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Nanomaterials for Water Remediation: An Efficient Strategy for Prevention of Metal(loid) Hazard

Water 2022 23 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.
Vishnu D. Rajput Jyoti Mathur, Vishnu D. Rajput Tatiana Minkina, Pooja Goswami, Vishnu D. Rajput Tatiana Minkina, Ankita Gupta, Tatiana Minkina, Tatiana Minkina, Ankita Gupta, Sudhakar Srivastava, Vishnu D. Rajput Vishnu D. Rajput Vishnu D. Rajput Vishnu D. Rajput Tatiana Minkina, Tatiana Minkina, Tatiana Minkina, Shengdao Shan, Shengdao Shan, Shengdao Shan, Shengdao Shan, Shengdao Shan, Vishnu D. Rajput Shengdao Shan, Vishnu D. Rajput Tatiana Minkina, Shengdao Shan, Shengdao Shan, Shengdao Shan, Shengdao Shan, Tatiana Minkina, Vishnu D. Rajput Shengdao Shan, Shengdao Shan, Shengdao Shan, Shengdao Shan, Tatiana Minkina, Shengdao Shan, Shengdao Shan, Tatiana Minkina, Shengdao Shan, Tatiana Minkina, Vishnu D. Rajput

Summary

This review examines how nanomaterials can be used to remediate metal and metalloid contamination in water, covering adsorption mechanisms, synthesis methods, and the advantages of nano-scale adsorbents over conventional water treatment approaches.

Different natural and anthropogenic global events and activities such as urban settlements and industrial development have led to a build-up of numerous pollutants in the environment, creating problems for nature and human health. Among the pollutants, metal(loid)s are persistent and ubiquitously present in the soil, water, and air. The presence of high concentrations of metal(loid)s in water is of serious concern, as water is a basic necessity of humans and plants. Through irrigation, metal(loid)s enter and accumulate in plants, and subsequently reach humans via food. There is demand for sustainable and practical technologies for tackling the challenge of metal(loid) pollution. Nanotechnology has found its place in diverse fields including cosmetics, sensors, remediation, and medicine. Nanoremediation is an effective, feasible, and sustainable technology for cleaning up water contaminated with metal(loid)s and other chemicals. The versatility of nanomaterials is huge due to their differences in size, shape, surface chemistry, and chemical composition. This review sheds light on different nanoparticles (NPs) used for water remediation and summarizes key recent findings. The successful application of NPs in laboratory studies warrants their potential use in water clean-up from a small to a large scale.

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