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探索绿色纳米颗粒的合成与应用以及纳米技术在废水处理中的作用。

Exploring synthesis and applications of green nanoparticles and the role of nanotechnology in wastewater treatment.

作者信息

Rathod Shreya, Preetam Subham, Pandey Chetan, Bera Sweta Parimita

机构信息

School of Sciences, P P Savani University, Surat, Gujarat, 391425, India.

Institute of Advanced Materials, IAAM, Gammalkilsvägen 18, Ulrika, 59053, Sweden.

出版信息

Biotechnol Rep (Amst). 2024 Jan 26;41:e00830. doi: 10.1016/j.btre.2024.e00830. eCollection 2024 Mar.

Abstract

Current research endeavours are progressively focussing towards discovering sustainable methods for synthesising eco-friendly materials. In this environment, nanotechnology has emerged as a key frontier, especially in bioremediation and biotechnology. A few areas of nanotechnology including membrane technology, sophisticated oxidation processes, and biosensors. It is possible to create nanoparticles (NPs) via physical, chemical, or biological pathways in a variety of sizes and forms. These days, the investigation of plants as substitutes for NP synthesis methods has drawn a lot of interest. Toxic water contaminants such as methyl blue have been shown to be removed upto 70% by nanoparticles. In our article, we aimed at focussing the environmental sustainability and cost-effectiveness towards the green synthesis of nanoparticles. Furthermore it offers a comprehensive thorough summary of green NP synthesis methods which can be distinguished by their ease of use, financial sustainability, and environmentally favourable utilization of plant extracts. This study highlights how green synthesis methods have the potential to transform manufacturing of NPs while adhering to environmental stewardship principles and resource efficiency.

摘要

当前的研究工作正逐渐聚焦于探索合成环保材料的可持续方法。在这种环境下,纳米技术已成为一个关键前沿领域,尤其是在生物修复和生物技术方面。纳米技术的一些领域包括膜技术、先进氧化工艺和生物传感器。通过物理、化学或生物途径可以制造出各种尺寸和形态的纳米颗粒(NP)。如今,将植物作为NP合成方法的替代物的研究引起了广泛关注。已证明纳米颗粒可去除高达70%的有毒水污染物,如甲基蓝。在我们的文章中,我们旨在关注纳米颗粒绿色合成的环境可持续性和成本效益。此外,它还全面深入地总结了绿色NP合成方法,这些方法可因其易用性、经济可持续性以及对植物提取物的环境友好利用而加以区分。这项研究强调了绿色合成方法在遵循环境管理原则和资源效率的同时,具有改变NP制造的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/623a/10850744/478900e9992f/gr1.jpg

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