Key Laboratory of Agro-Environment in Downstream of Yangtze Plain, Ministry of Agriculture and Rural Affairs of the People's Republic of China, Institute of Agricultural Resources and Environment, Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China.
Key Laboratory of Agro-Environment in Downstream of Yangtze Plain, Ministry of Agriculture and Rural Affairs of the People's Republic of China, Institute of Agricultural Resources and Environment, Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China; School of Agriculture and Environment, The University of Western Australia, Crawley, WA 6009, Australia.
Environ Res. 2023 Jan 1;216(Pt 3):114716. doi: 10.1016/j.envres.2022.114716. Epub 2022 Nov 4.
Microplastics (MPs) have recently become an emerging environmental concern. Nevertheless, limited information is known about the adsorption of MPs for organic contaminants under combined heavy metals pollution, with an emphasis on the role of complexation. Thus, this study aims to comprehensively compare and investigate the adsorption performance of antibiotic tetracycline (TC) and ciprofloxacin (CIP) on two polar MPs (polyamide (PA) and polyvinyl chloride (PVC)) affected by Cu(II) and Cd(II) with contrasting complexation abilities. Batch adsorption experiments were used in combination with speciation calculation, zeta potential determination, FTIR spectroscopy characterization and investigation of the affinity of MPs for heavy metals. Results showed that the sorption kinetics and isotherms of TC and CIP on PA and PVC could be well fitted to pseudo-second-order and Langmuir models, respectively, both in the absence and presence of Cu and Cd, suggesting that multiple interactions and monolayer adsorption played an important role in the adsorption process. The presence of Cu substantially improved TC and CIP adsorption and obviously changed the pH dependence of their adsorption onto both MPs, which may result from the Cu-induced strong complexation with TC and CIP. The presence of Cd slightly enhanced TC adsorption on both MPs while reduced CIP adsorption especially on PVC, which may be ascribed to the Cd-induced cationic bridging effects in TC adsorption and the competitive adsorption of Cd in CIP adsorption. Therefore, the heavy metal-mediated complexation effects may play a dominant role in antibiotic adsorption by MPs only in the presence of heavy metals with strong complexation ability while the adsorption performance in the presence of heavy metals with negligible complexation capacity may be influenced by effects other than complexation. This study helps further understand the heavy metal-mediated adsorption behavior of organic contaminants on polar MPs and the role of complexation reactions therein.
微塑料(MPs)最近成为一个新兴的环境关注点。然而,对于 MPs 对有机污染物的吸附在重金属复合污染下的情况,人们知之甚少,尤其是对于配合作用的了解。因此,本研究旨在全面比较和研究两种极性 MPs(聚酰胺(PA)和聚氯乙烯(PVC))在具有不同络合能力的 Cu(II) 和 Cd(II) 影响下对抗生素四环素(TC)和环丙沙星(CIP)的吸附性能。采用批处理吸附实验,结合形态计算、zeta 电位测定、傅里叶变换红外光谱(FTIR)光谱表征和 MPs 对重金属亲和力的研究。结果表明,TC 和 CIP 在 PA 和 PVC 上的吸附动力学和等温线可以很好地符合准二级动力学和 Langmuir 模型,无论是在没有 Cu 和 Cd 的情况下,还是在有 Cu 和 Cd 的情况下,这表明多种相互作用和单层吸附在吸附过程中起着重要作用。Cu 的存在显著提高了 TC 和 CIP 的吸附,明显改变了它们在两种 MPs 上吸附的 pH 依赖性,这可能是由于 Cu 与 TC 和 CIP 强烈的络合作用所致。Cd 的存在略微增强了 TC 在两种 MPs 上的吸附,而降低了 CIP 在 PVC 上的吸附,这可能是由于 Cd 诱导的 TC 吸附中的阳离子桥接效应和 Cd 在 CIP 吸附中的竞争吸附所致。因此,只有在重金属具有强络合能力的情况下,重金属介导的络合效应才可能在 MPs 吸附抗生素中起主导作用,而在重金属络合能力可忽略不计的情况下,吸附性能可能受到除络合作用以外的其他因素的影响。本研究有助于进一步了解有机污染物在极性 MPs 上的重金属介导吸附行为以及络合反应在其中的作用。