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Investigation of indoor microplastics in settled indoor house dust in single‐person residential buildings in Japan

Japan Architectural Review 2024 4 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 55 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Lim Eunsu, Yifan Bai, Lim Eunsu, Yifan Bai, Lim Eunsu, Lim Eunsu, Yuan Ni, Yuan Ni, Yuan Ni, James Cheng‐Chung Wei, James Cheng‐Chung Wei, Jinya Takeuchi, Jinya Takeuchi, Shunji Kurosu, Shunji Kurosu, Akihisa Takemura, Jinya Takeuchi, Akihisa Takemura Jinya Takeuchi, Hoon Kim, Hoon Kim, Takeshi OGASAWARA, Akihisa Takemura, Akihisa Takemura

Summary

Researchers collected house dust from single-person households across four regions of Japan and analyzed it for microplastic content using infrared spectroscopy. The study investigated how building materials, flooring, and wall types influence the types and amounts of microplastics found indoors. The findings help fill a significant knowledge gap about indoor microplastic exposure in Japanese homes and could inform strategies to reduce household plastic particle exposure.

Abstract Microplastics, defined as plastic particles smaller than 5 mm, are widely spread in aquatic, terrestrial, and atmospheric environments, which is a marked environmental concern. However, research on indoor microplastic pollution remains limited, particularly in Japan. Therefore, the aim of this study was to investigate the shape and composition of microplastics in house dust from single‐person households in four regions of Japan, including Tohoku, Kanto, Chubu, and Kansai. Micro‐Fourier‐transform infrared spectroscopy, a technique that combines infrared spectroscopy with optical microscopy was used, allowing a detailed analysis by obtaining the specific interference patterns and absorption spectra of the materials. The influence of building structure, flooring, and wall materials on microplastic composition in indoor environments was also investigated. This study addresses crucial knowledge gaps regarding the extent, forms, and sources of indoor microplastics. These findings contribute to the development of targeted measures to mitigate indoor microplastic exposure, support efforts to improve indoor air quality, and protect public health.

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