纳米纤维素去除微塑料的潜力:前景与挑战

Dian Burhani , Vincent S.D. Voet , Rudy Folkersma , Dina Maniar , Katja Loos
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引用次数: 0

摘要

近年来,环境中无处不在的微塑料污染已成为一项主要挑战。人们最关注的问题之一是微塑料对海洋生态系统的生态毒理影响,以及微塑料在人体内蓄积对人体造成的潜在风险。尽管尚未得到科学证实,但饮用水中存在微塑料是一个主要问题。研究表明,有多种有效去除微塑料的策略和新材料开发方法。最近,纳米纤维素已成为一种很有前景的废水处理仿生材料。本综述旨在介绍纳米纤维素去除微塑料的潜力。本研究包括三个要点:纳米纤维素的合成方法、纳米纤维素的基本原理以及利用这些材料捕捉和去除微塑料。此外,我们还展示了纳米纤维素在防污方面的潜力。我们还提供了有关微塑料在环境中的来源、归宿和运输的信息,以及如何检测微塑料,以便更好地了解微塑料的行为和最终进入饮用水系统的情况。此外,我们还讨论了纳米纤维素材料在去除微塑料方面的应用所面临的主要挑战和未来展望。总之,纳米纤维素是一种用途广泛的材料,应开展进一步研究,探索纳米纤维素的潜力,以满足去除微塑料的具体要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Potential of Nanocellulose for Microplastic removal: Perspective and challenges

Potential of Nanocellulose for Microplastic removal: Perspective and challenges

The omnipresence of microplastic pollution in the environment has become a main challenge in recent years. One of the primary concerns is the ecotoxicological impact of microplastics on marine ecosystems, as well as the potential risk to humans related to the accumulation of microplastics in the body. Although it has not yet been scientifically proven, their presence in drinking water is a main concern. Studies have shown various strategies and new material development approaches for effectively removing microplastics. Recently, nanocellulose has emerged as a promising bionanomaterial for wastewater treatment. The purpose of this review is to introduce the potential of nanocellulose for microplastic removal. This study consists of three main points: the synthesis method of nanocellulose, the fundamentals of nanocellulose, and the use of these materials for capturing and removing microplastics. In addition, the potential of nanocellulose for antifouling has also been demonstrated. We also provide information regarding the source, fate, and transportation of microplastics in the environment and how to detect them to obtain a better understanding of how microplastics behave and ultimately end up in drinking water systems. Furthermore, we also discuss major challenges and future perspectives concerning the applications of nanocellulose-based materials in microplastic removal. Overall, nanocellulose is a versatile material and further research should be carried out to explore nanocellulose potential to meet the specific requirements for microplastic removal.

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