Faculty of Mechanical Engineering, Universiti Teknologi Malaysia, Skudai, Johor, Malaysia.
Faculty of Chemical and Energy Engineering, Universiti Teknologi Malaysia, Skudai, Johor, Malaysia.
Environ Res. 2024 Jul 1;252(Pt 2):118928. doi: 10.1016/j.envres.2024.118928. Epub 2024 Apr 16.
Microplastics (MPs), as emerging indoor contaminants, have garnered attention due to their ubiquity and unresolved implications for human health. These tiny particles have permeated indoor air and water, leading to inevitable human exposure. Preliminary evidence suggests MP exposure could be linked to respiratory, gastrointestinal, and potentially other health issues, yet the full scope of their effects remains unclear. To map the overall landscape of this research field, a bibliometric analysis based on research articles retrieved from the Web of Science database was conducted. The study synthesizes the current state of knowledge and spotlights the innovative mitigation strategies proposed to curb indoor MP pollution. These strategies involve minimizing the MP emission from source, advancements in filtration technology, aimed at reducing the MP exposure. Furthermore, this research sheds light on cutting-edge methods for converting MP waste into value-added products. These innovative approaches not only promise to alleviate environmental burdens but also contribute to a more sustainable and circular economy by transforming waste into resources such as biofuels, construction materials, and batteries. Despite these strides, this study acknowledges the ongoing challenges, including the need for more efficient removal technologies and a deeper understanding of MPs' health impacts. Looking forward, the study underscores the necessity for further research to fill these knowledge gaps, particularly in the areas of long-term health outcomes and the development of standardized, reliable methodologies for MP detection and quantification in indoor settings. This comprehensive approach paves the way for future exploration and the development of robust solutions to the complex issue of microplastic pollution.
微塑料(MPs)作为新兴的室内污染物,由于其普遍性和对人类健康的潜在影响而引起了关注。这些微小颗粒已经渗透到室内空气和水中,导致人类不可避免地暴露其中。初步证据表明,MP 暴露可能与呼吸、胃肠道,甚至其他健康问题有关,但它们的全部影响仍不清楚。为了描绘这个研究领域的全貌,我们对从 Web of Science 数据库中检索到的研究文章进行了基于文献计量学的分析。该研究综合了目前的知识状况,并重点介绍了为遏制室内 MP 污染而提出的创新性缓解策略。这些策略包括从源头减少 MP 的排放、改进过滤技术,以减少 MP 的暴露。此外,这项研究还揭示了将 MP 废物转化为增值产品的前沿方法。这些创新方法不仅有望减轻环境负担,而且通过将废物转化为生物燃料、建筑材料和电池等资源,为更可持续和循环的经济做出贡献。尽管取得了这些进展,但本研究也承认存在一些持续的挑战,包括需要更高效的去除技术和对 MPs 健康影响的更深入理解。展望未来,该研究强调需要进一步研究来填补这些知识空白,特别是在长期健康结果和开发室内环境中 MPs 检测和定量的标准化、可靠方法方面。这种综合方法为未来的探索和开发解决微塑料污染这一复杂问题的稳健解决方案铺平了道路。