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Regularities of Modification of Active Carbons by Oxygen-Containing Manganese Compounds

机译:含氧锰化合物改性活性炭的规律

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Composite materials resulted from impregnation of active carbons with aqueous solutions of manganese (II) chloride were studied by the methods of gas adsorption, X-ray powder diffraction, atomic absorption spectrometry, energy-dispersive X-ray spectroscopy, and scanning electron microscopy. The texture and specific characteristics of porosity, microporosity, and composition of the prepared composites were found to change depending on the acidic or basic nature of the surface of initial carbons, conditions of impregnation, subsequent treatment, and calcination temperature. It was shown that, upon the impregnation of the "acidic" carbons, the total pore volume covered 8-11 times the micropore volume, as distinct from the "basic" samples, which showed only a two- or threefold excess. The specific BET surface determined for the "acidic" carbons exceeded the value found for the samples with a "basic" surface. It was confirmed that the prepared composites contained manganese in various manganese-oxide compounds including ramsdellite, hausmannite, manganosite, bixbyite, and partridgeite at concentrations of 23-48 wt %.
机译:通过气体吸附方法,X射线粉末衍射,原子吸收光谱法,能量分散X射线光谱和扫描电子显微镜研究,通过浸渍具有氯化锰水溶液的活性炭产生的复合材料。发现制备复合材料的孔隙,微孔和组成的纹理和特异性特征根据初始碳的表面,浸渍条件,随后的治疗和煅烧温度的酸性或基本性改变而变化。结果表明,在浸渍“酸性”碳的情况下,总孔体积覆盖了微孔体积的8-11倍,与“基本”样品不同,只有两种或三倍过量。确定为“酸性”碳的特定BET表面超过了具有“基本”表面的样品的值。确实证实,制备的复合材料在各种氧化锰化合物中含有锰氧化物化合物,包括苎msdellite,Hausmannite,锰,BixyITE和粒子,浓度为23-48wt%。

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