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首页> 外文期刊>Minerals Engineering >Removal of arsenic from gold cyanidation process waters by use of cerium-based magnetic adsorbents
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Removal of arsenic from gold cyanidation process waters by use of cerium-based magnetic adsorbents

机译:通过使用基于铈基磁性吸附剂从金氰化过程中除去砷

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Cerium-based magnetic adsorbents (referred to as Fe3O4@CeO2/(OH)(x)) were synthesised via a simple chemical precipitation method. Scanning electron microscopy - energy dispersive spectrometry (SEM-EDS) showed that the synthesised particles had an average size of approximately 300 mn. The particles consisted of crystalline magnetite cores coated with poorly ordered cerium oxide as identified by their X-ray diffraction (XRD) patterns. A saturation magnetization of approximately 40 emu/g was determined by a superconducting quantum interference device (SQUID), making Fe3O4@CeO2/(OH)(x) easy to separate magnetically. The Brunauer-EmmettTeller (BET) specific surface area of the final product was approximately 91.38 +/- 1.47 m(2)/g. Systematic adsorption tests showed that both As(III) and As(V) could be rapidly removed by Fe3O4@CeO2/(OH)(x) with the Langmuir maximum adsorption capacities of 79.1 mg/g for As(III) and 25.5 mg/g for As(V) at a pH value of 9, in arsenic-only solutions. A simultaneous adsorption of 51.2 mg/g for As(III) and As(V) was obtained in simulated process waters from gold cyanidation. 1.0 mol/L NaOH solution was used as a regenerant to investigate the regeneration and reuse of Fe3O4@CeO2/(OH)(x), and over 60% of its initial adsorption capacity was retained after five consecutive adsorption-desorption cycles. Therefore, the readily synthesised Fe3O4@CeO2/(OH)(x) micro-particles, with their high degree of magnetic separability and exceptional arsenic adsorption capacity, can be considered a promising arsenic scavenger in certain industrial applications.
机译:通过简单的化学沉淀法合成铈基磁性吸附剂(称为Fe 3 O 4 CeO 2 /(OH)(X))。扫描电子显微镜 - 能量分散光谱(SEM-EDS)显示合成颗粒的平均尺寸约为300mN。颗粒由涂覆有氧化物有害的氧化铈的晶体磁铁矿芯,如通过其X射线衍射(XRD)图案鉴定。通过超导量子干涉装置(鱿鱼)测定约40兆克,使Fe3O4 @ CeO2 /(OH)(X)易于分离磁性的饱和磁化强度。最终产品的Brunauer-Emmetteller(BET)比表面积约为91.38 +/- 1.47 m(2)/ g。系统吸附试验表明,AS(III)和AS(V)可以通过FE3O4 @ CEO2 /(OH)(X)迅速除去朗米尔最大吸附容量为79.1mg / g,例如(iii)和25.5 mg / g在砷的解决方案中以pH值为9的pH值为9。在氰化氰化的模拟过程中,在模拟过程中同时吸附51.2mg / g和As(v)。将1.0mol / L NaOH溶液用作再生剂,以研究Fe3O4 @ CeO2 /(OH)(OH)(X)的再生和再利用,并且在连续五次过度吸附 - 解吸循环后保留超过60%的初始吸附能力。因此,易于合成的Fe3O4 @ CeO2 /(OH)(X)微粒,具有高磁性可分性和特殊的砷吸附能力,可被认为是某些工业应用中的有前途的砷清除剂。

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