Alkali-activated metallurgical slag as a sustainable adsorbent

S. Amerkhanova, Uali Uali, R. Shlyapov, D. Belgibayeva
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Abstract

This paper is devoted to obtaining a zeolite-containing sorbent based on metallurgical waste — slag. The synthesis of zeolite adsorbent from ash and slag was carried out by hydrochemical and thermal treatment. The initial object and the obtained material were characterized using following methods: Fourier-transform infrared spectroscopy, scanning electron microscopy, energy dispersive analysis, X-ray phase analysis, titrimetry. The way of converting solid-phase waste into a beneficial product has been demonstrated. The study results showed that the surface of the obtained material is saturated with functional groups (hydroxy-, carboxy-, lactone), which predetermine the ability to bind metal ions during adsorption. The adsorption capacity of the product has been estimated for iodine and methylene blue. A thermodynamic analysis of the process of sorption of copper (II) ions from an aqueous solution has been conducted. It has identified that the sorbent can also be used for the adsorptive concentration of ions of rare-earth elements by the example of lanthanum and erbium. Laboratory testing of the possible use of the sorbent to purify industrial water was carried out using the example of wastewater from a chromium plating shop
碱活化冶金渣作为可持续吸附剂
以冶金废渣为原料,制备了一种含沸石的吸附剂。以粉煤灰和炉渣为原料,通过水化学和热处理合成沸石吸附剂。采用傅里叶变换红外光谱、扫描电镜、能量色散分析、x射线物相分析、滴定法对初始对象和所得材料进行了表征。已论证了将固相废物转化为有益产品的方法。研究结果表明,所获得的材料表面饱和了官能团(羟基-,羧基-,内酯),这预先决定了吸附过程中与金属离子结合的能力。测定了产物对碘和亚甲基蓝的吸附量。本文对水溶液中铜离子的吸附过程进行了热力学分析。以镧、铒为例,表明该吸附剂也可用于稀土离子的吸附浓缩。以镀铬车间的废水为例,对吸附剂净化工业用水的可能性进行了实验室测试
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