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Simultaneous As(III) and Cd removal from copper smelting wastewater using granular TiO2 columns

机译:颗粒状TiO2柱同时去除铜冶炼废水中的As(III)和Cd

摘要

Remediation of metallurgical industry wastewater has presented a great environmental challenge for decades. In this study, a complete remediation technology was proposed for simultaneous As(III) and Cd adsorptive removal, adsorbent regeneration, and recovery of As and Cd. Using three granular TiO2 columns in series, As(III) and Cd in the raw water at 2590 +/- 295 and 12 +/- 2 mg/L, respectively, could be reduced to 0.16 +/- 0.11 and 0.0133 +/- 0.0134 mg/L, well below the wastewater discharge limit. Spent TiO2 media could be regenerated using H2SO4 and NaOH, and the regenerated adsorbent could be re-used for at least 10 treatment cycles and 770 bed volumes with no decrease in its adsorption capacity. Remediation of 1 L wastewater generated 0.89-1.5 g solid residue which could be used as an intermediate for the As and Cd chemical refinement. The waste solution can be further treated after mixing with raw water to adjust the raw pH from 1.4 to 7. This adsorption, regeneration, and reuse process provides an innovative technology for metallurgical industry wastewater remediation that is promising for practical application. (C) 2014 Elsevier Ltd. All rights reserved.
机译:数十年来,冶金工业废水的修复提出了巨大的环境挑战。在这项研究中,提出了一种完整的修复技术,用于同时去除As(III)和Cd吸附,吸附剂再生以及As和Cd的回收。使用三个串联的颗粒状TiO2柱,原水中的As(III)和Cd分别以2590 +/- 295和12 +/- 2 mg / L可以减少到0.16 +/- 0.11和0.0133 +/- 0.0134 mg / L,远低于废水排放极限。用过的TiO2介质可以使用H2SO4和NaOH进行再生,再生的吸附剂可以重复使用至少10个处理周期和770床体积,而其吸附能力不会降低。 1 L废水的修复产生0.89-1.5 g的固体残留物,可用作As和Cd化学精制的中间体。与原水混合后,可以将废液进一步处理,以将原始pH值从1.4调节到7。这种吸附,再生和再利用过程为冶金工业废水修复提供了一种创新技术,有望在实际中应用。 (C)2014 Elsevier Ltd.保留所有权利。

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