Characterization of the micro-interfacial interactions of heterogeneous particulate matter (fine-grained sediment and microplastics) with copper ions

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2023-09-01 DOI:10.1016/j.ijsrc.2023.08.006
Jing Ou , Zhihe Chen , Tung-Chiung Chang
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Abstract

Particulate matter, such as sediment and microplastics (MPs), in aqueous environments has comparable micro-interfacial characteristics. However, the micro-interfacial characteristics of heterogeneous particulate matter are complex and are not fully understood. In this study, micro-interfacial kinetics and the interactions governing copper (Cu) ion adsorption to PP–sediment were investigated using micro-interfacial characterization experiments and kinetic experiments for Cu ion absorption to sediment, polypropylene (PP), and PP–sediment particles. The results show that (1) a pseudo-second-order model can be used to accurately describe the micro-interfacial kinetics of Cu ion adsorption to PP–sediment, indicating that chemical adsorption dominates the process. For Cu, the adsorption capacity, qe, of PP–sediment is approximately 0.4808 mg/g, between that of sediment and PP. (2) Film diffusion is the rate-controlling process in the early adsorption stage. Intraparticle diffusion gradually becomes the controlling process as the film diffusion constant (kfd) decreases and the film diffusion model becomes less applicable, but intraparticle diffusion is weaker in the PP–sediment system than in the sediment-only system. (3) The applicability of the intraparticle diffusion model for Cu ion adsorption to PP–sediment in the later stage of adsorption is between that of the sediment and PP systems. Furthermore, the heterogeneous aggregation of sediment and PP affects the micro-interfacial interactions of both types of particulate matter. The current study contributes to a better understanding of the micro-interfacial interactions of heterogeneous particulate matter (such as fine-grained sediment and MPs) with heavy metal ions in aqueous environments.

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非均质颗粒物(细粒沉积物和微塑料)与铜离子的微界面相互作用的表征
颗粒物质,如沉积物和微塑料(MPs),在水环境中具有类似的微界面特征。然而,非均质颗粒的微界面特征是复杂的,并没有完全了解。在本研究中,通过微界面表征实验和Cu离子对沉积物、聚丙烯(PP)和PP -沉积物颗粒的吸附动力学实验,研究了铜(Cu)离子对PP -沉积物吸附的微界面动力学和相互作用。结果表明:(1)准二级模型可以较准确地描述Cu离子在pp -沉积物上吸附的微观界面动力学,表明化学吸附在该过程中起主导作用。对于Cu, PP -沉积物的吸附量qe约为0.4808 mg/g,介于沉积物和PP之间。(2)膜扩散是吸附初期的速率控制过程。随着膜扩散常数(kfd)的减小,膜扩散模型的适用性降低,颗粒内扩散逐渐成为控制过程,但颗粒内扩散在pp -沉积物体系中比在纯沉积物体系中更弱。(3)吸附后期PP -沉积物中Cu离子吸附的颗粒内扩散模型的适用性介于沉积物和PP体系之间。此外,沉积物和PP的非均质聚集影响了两种颗粒物的微界面相互作用。目前的研究有助于更好地理解水环境中非均质颗粒物质(如细粒沉积物和MPs)与重金属离子的微界面相互作用。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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