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玄武岩的局部微波加热——“微型火山”引发的熔岩、尘埃等离子体和球状闪电喷发

Localized microwave-heating (LMH) of basalt - Lava, dusty-plasma, and ball-lightning ejection by a "miniature volcano".

作者信息

Jerby Eli, Shoshani Yoav

机构信息

Faculty of Engineering, Tel Aviv University, Ramat Aviv, 6997801, Israel.

出版信息

Sci Rep. 2019 Sep 10;9(1):12954. doi: 10.1038/s41598-019-49049-5.

Abstract

This paper presents various phenomena obtained by localized microwave-heating (LMH) of basalt, including effects of inner core melting, lava eruption and flow (from the molten core outside), plasma ejection from basalt (in forms of fire-column and ball-lightning), and effusion of dust (deposited as powder by the plasma). The experiments are conducted by irradiating a basalt stone (30-cm volume, either naturally shaped or cut to a cubic brick) in a microwave cavity, fed by an adaptively-matched magnetron (1 kW at 2.45 GHz). Effects of LMH and thermal-runaway instability in basalt are observed and compared to theory. Various in- and ex-situ diagnostics are used in order to characterize the dusty-plasma observed and its nanoparticle products. The resemblance of the experimental phenomena obtained in small laboratory scale to gigantic volcanic phenomena in nature is noticed, and its potential relevance to further volcanic studies is discussed. In particular, we show that LMH could be instrumental for laboratory demonstrations and simulations of miniature-volcano effects, such as lava flows, formation of volcanic glass (obsidian), eruption of dusty-plasma and volcanic ash, and ejection of ball lightning. These findings might be significant as well for various applications, such as drilling and mining, microwave-induced breakdown spectroscopy (MIBS), mineral extraction, and powder production directly from basalts.

摘要

本文介绍了通过对玄武岩进行局部微波加热(LMH)所获得的各种现象,包括内核熔化、熔岩喷发和流动(从熔化的内核向外)、玄武岩中的等离子体喷射(以火柱和球状闪电的形式)以及尘埃的流出(由等离子体沉积为粉末)。实验是通过在一个由自适应匹配磁控管(2.45 GHz时约1千瓦)馈电的微波腔中照射一块玄武岩(体积约30立方厘米,形状为自然形状或切割成立方体砖块)来进行的。观察了玄武岩中局部微波加热和热失控不稳定性的影响,并与理论进行了比较。使用了各种原位和非原位诊断方法来表征所观察到的尘埃等离子体及其纳米颗粒产物。注意到在小实验室规模中获得的实验现象与自然界中巨大的火山现象的相似性,并讨论了其与进一步火山研究的潜在相关性。特别是,我们表明局部微波加热可有助于在实验室中演示和模拟微型火山效应,如熔岩流、火山玻璃(黑曜石)的形成、尘埃等离子体和火山灰的喷发以及球状闪电的喷射。这些发现对于各种应用也可能具有重要意义,例如钻探和采矿、微波诱导击穿光谱法(MIBS)、矿物提取以及直接从玄武岩生产粉末。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f16/6736850/1ae29d3c6d9d/41598_2019_49049_Fig1_HTML.jpg

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