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生物成因 FeS-高岭土复合材料去除水溶液中重金属(类金属):行为与机理。

Removal of heavy metal(loid)s from aqueous solution by biogenic FeS-kaolin composite: Behaviors and mechanisms.

机构信息

School of Minerals Processing and Bioengineering, Central South University, Changsha, 410083, China.

School of Minerals Processing and Bioengineering, Central South University, Changsha, 410083, China.

出版信息

Chemosphere. 2022 Jul;299:134382. doi: 10.1016/j.chemosphere.2022.134382. Epub 2022 Mar 19.

Abstract

In this work, a green adsorbent, biogenic FeS-kaolin composite (KL-FeS) was synthesized by sulfate-reducing bacteria (SRB) mediation, and its potential for Cd(II), Pb(II), Cu(II), Zn(II), As(III) and Sb(III) removal was evaluated. Among prepared composites, the KL-FeS synthesized at a concentration of 2 g/L kaolin performed a better removal efficiency on heavy metal(loid)s and the adsorption results followed the pseudo-second-order and Redlich-Peterson models, indicating that the adsorption was a hybrid chemical reaction-adsorption process. Additionally, the maximum adsorption capacities of Cd(II), Pb(II), Cu(II), Zn(II), As(III) and Sb(III) on KL-FeS in monocomponent system were 71.71, 133.54, 51.90, 54.41, 38.71 and 96.38 mg/g, respectively (pH = 5.0 ± 0.1, T = 25 °C). In addition, the increase of pH and ionic strength promoted the adsorption capacities of KL-FeS for metal-(loid)s. Moreover, FTIR, XPS and XRD analyses supported that surface complexation, hydrogen bonding, ion exchange, electrostatic interaction and chemical precipitation were predominately mechanisms involved in the adsorption process. Furthermore, KL-FeS displayed higher affinity for Pb(II), Sb(III) and Cu(II) in the multi-component system. This work highlighted the potential of biogenic FeS-kaolin composite for simultaneous removal of multiple heavy metal(loid)s under aerobic conditions.

摘要

在这项工作中,通过硫酸盐还原菌(SRB)介导合成了一种绿色吸附剂,生物成因 FeS-高岭土复合材料(KL-FeS),并评估了其对 Cd(II)、Pb(II)、Cu(II)、Zn(II)、As(III)和 Sb(III)去除的潜力。在所制备的复合材料中,在 2 g/L 高岭土浓度下合成的 KL-FeS 对重金属(类)具有更好的去除效率,吸附结果符合伪二级和 Redlich-Peterson 模型,表明吸附是一种混合的化学反应-吸附过程。此外,KL-FeS 在单一组分体系中对 Cd(II)、Pb(II)、Cu(II)、Zn(II)、As(III)和 Sb(III)的最大吸附容量分别为 71.71、133.54、51.90、54.41、38.71 和 96.38 mg/g(pH = 5.0 ± 0.1,T = 25°C)。此外,pH 值和离子强度的增加促进了 KL-FeS 对金属(类)的吸附容量。此外,FTIR、XPS 和 XRD 分析支持表面络合、氢键、离子交换、静电相互作用和化学沉淀是吸附过程中主要的机制。此外,KL-FeS 在多组分体系中对 Pb(II)、Sb(III)和 Cu(II)表现出更高的亲和力。这项工作突出了生物成因 FeS-高岭土复合材料在有氧条件下同时去除多种重金属(类)的潜力。

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