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Characterising electron transfer mechanism in tribo-electrification of pyrite through contact angle measurements

机译:通过接触角测量表征黄铁矿摩擦带电中的电子转移机理

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摘要

Coal beneficiation by tribo-electrostatic method depends on tribo-charging attributes of coal and ash forming minerals. The tribo-electrification behaviour of pyrite mineral contacted with different materials has been investigated through charge measurements and the charge acquisition is probed through surface energy calculations from liquid contact angle data. Liquid contact angle on pyrite powder after tribo-electrification is determined by Kruss tensiometer using Washburn's equation. The sample holder in tensiometer is specially fabricated with different materials serving the purpose of tribo-electrification and contact angle measurement. The acid and base parameters of pyrite surface determined with van Oss acid-base approach using liquid contact angle data after tribo-electrification with different materials revealed the charging phenomena and electron transfer mechanism. The results showed an explicit correlation between the charge generated by pyrite powder and surface acceptor (acid)-donor (base) electronic state underlying the work functions of contacting surfaces. Thus a method for characterising the changes in surface energetic structure of solids during contact electrification in terms of surface acid-base parameters has been illustrated for the first time.
机译:摩擦静电法对煤炭的选矿取决于煤和形成灰分的矿物的摩擦带电特性。通过电荷测量研究了与不同材料接触的黄铁矿矿物的摩擦起电行为,并通过根据液体接触角数据计算表面能来探测电荷的获取。摩擦带电后,在黄铁矿粉上的液体接触角由克鲁斯张力计使用Washburn方程确定。张力计中的样品架是用不同的材料专门制造的,用于摩擦起电和接触角测量。在不同材料摩擦起电后,利用液体接触角数据,通过van Oss酸碱法确定的黄铁矿表面酸和碱参数揭示了带电现象和电子转移机理。结果表明,黄铁矿粉产生的电荷与接触表面功函数下的表面受体(酸)-施主(碱)电子态之间存在明显的相关性。因此,首次说明了根据表面酸碱参数表征接触带电过程中固体表面能结构变化的方法。

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