Suppr超能文献

纤维素醋酸酯-氧化铁纳米复合材料负载金属催化剂在环境污染物还原反应中的性能。

Performance of cellulose acetate-ferric oxide nanocomposite supported metal catalysts toward the reduction of environmental pollutants.

机构信息

Department of Chemistry, King Abdulaziz University, P.O. Box 80203, Jeddah, 21589, Saudi Arabia.

Department of Chemistry, King Abdulaziz University, P.O. Box 80203, Jeddah, 21589, Saudi Arabia; Center of Excellence for Advanced Materials Research (CEAMR), King Abdulaziz University, P.O. Box 80203, Jeddah, 21589, Saudi Arabia.

出版信息

Int J Biol Macromol. 2018 Feb;107(Pt A):668-677. doi: 10.1016/j.ijbiomac.2017.09.034. Epub 2017 Sep 14.

Abstract

Water contamination by toxic compounds has become one of the most serious problems worldwide. Catalytic reduction using metal nanoparticles offer opportunities for environmental benefits. In this study, cellulose acetate-ferric oxide nanocomposite (CA/FeO) was prepared and used as support for metal nanoparticles. After adsorption of Ag, Cu or Ni ions from aqueous solutions, metal ions associated with CA/FeO were treated with sodium borohydride to prepare Ag, Cu and Ni nanoparticles loaded CA/FeO. The CA/FeO supported Ag, Cu or Ni nanoparticles was evaluated as a catalyst for pollutants degradation. Silver nanoparticles (Ag@CA/FeO) exhibit remarkable decomposition for methyl orange dye and p-nitrophenol in short time. The rate constant for methyl orange and p-nitrophenol were 8.58×10 and 4.77×10s, respectively. Besides the good catalytic activities of Ag@CA/FeO, the catalyst could be easily recovered from the reaction medium by pulling the catalyst after completion of the reduction reaction. The recovered catalyst can be recycled several times if their exposure time to air was minimal.

摘要

水污染是全球面临的最严重问题之一。利用金属纳米粒子进行催化还原为环境保护提供了机会。本研究制备了醋酸纤维素-氧化铁纳米复合材料(CA/FeO),并将其用作金属纳米粒子的载体。将 Ag、Cu 或 Ni 离子从水溶液中吸附到 CA/FeO 上后,用硼氢化钠处理与 CA/FeO 结合的金属离子,制备负载 CA/FeO 的 Ag、Cu 和 Ni 纳米粒子。CA/FeO 负载的 Ag、Cu 或 Ni 纳米粒子被评估为用于污染物降解的催化剂。银纳米粒子(Ag@CA/FeO)在短时间内对甲基橙染料和对硝基苯酚表现出显著的分解作用。甲基橙和对硝基苯酚的反应速率常数分别为 8.58×10 和 4.77×10s。除了 Ag@CA/FeO 的良好催化活性外,还原反应完成后,通过拉动催化剂可以将催化剂从反应介质中轻易回收。如果催化剂暴露在空气中的时间最小,则可以多次回收使用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验