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经紫外线和过氧化氢老化处理的聚苯乙烯和聚对苯二甲酸乙二酯微塑料对四环素和镉(II)的吸附作用

Adsorption of tetracycline and Cd(II) on polystyrene and polyethylene terephthalate microplastics with ultraviolet and hydrogen peroxide aging treatment.

作者信息

Wang Hua, Qiu Cheng, Song Yali, Bian Shaochen, Wang Qun, Chen Yongmin, Fang Chengran

机构信息

School of Civil Engineering and Architecture, Zhejiang University of Science and Technology, Hangzhou 310023, Zhejiang, China; Key Laboratory of Recycling and Eco-treatment of Waste Biomass of Zhejiang Province, Zhejiang University of Science and Technology, Hangzhou 310023, Zhejiang, China.

School of Civil Engineering and Architecture, Zhejiang University of Science and Technology, Hangzhou 310023, Zhejiang, China.

出版信息

Sci Total Environ. 2022 Nov 1;845:157109. doi: 10.1016/j.scitotenv.2022.157109. Epub 2022 Jun 30.

Abstract

Microplastics (MPs) could serve as vectors of antibiotics and heavy metals through sorption and desorption. However, the combined adsorption process of antibiotics and heavy metals on aged MPs has rarely been studied. In this study, combined adsorption/desorption of tetracycline (TC) and Cd(II) on/from polystyrene (PS) and polyethylene terephthalate (PET) MPs, as well as ultraviolet (UV) and HO aged MPs, was investigated. The specific surface areas of the MPs increased after UV and HO aging. Adsorption experiments showed that the pseudo-second-order kinetic model and Freundlich model fitted adsorption of TC and Cd(II) on all of the MPs. The adsorption capacities of TC and Cd(II) were higher on aged MPs than on the pristine MPs, especially on HO treated MPs. TC adsorption on the MPs was hardly affected by Cd(II), and Cd(II) adsorption was not significantly affected by TC when the solution pH value was below 8.0. Cd(II) slightly enhanced TC adsorption on the MPs at pH 8.0, especially on the aged MPs. The TC adsorption capacities increased with increasing pH, reaching a maximum at pH 5.0 or 6.0, and they then decreased, while the largest level of Cd(II) adsorption was at approximately pH 6.0. Adsorption of TC and Cd(II) on the pristine and aged MPs was thermodynamically favorable and spontaneous. The trend of the desorption rates of TC and Cd(II) from the MPs in different background solutions was ultrapure water < surface water < simulated gastric fluid. The desorption rates of TC and Cd(II) from the aged MPs were lower than those from the pristine MPs. The results revealed the mechanism of the TC and Cd(II) combined adsorption process on aged MPs, which will provide insight for understanding the aging process and its potential effects on sorption and desorption of antibiotics and heavy metals in the real environment.

摘要

微塑料(MPs)可通过吸附和解吸作用充当抗生素和重金属的载体。然而,抗生素和重金属在老化微塑料上的联合吸附过程鲜有研究。本研究考察了四环素(TC)和镉(II)在聚苯乙烯(PS)和聚对苯二甲酸乙二酯(PET)微塑料以及经紫外线(UV)和羟基自由基(HO)老化的微塑料上的联合吸附/解吸情况。UV和HO老化后微塑料的比表面积增加。吸附实验表明,准二级动力学模型和Freundlich模型适用于描述TC和镉(II)在所有微塑料上的吸附。TC和镉(II)在老化微塑料上的吸附容量高于原始微塑料,尤其是经HO处理的微塑料。当溶液pH值低于8.0时,TC在微塑料上的吸附几乎不受镉(II)影响,镉(II)的吸附也未受TC显著影响。在pH 8.0时,镉(II)略微增强了TC在微塑料上的吸附,尤其是在老化微塑料上。TC的吸附容量随pH升高而增加,在pH 5.0或6.0时达到最大值,随后下降,而镉(II)的最大吸附量约在pH 6.0。TC和镉(II)在原始和老化微塑料上的吸附在热力学上是有利且自发的。在不同背景溶液中,TC和镉(II)从微塑料上的解吸率趋势为超纯水<地表水<模拟胃液。TC和镉(II)从老化微塑料上的解吸率低于原始微塑料。研究结果揭示了TC和镉(II)在老化微塑料上的联合吸附过程机制,这将为理解老化过程及其对实际环境中抗生素和重金属吸附和解吸的潜在影响提供见解。

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