School of Metallurgy and Environment, Central South University, Changsha, 410083, China.
Central South University, National Engineering Research Center for Heavy Metals Pollution Control and Treatment, Changsha, 410083, China.
Environ Sci Pollut Res Int. 2019 Nov;26(33):34531-34551. doi: 10.1007/s11356-019-06512-0. Epub 2019 Oct 23.
Sulfide precipitation method has been widely applied in heavy metal-polluted wastewater treatment, due to the low solubility of most metal sulfide precipitates. Nevertheless, the relevant hydrodynamics studies on the metal sulfide precipitation process are rarely found in the literature. In this study, three continuous-flow sulfide precipitation reactors (CFSPRs) were designed and evaluated by a computational method. To characterize the process efficiency of copper sulfide precipitation in different reactors, fluid velocity field, species concentration distribution, and reaction rate distribution maps were acquired as simulation results. A two-factor designed set of boundary conditions was used to determine their effects on processing efficiency. The model results indicate that the inflow rate and reactor layout have significant effects on the copper sulfide precipitation process. The layout of reactor no. 3 and the inflow rate of 0.75 m/s prove to have higher treatment efficiencies than those at other conditions. Possible explanations for the simulation results were proposed. The model data of effluent concentration were compared and statistically analyzed with the measured concentrations of copper ion and sulfur ion in the outlet stream, and the results demonstrate a strong correlation between them, which suggests the model is reasonably accurate.
硫化物沉淀法由于大多数金属硫化物沉淀的低溶解度而被广泛应用于重金属污染废水处理中。然而,文献中很少有关于金属硫化物沉淀过程的相关流体动力学研究。在本研究中,设计并评估了三个连续流硫化物沉淀反应器(CFSPR),采用计算方法。为了表征不同反应器中铜硫化物沉淀的过程效率,获得了流体速度场、物质浓度分布和反应速率分布图作为模拟结果。采用两组边界条件设计来确定它们对处理效率的影响。模型结果表明,流速和反应器布局对铜硫化物沉淀过程有显著影响。反应器 3 的布局和 0.75m/s 的流速被证明比其他条件具有更高的处理效率。对模拟结果提出了可能的解释。将出口流中铜离子和硫离子的实测浓度与模型数据进行了比较和统计分析,结果表明它们之间具有很强的相关性,这表明模型是合理准确的。