-occurring fulgurites in both state and texture. These experimental investigations yield a high reproducibility of the characteristic of fulgurites generated under well-constrained conditions, enabling some inferences to be made regarding the processes involved in the generation of fulgurites in nature. This work provides a basis for a systematic characterization of experimental fulgurites and the characteristic of lightning discharges.
在地球历史的地质沉积物中已有关于闪电熔岩的记载。它们在生命起源前的化学过程中也被认为可能作为反应物来源发挥作用。闪电熔岩是由云地闪电击中地面形成的。闪电事件在时空上的不可预测性限制了对闪电熔岩形成机制和条件的研究。基于实验室的方法可以缓解这些限制。在此,我们描述了由拉赫湖火山灰实验生成的闪电熔岩。我们在高压实验室中使用带有触发脉冲装置的直流电源,其功能能够实现与自然闪电击电特性紧密对应的实验条件。实验生成的闪电熔岩在状态和质地方面都与天然闪电熔岩极为相似。这些实验研究在严格控制的条件下生成的闪电熔岩特征具有很高的可重复性,从而能够对自然界中闪电熔岩形成过程进行一些推断。这项工作为系统表征实验闪电熔岩及闪电放电特征奠定了基础。