Exploring sustainable adsorbents to mitigate micro-/nano-plastic contamination: perspectives on electrospun fibrous constructs, biochar, and aerogels

IF 3.5 Q3 ENGINEERING, ENVIRONMENTAL Environmental science. Advances Pub Date : 2024-07-10 DOI:10.1039/D4VA00039K
Krishna Priyadarshini Das, Pooja Chauhan, Ulrike Staudinger and Bhabani K. Satapathy
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Abstract

In recent years, the issues pertaining to the micro-/nano-plastics (MNP) pollution in urban water have escalated due to their detrimental environmental consequences, which not only disrupt aquatic habitats and harm marine life but also serve as vectors for toxic pollutants, potentially entering the food chain and posing risks to human health. Although conventional techniques such as filtration, sedimentation, and electrocoagulation have been extensively utilized for MNP removal, ongoing concerns persist regarding their effectiveness, sustainability, and cost implications. Hence, it is imperative to critically assess the performance of conventional techniques in addressing MNP-induced pollution and to shed light on the potential of some emerging technologies as promising next-generation solutions. However, the dearth of standardized approaches and the scarcity of comprehensive data contribute to the disturbing extent of uncertainties in utilizing such techniques to address MNP pollution. Therefore, the current review theoretically emphasizes on innovative use of biochar, electrospun fibers, and aerogels as sustainable adsorbents for managing MNP pollution. Further, it offers a systematic overview elucidating the foundational understanding pertaining to the sources, fate, and transport dynamics of microplastics within the environment. Apart from this, the article explores the integration of such adsorbents into existing water treatment systems and examines the associated challenges and future perspectives in real-world applications. Thus, the contextual review provides valuable insights into designing next-generation technologies aimed at controlling MNP pollution in water systems which not only enhances the understanding of the fate and transport mechanisms of emerging MNP pollutants treatment of water to make it portable but also assists material designers in evaluating and refining existing methodologies and thereby promoting a multi-faceted and synergistic approach to combat the complex issue of MNP pollution.

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探索可持续吸附剂以减轻微/纳米塑料污染:电纺纤维结构、生物炭和气凝胶的前景
近年来,城市水体中的微塑料/纳米塑料(MNP)污染问题日益严重,因为这些塑料不仅会破坏水生栖息地、危害海洋生物,还会成为有毒污染物的载体,有可能进入食物链并对人类健康造成危害。虽然过滤、沉淀和电凝等传统技术已被广泛用于去除 MNP,但人们对这些技术的有效性、可持续性和成本影响一直存在担忧。因此,必须严格评估传统技术在解决 MNP 引起的污染方面的性能,并阐明一些新兴技术作为下一代解决方案的潜力。然而,标准化方法的缺乏和全面数据的匮乏,导致在利用此类技术解决 MNP 污染时存在令人不安的不确定性。因此,本综述从理论上强调创新使用生物炭、电纺纤维和气凝胶作为可持续吸附剂来治理 MNP 污染。此外,文章还系统地概述了对微塑料在环境中的来源、归宿和迁移动态的基本认识。除此之外,文章还探讨了如何将此类吸附剂整合到现有的水处理系统中,并研究了现实应用中的相关挑战和未来前景。因此,这篇背景综述为设计旨在控制水系统中 MNP 污染的下一代技术提供了宝贵的见解,不仅加深了人们对新出现的 MNP 污染物的归宿和迁移机制的理解,使水处理成为可移动的,而且还有助于材料设计人员评估和改进现有方法,从而促进采用多方面的协同方法来解决 MNP 污染这一复杂问题。
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