探索绿色合成银纳米粒子作为光催化剂降解有机染料的效率:揭示关键见解

Aman Sharma, Sachin Sunny, James Arulraj, G. Hegde
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引用次数: 0

摘要

银纳米粒子(AgNPs)因其多种应用而备受关注,其中包括作为光催化剂降解有机染料的巨大潜力。本研究深入探讨了生态友好型绿色合成 AgNPs 在处理合成染料污染废水中的功效。研究考察了从各种生物基质中合成 AgNPs 的过程,强调了 AgNPs 的经济可行性、显著的导电性和良好的生物相容性。由于合成染料的不可生物降解性和持久性化学特征,废水中合成染料的不当处置对环境和健康构成了严重威胁。为了应对这一挑战,本综述论文研究了 AgNPs 作为有效光催化剂降解工业废水中常见的一系列有机染料的能力。本文结合废水处理研究了苯胺蓝、刚果红、硝基酚、亚甲蓝和孔雀石绿等特定染料,深入探讨了从不同生物来源合成的 AgNPs 的功效。综述阐明了绿色合成的 AgNPs 所使用的光催化降解方法,揭示了这些合成染料如何转变为危害较小的化合物。文章还深入探讨了 AgNPs 的毒性及其可能的环境补救措施。这项工作中研究的生态友好型合成程序为传统方法提供了一种替代方法,凸显了可持续技术在解决现代环境问题方面的重要性。此外,还对合成 AgNPs 的各种生物底物进行了比较研究,评估了它们各自的染料降解效率。这不仅有助于研究人员了解合成染料对环境的影响,还指导他们选择最佳底物来生产具有更强光催化活性的 AgNPs。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring the efficiency of green synthesized silver nanoparticles as photocatalysts for organic dye degradation: unveiling key insights
Silver nanoparticles (AgNPs) have received a lot of interest for their several applications, including their remarkable potential as photocatalysts for organic dye degradation. This research thoroughly investigates the efficacy of ecologically friendly, green-synthesized AgNPs in the treatment of synthetic dye-contaminated wastewater. The synthesis of AgNPs from various biological substrates is investigated, emphasizing their economic viability, significant conductivity, and considerable biocompatibility. The improper disposal of synthetic dyes in wastewater poses severe environmental and health risks due to their non-biodegradable nature and persistent chemical features. In response to this challenge, this review paper investigates the capability of AgNPs to serve as effective photocatalysts for degrading a range of organic dyes commonly found in industrial effluents. Specific dyes, including Aniline Blue, Congo Red, Nitrophenol, Methylene Blue, and Malachite Green, are studied in the context of wastewater treatment, providing insights into the efficacy of AgNPs synthesized from diverse biological sources. The review sheds light on the photocatalytic degradation methods used by green-synthesized AgNPs, shedding light on the transition of these synthetic dyes into less hazardous compounds. It also delves into the toxicity aspect of the AgNPs and its possible remediation from the environment. The ecologically friendly synthesis procedures investigated in this work provide an alternative to traditional methods, highlighting the importance of sustainable technologies in solving modern environmental concerns. Furthermore, a comparative examination of various biological substrates for AgNPs synthesis is presented, evaluating their respective dye degradation efficiencies. This not only helps researchers understand the environmental impact of synthetic dyes, but it also directs them in choosing the best substrates for the production of AgNPs with enhanced photocatalytic activities.
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