High-power nanosecond electromagnetic pulses and dielectric barrier discharge in air consequences on structural and structure sensitive properties of ilmenite surface

I. Bunin, N. Anashkina
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Abstract

The paper presents the results of experimental studies on the influence of two types of nonequilibrium electrical discharges (high-power nanosecond electromagnetic pulse (HPEMP) and dielectric barrier discharges (DBD) in air at atmospheric pressure) have on the surface morphology, microhardness, and physicochemical properties of natural ilmenite (Juina deposit of Brazil). Scanning electron microscopy (SEM-EDX), Fourier-transform infrared spectroscopy (FTIR), microhardness testing, contact angles of surface wetting, and streaming potentials are used to examine the morphology, defects, chemical composition of ilmenite surfaces, and its structure sensitive properties. Using FTIR, we established, the following possible mechanisms of the nonthermal effect of HPEMP and DBD low temperature plasma irradiation, which modify the structural state of ilmenite surfaces: (i) the transformation (destruction) of the mineral’s crystalline structure; (ii) the electrical disintegration and removal of fine films of iron oxides (hydroxides) from the ilmenite surfaces, and (iii) the subsequent hydroxylation and/or oxidation of Fe2+ to Fe3+ iron ions on the surfaces, due to the effect of the products of microdischarge plasmas. Advantages of using brief energy treatments (ttreat = 10–30 s) to modify the structural-chemical state of ilmenite surfaces and the physicochemical properties of mineral in order to improve the efficiency of processing complex titanium ores are shown. Keywords: ilmenite, high-power nanosecond electromagnetic pulses, dielectric barrier discharge, surface, microscopy, spectroscopy, microhardness, electrokinetic potential, contact angle.
高功率纳秒级电磁脉冲和空气介质阻挡放电对钛铁矿表面结构和结构敏感性的影响
本文介绍了两种非平衡放电(高功率纳秒级电磁脉冲放电(HPEMP)和介质阻挡放电(DBD))对天然钛铁矿(巴西Juina矿床)表面形貌、显微硬度和物理化学性质影响的实验研究结果。采用扫描电子显微镜(SEM-EDX)、傅里叶变换红外光谱(FTIR)、显微硬度测试、表面润湿接触角和流电位等方法研究钛铁矿表面的形貌、缺陷、化学成分及其结构敏感性。利用FTIR,我们建立了HPEMP和DBD低温等离子体辐照改变钛铁矿表面结构状态的非热效应的可能机制:(1)矿物晶体结构的转变(破坏);(ii)钛铁矿表面氧化铁(氢氧化物)的电分解和去除,以及(iii)由于微放电等离子体产物的影响,随后表面上的Fe2+羟基化和/或氧化为Fe3+铁离子。指出了采用短时间能量处理(处理= 10 ~ 30 s)来改变钛铁矿表面的结构化学状态和矿物的物理化学性质,以提高复杂钛矿的处理效率的优点。关键词:钛铁矿,大功率纳秒级电磁脉冲,介质阻挡放电,表面,显微,光谱学,显微硬度,电动势,接触角。
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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