Greener Aspects of Nanoparticle Synthesis for Water Remediation: Challenges and Future Perspective

Jaspreet Kaur, Khushveer Kaur, Khushwinder Kaur, S. Mehta, A. Matharu
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引用次数: 1

Abstract

Continued industrialization, urbanization and ecological destruction have caused significant environmental problems, particularly increased water pollution. Introducing harmful organic and inorganic effluents into watercourses has limited the supply and accessibility of safe and affordable drinking water. There is an urgent need to find green and sustainable abatement solutions for water remediation, many based on nanoparticles. The primary objective of this review is to explore and have a comprehensive discussion on the present trends, challenges and prospects for the green synthesis of nanoparticles for wastewater remediation. The connection between green chemistry and nanoparticles synthesis is articulated with many examples exploring the use of renewable or biobased resources. Energy-efficient processes (microwaves, ultrasound and laser ablation) and the use of alternative solvents (supercritical carbon dioxide, ionic liquids and biobased solvents) are explored. The review aims to make the readers discern the mechanistic insights towards the working of various green processes. Conclusively, the adoption of green nanotechnology has the potential to veritably addresses the global water shortage issue under the domain of environmental sustainability.
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纳米颗粒合成用于水修复的绿色方面:挑战和未来展望
持续的工业化、城市化和生态破坏造成了严重的环境问题,特别是水污染日益严重。将有害的有机和无机废水排入水道,限制了安全和负担得起的饮用水的供应和可及性。迫切需要找到绿色和可持续的水修复解决方案,其中许多是基于纳米粒子。本文就纳米颗粒绿色合成用于废水修复的发展趋势、面临的挑战和前景进行了综述。绿色化学和纳米颗粒合成之间的联系通过许多探索可再生或生物基资源使用的例子来阐述。探索了节能工艺(微波、超声波和激光烧蚀)和替代溶剂(超临界二氧化碳、离子液体和生物基溶剂)的使用。回顾的目的是使读者辨别对各种绿色过程的工作的机械见解。最后,采用绿色纳米技术有可能在环境可持续性的范围内真正解决全球水资源短缺问题。
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