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Changing the conventional clarification method in metal sulfide precipitation by a membrane-based filtration process

机译:通过膜基过滤过程改变金属硫化物沉淀的常规澄清方法

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The metal sulfide precipitation process is a widely studied technology used to recover metals or remove pollutants from different aqueous sources. However, the conventional clarification stage used to separate the generated precipitates cannot effectively remove them from recovered solutions. Taking this into account, the current study focuses on developing a new separation method applied in metal sulfide precipitates, based on a membrane filtration process. Different operating conditions and metal concentration in the feed solution were evaluated for the separation of copper sulfide precipitates formed from synthetic cyanide solutions in ceramic microfiltration membranes. Results showed attractive values of flux and copper recovery. Flux results ranged between 0.9 L/m2s and 1.2 L/m2s for copper concentrations above 500?mg/L, and copper recoveries resulted closer to 100% at the determined optimal operating conditions (4.5 pH, 120% NaHS stoichiometric dosage, and 2?bar feed pressure). These flux values decreased up to one order of magnitude for diluted copper concentrations, due to a change of aggregation capacity of precipitates. This study has demonstrated that the membrane filtration process can be a suitable alternative for the conventional gravitational clarification, promoting better performance results in terms of equipment capacity, metal recovery, and process safety.
机译:金属硫化物沉淀过程是一种广泛研究的技术,用于回收金属或从不同水性源中去除污染物。然而,用于分离产生的沉淀物的常规澄清阶段不能有效地将它们从回收的溶液中除去。考虑到这一点,目前的研究侧重于在膜过滤过程中开发施加在金属硫化物沉淀物中的新分离方法。评价进料溶液中的不同操作条件和金属浓度,用于分离陶瓷微滤膜中的合成氰化物溶液形成的硫化铜沉淀物。结果表明,助焊剂和铜回收率有吸引力。铜浓度为500μmg/ l / m2s和1.2L / m 2s之间的助熔剂的助熔剂在500〜mg / l以上的铜浓度之间,并且在确定的最佳操作条件下导致铜回收率更接近100%(4.5 pH值,120%NaHS化学计量剂量,2?条形压力)。由于沉淀物的聚集能力的变化,这些磁通值对于稀释的铜浓度降低至稀释铜浓度的一个级。该研究表明,膜过滤过程可以是常规重力澄清的合适替代方案,促进设备容量,金属回收和工艺安全性方面的更好的性能。

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