Material innovations and challenges in adsorption-based nanoplastic removal for water purification: A comprehensive review of efficacy, mechanisms, performance factors, and future perspectives

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초록

Nanoplastics (NPs < 100 nm) are increasingly recognized as high-risk pollutants due to their ability to penetrate biological barriers, transport co-contaminants, and persist in aquatic ecosystems. While conventional remediation techniques struggle with particles in this size range, adsorption has emerged as a promising alternative due to its efficiency, affordability, and operational simplicity. This review critically examines recent advances in adsorption-based NP removal, with a specific focus on the underexplored 20-100 nm range. Adsorbents are categorized into sponge/hydrogel/aerogel-based, metal-based, biochar/activated carbon, and multifunctional composites. Key adsorption mechanisms-including electrostatic attraction, hydrogen bonding, hydrophobic effects, and pi-pi stacking-are discussed alongside performance-influencing factors such as pH, coexisting pollutants, and NP morphology. The review further highlights critical challenges, including low adsorption efficiency of ultra-small NPs (< 20 nm), interference from coexisting pollutants, and concerns over adsorbent regeneration, scalability, and environmental safety. Technological innovations-such as stimuli-responsive adsorbents, microrobotic scavengers, and AI-guided material optimization-are also discussed for their potential to overcome these barriers. This review offers a forward-looking roadmap for developing scalable, efficient, sustainable, and field-deployable NP remediation technologies by integrating mechanistic insights with real-world applicability.

키워드

Nanoplastics (NPs)Adsorption-based separationFactors affecting adsorptionAdsorbentsAdsorption mechanismPOLYETHYLENE TEREPHTHALATEPOLYSTYRENE NANOPLASTICSPRETREATMENT
제목
Material innovations and challenges in adsorption-based nanoplastic removal for water purification: A comprehensive review of efficacy, mechanisms, performance factors, and future perspectives
저자
Mondal, SomenCho, SeongsuLee, Jinkee
DOI
10.1016/j.jece.2025.117503
발행일
2025-10
유형
Review
저널명
Journal of Environmental Chemical Engineering
13
5