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Cellulose-Based Sorbents: A Comprehensive Review of Current Advances in Water Remediation and Future Prospects

Molecules 2024 18 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Nessipkhan Bektenov, Nessipkhan Bektenov, A.S. Darmenbayeva, R. Reshmy, Karlygash Zh. Bazarbaeva, Bakytgul Massalimova, Karlygash Zh. Bazarbaeva, Kamila Bulekbayeva, Kamila Bulekbayeva, Nessipkhan Bektenov, Nessipkhan Bektenov, Raushan Taubayeva, Raushan Taubayeva, Karlygash Zh. Bazarbaeva, Karlygash Zh. Bazarbaeva, M. Kurmanaliev, Zhazira Mukazhanova, Zhazira Mukazhanova, А.N. Nurlybayeva, Kamila Bulekbayeva, Kamila Bulekbayeva, Aisulu Kabylbekova, Aisulu Kabylbekova, Aisulu Ungarbayeva, Aisulu Ungarbayeva

Summary

This review examines advances in cellulose-based sorbent materials for removing heavy metals and organic pollutants from wastewater. The study highlights that various modification methods such as carboxylation, amination, and oxidation can enhance cellulose's sorption capacity, making it a promising biodegradable alternative for sustainable water treatment technologies.

Study Type Environmental

Cellulose-based sorbents are promising materials for wastewater treatment due to their environmental friendliness, biodegradability, and high sorption capacity. This paper presents an overview of cellulose modification methods, including carboxylation, amination, oxidation, graphene, and plasma treatments, as well as combined approaches. Their effect on key physicochemical properties, such as porosity, morphology, and chemical stability, is considered. Examples from the literature confirm the effectiveness of modified cellulose sorbents in removing heavy metal ions and organic pollutants from wastewater. The analysis shows that combined methods allow for creating materials with improved characteristics that are resistant to extreme operating conditions. The main advantages and disadvantages of cellulose sorbents, as well as challenges associated with their scalability and cost-effectiveness, are discussed. The paper emphasizes the importance of further research to advance these materials as a key element of sustainable water treatment technologies.

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