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Micro-polyethylene particles reduce the toxicity of nano zinc oxide in marine microalgae by adsorption

Environmental Pollution 2021 33 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.
Jiji Li, Yahong Guo, Jiji Li, Jiji Li, Yahong Guo, Jia‐Lang Zheng, Jia‐Lang Zheng, Pengzhi Qi, Shuai Mao, Shuai Mao, W. F. Mader, Yingying Ye, Yingying Ye, Jiji Li, Jiji Li, W. F. Mader, W. F. Mader, W. F. Mader, Yingying Ye, Jiayin Lü, W. F. Mader, Jiji Li, Shuai Mao, Pengzhi Qi, Jiayin Lü, Shuai Mao, Jia‐Lang Zheng, Yingying Ye, Chengkai Qu Yingying Ye, Jiji Li, Pengzhi Qi, Shuai Mao, Fei Jing, Pengzhi Qi, Jiji Li, Shuai Mao, Yingying Ye, Yingying Ye, Jiji Li, Yingying Ye, Yahong Guo, Pengzhi Qi, Chengkai Qu Yingying Ye, Yahong Guo, Hongxia Liu, Fei Jing, Pengzhi Qi, Jiji Li, Pengzhi Qi, Jia‐Lang Zheng, Jia‐Lang Zheng, Jia‐Lang Zheng, Pengzhi Qi, Ping Wang, W. F. Mader, Jiji Li, Jiji Li, Chengkai Qu Chengkai Qu Yingying Ye, Pengzhi Qi, Pengzhi Qi, Yingying Ye, Yingying Ye, Jiji Li, Jia‐Lang Zheng, Chengkai Qu

Summary

Researchers discovered that polyethylene microplastic particles reduced the toxicity of zinc oxide nanoparticles to marine microalgae by adsorbing the nanoparticles onto their surface, revealing that microplastics can modify the bioavailability of co-occurring contaminants.

Polymers

Contaminant adsorption by microplastics (MPs) allows them to act as contaminant vehicles or vectors, complicating eco-toxicological study of MPs. The contaminants adsorbed are mainly organic contaminants, especially hydrophobic organic contaminants (HOCs), although heavy-metal adsorption has also been reported. Compared to the mechanisms of HOC adsorption, those for metals are not fully understood. In the present study, combined-exposure assays revealed that polyethylene microplastics (PEMPs, 150 μm) alleviate the toxic effect of nano zinc oxide (nZnO, 20-30 nm) on marine microalgal growth by 14.4%. Thus, we hypothesized that nZnO adsorption onto PEMP surfaces ameliorates its toxicity to microorganisms. To test this hypothesis, PEMP samples isolated from nZnO suspensions were characterized. Their surfaces were observed by SEM, their Zn levels were measured by ICP-MS, and the compound form of Zn on the PEMP surface was determined by XRD analysis. The results indicated that 5.53%-7.16% of the Zn in the suspension is adsorbed during the first 24 h of exposure and that the Zn remains as the ZnO form upon adsorption. The findings in the present study provide important information on the role of MPs as metal oxide vehicles.

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