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The Dewatering Behaviour of Transformed Ferri-Oxyhydroxide Precipitates Formed Under Moderate Temperature and Varying Fe(III) Concentrations

机译:中等温度和不同Fe(III)浓度在中等温度和不同Fe(III)浓度下形成转化的铁氧化物沉淀的脱水行为

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Mining operations generate Acid Mine Drainage (AMD) that poses a significant threat to the natural environment. AMD treatment using Ca(OH)_2 leads to the precipitation of a sludge dominated by a mixture of ferri-oxyhydroxides. This sludge has poor dewatering tendencies and is deposited in landfills with potential for metal remobilization. This study investigated the dewatering behaviour of a precipitate formed during elevated temperature treatment of a primary, pre-settled sludge from the neutralisation of aqueous acidic Fe_2(SO_4)_3 and Ca(OH)_2 solutions in an MSMPR reactor. The resulting treated precipitates were analysed for micro-properties, with results showing that an increase in the secondary reactor temperature from 25 °C up to 50 °C led to an increase in mean particle size, a decrease in the number of particles and improved dewatering behaviour at a ferric concentration of 300 mg/L. This was ascribed to the attainment of a circum-neutral surface charge that favoured agglomeration and a change in micro and nano-structure that allowed for better water passage.
机译:采矿业务产生对自然环境构成重大威胁的酸性矿山排水(AMD)。使用Ca(OH)_2的AMD治疗导致由铁羟基氧化物混合物主导的污泥的沉淀。这种污泥具有较差的脱水倾向,并沉积在垃圾填埋场中,具有金属重组的潜力。本研究研究了在MSMPR反应器中含水酸性Fe_2(SO_4)_3和Ca(OH)_2溶液的中和的初级预沉淀的粒度高温处理期间形成的沉淀物的脱水行为。分析了所得的处理过的沉淀物,用于微观性质,结果表明,二次反应器温度从25℃的增加,高达50℃的增加导致平均粒度的增加,颗粒数量的减少和改善的脱水浓度为300 mg / L的行为。这归因于获得有利于聚集的环中性表面电荷和微观和纳米结构的变化,使其允许更好的水通道。

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