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六溴环十二烷改变孔雀石绿和 lead(II)在聚苯乙烯微塑料上的吸附行为:相互作用机制和竞争效应。

Hexabromocyclododecane alters malachite green and lead(II) adsorption behaviors onto polystyrene microplastics: Interaction mechanism and competitive effect.

机构信息

School of Environmental and Chemical Engineering, Jiangsu Ocean University, Lianyungang, Jiangsu, 222005, China.

School of Environmental and Chemical Engineering, Jiangsu Ocean University, Lianyungang, Jiangsu, 222005, China.

出版信息

Chemosphere. 2021 Feb;265:129079. doi: 10.1016/j.chemosphere.2020.129079. Epub 2020 Nov 29.

Abstract

The role of microplastics (MPs) as a carrier of pollutants in water environment is an emerging issue; however, information regarding the underlying mechanisms for malachite green (MG) and Pb(II) adsorption onto hexabromocyclododecane (HBCD)-polystyrene (PS) composites MPs (HBCD-PS MPs) is still lacking. In this study, the adsorption behaviors and mechanisms of MG and Pb(II) onto PS and HBCD-PS MPs were investigated in batch adsorption experiments. The amounts of MG and Pb(II) adsorbed onto PS MPs were negligible while the presence of HBCD significantly enhanced the adsorption of MG and Pb(II) onto HBCD-PS MPs. The results of intra-particle and film diffusion model confirmed that the adsorption of MG and Pb(II) onto HBCD-PS MPs was dominated by intra-particle diffusion. The maximum adsorption amount (q) of Pb(II) and MG onto HBCD-PS MPs followed the sequence of Pb(II) (3.33 μmol g) > MG (1.87 μmol g). In binary systems, MG and Pb(II) showed competitive adsorption onto HBCD-PS MPs, and Pb(II) exhibited relatively higher affinity to be adsorbed onto HBCD-PS MPs. Solution pH and salinity played a crucial role in the adsorption process. XPS analysis suggested that the -Br participated in the adsorption process as an electron-withdrawing group. Overall, electrostatic interaction regulated the adsorption of MG and Pb(II) onto HBCD-PS MPs. Results from this study demonstrated that HBCD could enhance the role of MPs in the MG and Pb(II) migration by changing their adsorption behavior onto MPs.

摘要

作为水环境中污染物载体的微塑料(MPs)是一个新出现的问题;然而,关于孔雀石绿(MG)和 Pb(II)吸附到六溴环十二烷(HBCD)-聚苯乙烯(PS)复合材料 MPs(HBCD-PS MPs)的潜在机制的信息仍然缺乏。在这项研究中,通过批量吸附实验研究了 MG 和 Pb(II)在 PS 和 HBCD-PS MPs 上的吸附行为和机制。PS MPs 对 MG 和 Pb(II)的吸附量可以忽略不计,而 HBCD 的存在显著增强了 MG 和 Pb(II)在 HBCD-PS MPs 上的吸附。内扩散和膜扩散模型的结果证实,MG 和 Pb(II)在 HBCD-PS MPs 上的吸附主要受内扩散控制。Pb(II)和 MG 在 HBCD-PS MPs 上的最大吸附量(q)顺序为 Pb(II)(3.33 μmol g)>MG(1.87 μmol g)。在二元体系中,MG 和 Pb(II)对 HBCD-PS MPs 表现出竞争吸附,Pb(II)对 HBCD-PS MPs 表现出相对较高的吸附亲和力。溶液 pH 值和盐度在吸附过程中起着至关重要的作用。XPS 分析表明,-Br 作为吸电子基团参与了吸附过程。总的来说,静电相互作用调节了 MG 和 Pb(II)在 HBCD-PS MPs 上的吸附。本研究结果表明,HBCD 通过改变 MPs 对其的吸附行为,可以增强 MPs 在 MG 和 Pb(II)迁移中的作用。

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