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首页> 外文期刊>The Science of the Total Environment >Adsorption mechanisms of five bisphenol analogues on PVC microplastics
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Adsorption mechanisms of five bisphenol analogues on PVC microplastics

机译:五种双酚类似物在PVC微塑料上的吸附机理

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Polyvinyl chloride (PVC) plastics are easily embrittled and decomposed to microplastics in an aquatic environment. The plasticizers such as bisphenol A (BPA), bisphenol S (BPS) and their analogues might be released and adsorbed by the PVC microplastics causing consequential pollution to the ecosystem. Herein, a systematic study was performed to determine the adsorption mechanisms of five bisphenol analogues (BPA, BPS, BPF, BPB and BPAF) on PVC microplastics. The maximum adsorption efficiency reached 0.19 +/- 0.02 mg.g(-1) (BPA), 0.15 +/- 0.01 mg.g(-1) (BPS), 0.16 +/- 0.01mg.g(-1) (BPF), 0.22 +/- 0.01mg.g(-1) (BPB), and 0.24 +/- 0.02 mg.g(-1) (BPAF) at PVC dosage of 1.5g.L-1. The kinetics study shows that the adsorption processes can be divided into three stages including external mass transport, intraparticle diffusion and dynamic equilibrium. The isotherm modeling shows a better fit of the adsorption results to the Freundlich isotherm compared to the Langmuir model. The thermodynamic study indicates the adsorption of all bisphenols as exothermic processes. Furthermore, the adsorption mechanisms of bisphenols were explicated intensively, with respect to hydrophobic interactions, electrostatic forces, and noncovalent bonds. A positive effect of hydrophobic interactions was identified for bisphenols adsorption on PVC microplastics, but an obvious inhibition by electrostatic repulsions was revealed for BPF due to its ionization in the neutral solution. In addition, noncovalent bonds (hydrogen and halogen bonds) may promote the adsorption of bisphenols on PVC microplastics. Finally, the desorption and competitive adsorption of five bisphenol analogues on the microplastics were provided together with a perspective for future works. (C) 2018 Published by Elsevier B.V.
机译:聚氯乙烯(PVC)塑料在水生环境中容易脆化并分解为微塑料。增塑剂如双酚A(BPA),双酚S(BPS)及其类似物可能会被PVC微塑料释放和吸附,从而对生态系统造成污染。在这里,进行了系统的研究,以确定五种双酚类似物(BPA,BPS,BPF,BPB和BPAF)在PVC微塑料上的吸附机理。最大吸附效率达到0.19 +/- 0.02 mg.g(-1)(BPA),0.15 +/- 0.01 mg.g(-1)(BPS),0.16 +/- 0.01mg.g(-1)( BPF),PVC剂量为1.5gL-1时为0.22 +/- 0.01mg.g(-1)(BPB)和0.24 +/- 0.02 mg.g(-1)(BPAF)。动力学研究表明,吸附过程可分为三个阶段,包括外部质量传输,颗粒内扩散和动态平衡。与Langmuir模型相比,等温线模型显示吸附结果更适合Freundlich等温线。热力学研究表明所有双酚的吸附都是放热过程。此外,关于疏水相互作用,静电力和非共价键,对双酚的吸附机理进行了详尽的阐述。疏水相互作用对双酚在PVC微塑料上的吸附具有积极作用,但由于BPF在中性溶液中被电离,因此对BPF表现出明显的静电排斥抑制作用。此外,非共价键(氢键和卤素键)可能会促进双酚在PVC微塑料上的吸附。最后,提供了五种双酚类似物在微塑料上的解吸和竞争性吸附,并为将来的工作提供了前景。 (C)2018由Elsevier B.V.发布

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