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A new thiosalt depuration bioprocess for water- recycling in metallic sulphide mineral processing

机译:一种新的硫磺酸矿物矿物加工水循环水分钙化生物处理

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摘要

Economic and environmental imperatives force the metallic sulphide processing industry to re-use liquors that normally contain thiosalts; this processing entails difficulties in operation control and losses in metal-extraction performance. Bio-oxidation presents a promising option for thiosalt removal. Hitherto, this method has been tested to treat synthetic liquors containing only one thiosalt, either tetrathionate or thiosulphate, usually at low concentration (< 1 g/L). In this article, bio-oxidation is studied of synthetic and real liquors containing mixtures of these thiosalts at concentrations close to 4.5 g/L. Coexistence of thiosulphate and tetrathionate in an acidic medium leads to strong and irreversible inhibition phenomena (performance losses close to 80%). In order to solve this problem, a previous treatment is proposed consisting of the 8-hour aeration of inlet solution after adding up to 20 mg/L and pH 1.5 of Cu2+ and sulphuric acid, respectively, resulting in the complete removal of thiosulphate and sulphite. Pre-treated real liquors were fed into a 1 L discontinuous stirred tank bioreactor and a 1 L continuous flooded packed-bed bioreactor, which were successfully started up and operated, thereby obtaining bio-oxidation rates close to the highest rates found in the literature with synthetic liquors.
机译:经济和环境要求迫使金属硫化物加工行业重用通常含有硫磺酸的酒;该处理需要在金属提取性能下运行控制和损耗方面存在困难。生物氧化呈现出对硫磷去除的有希望的选择。迄今为止,已经测试了该方法以治疗仅含有一种硫磷或硫代硫酸酯的合成液,通常以低浓度(<1g / l)。在本文中,研究了生物氧化的合成和真实液体,其含有这些硫磺的混合物,其浓度接近4.5g / l。硫代硫酸盐和四分离化酸性介质的共存导致强烈且不可逆的抑制现象(性能损失接近80%)。为了解决这个问题,提出了先前的治疗,该处理分别在加入高达20mg / L和pH 1.5的Cu 2+和硫酸后的8小时曝气,导致硫代硫酸盐完全除去。将预处理的真实液体送入1L不连续的搅拌釜生物反应器和1L连续泛洪填充床生物反应器,该生物反应器成功启动并操作,从而获得与文献中的最高速率接近的生物氧化率合成液。

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