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Mechanochemically Synthesised Coal-Based Magnetic Carbon Composites for Removing As(V) and Cd(II) from Aqueous Solutions

机译:机械化学合成的煤基磁性碳复合材料用于去除水溶液中的As(V)和Cd(II)

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摘要

The continued decrease in water quality requires new advances in the treatment of wastewater, including the preparation of novel, effective, environmentally friendly, and affordable sorbents of toxic pollutants. We introduce a simple non-conventional mechanochemical synthesis of magnetically responsive materials. Magnetic lignite and magnetic char were prepared by high-energy ball co-milling from either raw Slovak lignite or coal-based char together with a ferrofluid. The products were characterised by X-ray diffraction, electron microscopy, 57Fe Mössbauer spectroscopy, X-ray photoelectron spectroscopy (XPS), volumetric magnetic susceptibility, and low-temperature nitrogen adsorption, and both magnetic carbons were comparatively tested as potential sorbents of As(V) oxyanions and Cd(II) cations in aqueous solutions. The magnetic char was an excellent sorbent of As(V) oxyanions (Qm = 19.9 mg/g at pH 3.9), whereas the magnetic lignite was less effective. The different sorption properties towards arsenic anions may have been due to different oxidation states of iron on the surfaces of the two magnetic composites (determined by XPS), although the overall state of iron monitored by Mössbauer spectroscopy was similar for both samples. Both magnetic composites were effective sorbents for removing Cd(II) cations (Qm (magnetic lignite) = 70.4 mg/g at pH 6.5; Qm (magnetic char) = 58.8 mg/g at pH 6.8).
机译:水质的持续下降要求在废水处理方面取得新进展,包括制备新颖,有效,环保且价格合理的有毒污染物吸附剂。我们介绍了一种简单的非常规机械化学合成的磁响应材料。磁性褐煤和磁性炭是通过高能球磨从原料斯洛伐克褐煤或煤基炭与铁磁流体共同制备的。产品通过X射线衍射,电子显微镜, 57 FeMössbauer光谱,X射线光电子能谱(XPS),体积磁化率和低温氮吸附进行了表征,两种磁性碳均作为水溶液中As(V)氧阴离子和Cd(II)阳离子的潜在吸附剂进行了比较测试。磁性炭是As(V)氧阴离子的优良吸附剂(在pH 3.9下Qm = 19.9 mg / g),而磁性褐煤效果较差。尽管两种样品的Mössbauer光谱法监测到的铁的总体状态相似,但这两种磁性复合材料表面上铁的不同氧化态可能是由于铁在两种磁性复合物表面上的不同氧化态引起的。两种磁性复合材料都是去除Cd(II)阳离子的有效吸附剂(pH 6.5时Qm(磁性褐煤)= 70.4 mg / g; pH 6.8时Qm(磁性炭)= 58.8 mg / g)。

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