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Remediation of lead (Pb(II)) wastewater through recovery of lead carbonate in a fluidized-bed homogeneous crystallization (FBHC) system

机译:在流化床均相结晶(FBHC)系统中通过回收碳酸铅来修复铅(Pb(II))废水

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This work demonstrated the removal of lead (Pb) from aqueous solution using fluidized-bed crystallization (FBC, using silica sand as seeds) and fluidized-bed homogeneous crystallization (FBHC, without seeds) systems. Synthetic lead wastewater with concentrations of 10, 40 and 200 ppm were treated. The results thus obtained indicated that effluent pH was an essential parameter in determining the efficiency of FBC and FBHC. A comparison between theoretical solubility and residual Pb in effluents revealed that FBHC in the predictable metastable region of pH 6.5-8.5 guaranteed 99% Pb removal and a crystallization ratio of 95% (CR%). XRD analysis suggested that the lead carbonate of FBHC products comprised either a cerussite (PbCO3) or a hydrocerussite (Pb-3(CO3)(2)(OH)(2)) phase, depending on pH. FBHC was proven to be effective in remediating lead wastewater under optimal hydraulic conditions (initial molar ratio of [Na2CO3]/[Pb] > 1.2, upflow velocity = 25-35 m h(-1) and pH(e) = 7.2 +/- 0.4), which were all similar to those in FBC. The cross-section loading (L, kg m(-2) L-1) depended on the input Pb level; L was controlled at 0.15 kg m(-2) h(-1) for treating 10 ppm-Pb and was increased to 5.73 kg m(-2) h(-1) for 40 and 200 ppm-Pb, optimizing the FBHC and FBC processes. Without the addition of seed materials, FBHC recovered purer lead carbonate than did FBC. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项工作证明了使用流化床结晶(FBC,使用硅砂作为种子)和流化床均质结晶(FBHC,无种子)系统从水溶液中去除铅(Pb)。处理了10、40和200 ppm浓度的合成铅废水。如此获得的结果表明,废水pH是确定FBC和FBHC效率的重要参数。对废水中理论溶解度和残留Pb的比较表明,在可预测的pH值为6.5-8.5的亚稳态区域中,FBHC保证了99%的Pb去除率和95%(CR%)的结晶率。 XRD分析表明,FBHC产品的碳酸铅包含陶粒(PbCO3)或水陶粒(Pb-3(CO3)(2)(OH)(2))相,具体取决于pH值。在最佳水力条件下([Na2CO3] / [Pb]的初始摩尔比> 1.2,上流速度= 25-35 mh(-1),pH(e)= 7.2 +/-),FBHC被证明可有效去除铅废水。 0.4),都与FBC中的相似。横截面载荷(L,kg m(-2)L-1)取决于输入的铅水平;将L控制在0.15 kg m(-2)h(-1)以处理10 ppm-Pb,并增加到5.73 kg m(-2)h(-1)分别处理40和200 ppm-Pb,从而优化了FBHC和FBC流程。在不添加种子材料的情况下,FBHC回收的碳酸铅比FBC更纯。 (C)2015 Elsevier B.V.保留所有权利。

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