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Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Nanoplastics Remediation Sign in to save

Interactions of pristine and aged nanoplastics with heavy metals: Enhanced adsorption and transport in saturated porous media

Journal of Hazardous Materials 2022 81 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Baikerouzi Baihetiyaer, Baikerouzi Baihetiyaer, Huimin Sun Baikerouzi Baihetiyaer, Xianglong Xi, Xianglong Xi, Baikerouzi Baihetiyaer, Dianji Ding, Xianqiang Yin, Xianqiang Yin, Dianji Ding, Huimin Sun Houlang Zhou, Houlang Zhou, Xianglong Xi, Huimin Sun Huimin Sun Dianji Ding, Baikerouzi Baihetiyaer, Dianji Ding, Baikerouzi Baihetiyaer, Xianqiang Yin, Xianqiang Yin, Huimin Sun Xianglong Xi, Huimin Sun Huimin Sun Xianqiang Yin, Huimin Sun Huimin Sun Huimin Sun Huimin Sun Huimin Sun Huimin Sun Huimin Sun Xianqiang Yin, Xianglong Xi, Yongtong Cai, Nong Wang, Xianqiang Yin, Xianqiang Yin, Huimin Sun Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Nong Wang, Nong Wang, Nong Wang, Nong Wang, Xianqiang Yin, Yongtong Cai, Nong Wang, Xianqiang Yin, Nong Wang, Huimin Sun Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Xianqiang Yin, Huimin Sun Huimin Sun

Summary

Researchers found that UV-aged nanoplastics had greater capacity to adsorb and transport lead and cadmium through porous media compared to pristine nanoplastics, due to increased oxygen-containing surface groups that enhance heavy metal binding.

Interactions of nanoplastics (NPs) with other contaminants are attracting attention, and it is essential to investigate the interaction of aged plastics with heavy metals. We obtained aged nanopolystyrene by UV radiation and investigated the effects of aged NPs on the adsorption and cotransport of Pb-(II) and Cd-(II). The results showed that the UV-aged NPs led to the enhanced adsorption capacity of heavy metals due to the increase in oxygen-containing functional groups, and the promotion of transport by the aged NPs to heavy metals was stronger than that of the pristine NPs. Furthermore, the heavy metals retained in the columns could be freed by the NPs, and the aged NPs were more capable of freed of heavy metals as carriers. In conclusion, the radiation of NPs is correlated with their ability to promote heavy metal transport, and the oxygen content on the surface of NPs plays an essential role in this process to promote the transport of heavy metals in porous media. The ADR equation and DLVO theory simulates the transport behaviour of NPs well. This study is expected to provide a new perspective for assessing the potential risk of aged NPs in soil-groundwater systems.

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