Niraj S. Topare, Anish Khan, S. V. Khedkar, Shantini A. Bokil
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引用次数: 0
摘要
就其对环境的影响而言,世界目前面临的最重要的问题之一是弄清楚如何妥善管理纺织废水。光催化已被证明在去除难处理化学物质方面是成功的,被认为是一种可行的废水处理技术。本文主要研究了罗丹明- b (RB)在水溶液中的光催化降解,并测试了五氧化铌(Nb2O5)作为光催化剂的光催化行为。值得注意的是,良好的光催化效率高度依赖于操作条件。影响RB光催化降解的工艺参数有几个,包括光催化剂(Nb2O5)用量、反应开始时RB的浓度以及可见光照射下优化的溶液pH。结果表明,催化剂浓度为10 mg/l,催化剂投加量为1 mg/l, pH为11时,RB降解量最大。结果还表明,连续三次使用催化剂后,催化剂效率保持不变,降解率保持在较高水平。
Niobium pentaoxide (Nb2O5) as an efficient photocatalyst for photocatalytic degradation of rhodamine-B
One of the most important problems that the world is currently facing in terms of its impact on the environment is figuring out how to properly manage textile effluents. Photocatalysis has been shown to be successful in the removal of intractable chemicals and is regarded as a viable wastewater treatment technology. This work focused on the photocatalytic degradation of rhodamine-B (RB) in an aqueous solution, as well as the photocatalytic behavior of niobium pentaoxide (Nb2O5) as a photocatalyst was tested. It is important to note that good photocatalytic efficiency is highly dependent on the operating conditions. There are several process parameters that influence RB photocatalytic degradation, including the amount of photocatalyst (Nb2O5) used, the concentration of RB at the start of the reaction, and the pH of the solution optimized under visible-light irradiation. According to the findings, the conditions in which the greatest amount of RB was degraded were those in which the concentration of the catalyst was 10 mg/l, the dosage of the catalyst was 1 mg/l, and the pH was 11. The results also revealed that after utilizing the catalyst three times in a row, catalyst efficiency was maintained, and the degradation rate was maintained at a greater level.