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Manganese ore tailing: Optimization of acid leaching conditions and recovery of soluble manganese

机译:锰矿尾矿:酸浸条件的优化和可溶性锰的回收

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Manganese recovery from industrial ore processing waste by means of leaching with sulfuric acid was the objective of this study. Experimental conditions were optimized by multivariate experimental design approaches. In order to study the factors affecting leaching, a screening step was used involving a full factorial design with central point for three variables in two levels (2~3). The three variables studied were leaching time, concentration of sulfuric acid and sample amount. The three factors screened were shown to be relevant and therefore a Doehlert design was applied to determine the best working conditions for leaching and to build the response surface. By applying the best leaching conditions, the concentrations of 12.80 and 13.64 %w/w of manganese for the global sample and for the fraction -44 + 37 μm, respectively, were found. Microbeads of chitosan were tested for removal of leachate acidity and recovering of soluble manganese. Manganese recovery from the leachate was 95.4%. Upon drying the leachate, a solid containing mostly manganese sulfate was obtained, showing that the proposed optimized method is efficient for manganese recovery from ore tailings.
机译:本研究的目的是通过硫酸浸出从工业矿石加工废料中回收锰。通过多元实验设计方法优化了实验条件。为了研究影响浸出的因素,使用了一个筛选步骤,该筛选步骤包括以两个点(2〜3)的三个变量为中心的全因子设计。研究的三个变量是浸出时间,硫酸浓度和样品量。结果表明,筛选出的三个因素是相关的,因此采用了Doehlert设计来确定最佳的浸出条件并构建响应面。通过采用最佳浸出条件,对于整体样品和分数-44 + 37μm的锰,浓度分别为12.80和13.64%w / w。测试了壳聚糖的微珠去除渗滤液酸度和回收可溶性锰的能力。从渗滤液中回收的锰为95.4%。将浸出液干燥后,获得的固体中主要含有硫酸锰,表明所提出的优化方法对于从矿石尾矿中回收锰是有效的。

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