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口罩微塑料纤维对卤虫的毒理学影响:基于 Box-Behnken 设计的环境评估。

Toxicological impacts of plastic microfibers from face masks on Artemia salina: An environmental assessment using Box-Behnken design.

机构信息

School of Food Science and Nutrition, University of Leeds, LS2 9JT, United Kingdom; Amity Institute of Biotechnology, Amity University, Noida, 201313, Uttar Pradesh, India; School of Geography, University of Leeds, LS2 9JT, United Kingdom.

Amity Institute of Biotechnology, Amity University, Noida, 201313, Uttar Pradesh, India.

出版信息

Mar Environ Res. 2024 Nov;202:106810. doi: 10.1016/j.marenvres.2024.106810. Epub 2024 Oct 24.

Abstract

An increase in global plastic manufacturing and subsequent disposal has resulted in widespread increase in microplastic pollution. Particularly, the post-COVID surge in face mask usage has introduced significant volumes of synthetic plastic microfibers into the environment, posing new ecological risks. Present study examines the toxicological impacts of face mask derived microfibers on Artemia salina, a key marine zooplankton species, using the Box-Behnken design to assess the effects of microfiber dosage (0.1 mg/L- 5 mg/L), salinity (0.5 ppt-30 ppt), temperature (10 °C-45 °C), and cyst stocking density (10 cysts/L-100 cysts/L) on hatching efficiency and swimming competencies. Results demonstrated that higher microfiber dosages (2.5 mg/L-5 mg/L) significantly reduced the hatching efficiencies and swimming competencies, while temperature and cyst density also modulated these effects. Additionally, survival assays indicated a significant reduction in survival rates with increasing microfiber concentrations, attributed to the bioaccumulation, oxidative stress and developmental deformities in the organism. The study further explores the leaching of chromophoric dissolved organic matter and turbidity, revealing a direct correlation with microfiber dosage and exposure duration. These findings underscore the urgent need for mitigation strategies to address microfiber pollution and protect aquatic ecosystems. Data presented from the research provides valuable insights into the environmental impacts of plastic microfiber contamination, emphasizing the necessity for continued investigation into effective solutions for managing plastic waste.

摘要

全球塑料制造业的增加以及随之而来的处置导致了微塑料污染的广泛增加。特别是在 COVID-19 之后,口罩使用量的激增,将大量合成塑料微纤维引入环境中,带来了新的生态风险。本研究使用 Box-Behnken 设计,评估了口罩衍生微纤维对卤虫(Artemia salina)的毒理学影响,卤虫是一种关键的海洋浮游动物物种。该设计考察了微纤维剂量(0.1 毫克/升-5 毫克/升)、盐度(0.5 ppt-30 ppt)、温度(10 °C-45 °C)和包囊储存密度(10 个包囊/升-100 个包囊/升)对孵化效率和游泳能力的影响。结果表明,较高的微纤维剂量(2.5 毫克/升-5 毫克/升)显著降低了孵化效率和游泳能力,而温度和包囊密度也调节了这些影响。此外,生存实验表明,随着微纤维浓度的增加,生存率显著降低,这归因于生物体内的生物积累、氧化应激和发育畸形。该研究还探讨了发色溶解有机物质和浊度的浸出情况,发现其与微纤维剂量和暴露时间呈直接相关。这些发现强调了迫切需要采取缓解策略来解决微纤维污染问题,保护水生生态系统。本研究提供的研究数据深入探讨了塑料微纤维污染对环境的影响,强调了持续研究有效管理塑料废物解决方案的必要性。

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