Sahoo Anupam, Patra Srikanta
School of Basic Sciences, Indian Institute of Technology Bhubaneswar Argul, Jatni Khurda-752050 Odisha India
RSC Adv. 2020 Feb 6;10(10):6043-6051. doi: 10.1039/c9ra08631e. eCollection 2020 Feb 4.
Herein, we present the development of a visible-light-driven magnetically retrievable nanophotocatalyst made of porous ruthenium nanoparticles supported on magnetic carbon nitride (g-CN/FeO/p-RuNP) for the facile removal/degradation of aromatic amines and azo dyes from wastewater. Aromatic amines and azo-based dyes in water bodies are highly toxic and carcinogenic even at very low concentrations and are difficult to separate because of their high solubility. Our nanocatalyst can efficiently degrade/decompose the aromatic amines and azo dyes under visible light (LED/sunlight) at room temperature and in a wide pH range (pH 5.0-9.0) without using any external chemicals. The magnetic property of the nanocatalyst facilitates its efficient and facile separation from the reaction mixture for reuse in multiple photocatalytic cycles. The nanocatalyst-based degradation of azo dyes and aromatic amines presented here is simple and convenient in terms of efficiency, energy, reusability and cost. The process also does not require any external chemicals and forms gaseous/less harmful end products.
在此,我们展示了一种可见光驱动的磁性可回收纳米光催化剂的研制,该催化剂由负载在磁性氮化碳上的多孔钌纳米颗粒制成(g-CN/FeO/p-RuNP),用于从废水中轻松去除/降解芳香胺和偶氮染料。水体中的芳香胺和偶氮类染料即使在极低浓度下也具有高毒性和致癌性,并且由于其高溶解性而难以分离。我们的纳米催化剂能够在室温下、较宽的pH范围(pH 5.0 - 9.0)内,在可见光(LED/阳光)照射下高效降解/分解芳香胺和偶氮染料,且无需使用任何外部化学物质。纳米催化剂的磁性有助于其从反应混合物中高效、轻松地分离出来,以便在多个光催化循环中重复使用。本文介绍的基于纳米催化剂的偶氮染料和芳香胺降解方法在效率、能源、可重复使用性和成本方面简单便捷。该过程也不需要任何外部化学物质,并形成气态/危害较小的最终产物。