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Magnetic study of a mixture of magnetite and metallic iron in indoor dust samples

机译:室内粉尘样品中磁铁矿和金属铁混合物的磁性研究

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摘要

Magnetite in mixture with metallic iron in indoor dust samples was examined using several magnetic analyses, thermomagnetic curves of the magnetic susceptibility and the induced magnetization vs. temperature, hysteresis loops, and first-order reversal curves. The study of the magnetic properties was supplemented by the analysis of chemical elements and electron microscopic observation. The metallic iron in the mixture affects the values of hysteresis parameters, decreasing coercivity (B c) and increasing saturation magnetization (M s), and it is responsible for the magnetic enhancement of magnetic susceptibility. The thermomagnetic curves show several distinct features: the first Curie temperature of magnetite, the second one (∼764 °C) of iron, and the rapid decrease on the heating curves (between 600 and 750 °C) caused by the oxidation of iron to magnetite. Two magnetochemical processes appear during the thermal treatment of indoor dust: the oxidation of iron to magnetite and the neo-formation of magnetite as a result of chemical transformation of non-magnetic minerals. The shift of the hysteresis parameter ratios from the multi-domain (MD) region towards the single-domain (SD) region on the Day-Dunlop plot is controlled by the oxidation of iron in the thermally induced process and the grain size of the new formed magnetite. The magnetic properties of indoor dust are a potential indicator of indoor air pollution. Elemental iron plays an important role in the development of inflammation in humans via oxidative stress, so that the presence of metallic Fe in indoor dust can affect human health.
机译:使用多个磁分析,磁化率和感应磁化强度与温度的热磁曲线,磁滞回线和一阶反转曲线,检查了室内灰尘样品中与金属铁混合的磁铁矿。通过化学元素分析和电子显微镜观察补充了磁性能的研究。混合物中的金属铁会影响磁滞参数值,降低矫顽力(B c)和增加饱和磁化强度(M s),并负责磁化率的磁增强。热磁曲线显示出几个明显的特征:磁铁矿的第一个居里温度,铁的第二个居里温度(〜764°C)以及由于铁被氧化为铁而引起的加热曲线的快速下降(在600至750°C之间)磁铁矿。室内粉尘的热处理过程中会出现两个磁化学过程:铁氧化为磁铁矿和非磁性矿物化学转化产生的磁铁矿新形成。磁滞参数比在Day-Dunlop图上从多畴(MD)区域向单畴(SD)区域的移动受热诱导过程中铁的氧化和新晶粒尺寸的控制形成磁铁矿。室内灰尘的磁性是潜在的室内空气污染指标。元素铁通过氧化应激在人类发炎中起重要作用,因此室内灰尘中金属铁的存在会影响人体健康。

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