Intitute of Geosciences, University of Mainz, J.-J.-Becherweg 21, D-55122, Mainz, Germany.
Istituto Nazionale di Geofisica e Vulcanologia, Via di Vigna Murata 605, 00143, Rome, Italy.
Sci Rep. 2018 Jan 23;8(1):1389. doi: 10.1038/s41598-018-19608-3.
Electrification in volcanic ash plumes often leads to syn-eruptive lightning discharges. High temperatures in and around lightning plasma channels have the potential to chemically alter, re-melt, and possibly volatilize ash fragments in the eruption cloud. In this study, we experimentally simulate temperature conditions of volcanic lightning in the laboratory, and systematically investigate the effects of rapid melting on the morphology and chemical composition of ash. Samples of different size and composition are ejected towards an artificially generated electrical arc. Post-experiment ash morphologies include fully melted spheres, partially melted particles, agglomerates, and vesiculated particles. High-speed imaging reveals various processes occurring during the short lightning-ash interactions, such as particle melting and rounding, foaming, and explosive particle fragmentation. Chemical analyses of the flash-melted particles reveal considerable bulk loss of Cl, S, P and Na through thermal vaporization. Element distribution patterns suggest convection as a key process of element transport from the interior of the melt droplet to rim where volatiles are lost. Modeling the degree of sodium loss delivers maximum melt temperatures between 3290 and 3490 K. Our results imply that natural lighting strikes may be an important agent of syn-eruptive morphological and chemical processing of volcanic ash.
火山灰羽流中的电活动通常会导致同喷发闪电放电。闪电等离子体通道内及周围的高温有潜力改变、重熔并可能使喷发云中的灰烬碎片挥发。在这项研究中,我们在实验室中模拟了火山闪电的温度条件,并系统地研究了快速熔化对灰烬形态和化学成分的影响。不同大小和成分的样品被喷射到人工产生的电弧中。实验后的灰烬形态包括完全熔化的球体、部分熔化的颗粒、团聚体和有气泡的颗粒。高速成像揭示了在闪电-灰烬相互作用的短暂过程中发生的各种过程,例如颗粒熔化和球形化、泡沫形成和爆炸性颗粒碎裂。对闪熔颗粒的化学分析表明,Cl、S、P 和 Na 等大量元素通过热蒸发而损失。元素分布模式表明,对流是从熔体内部向边缘输送元素的关键过程,而挥发性物质在边缘损失。对钠损失程度的建模得出最大熔体温度在 3290 到 3490 K 之间。我们的结果表明,自然雷击可能是火山灰同喷发形态和化学处理的重要因素。