He Chuan, Ding Yarong, Li Canhua, Yan Wang, Mao Aiqin, Wei Shuxian, Li Minghui
College of Metallurgical Engineering, Anhui University of Technology Ma'anshan 243000 China
Jiuquan Vocational and Technical College Jiuquan 735000 China.
RSC Adv. 2023 Sep 8;13(38):26983-26994. doi: 10.1039/d3ra03133k. eCollection 2023 Sep 4.
Nanoscale zero-valent iron (nZVI) and its composites are known for their excellent ability to remove Cr(vi), but their preparation can be expensive due to the reduction processes. This study presents a cost-effective method to prepare core@shell structured nZVI@FeO nanocomposites using a novel Fe(ii) disproportionation reaction. The nZVI@FeO was thoroughly characterized using various techniques, including FESEM, HRTEM, EDS, XPS, XRD, FTIR, and VSM. Batch experiments were performed to evaluate the removal efficiency of nZVI@FeO in eliminating Cr(vi) ions from aqueous solutions, while classical models were employed to investigate the influencing factors associated with the removal process. The results showed that a 0.7 mg per ml NaOH solution reacted with Fe(ii) at 150 °C for 0.5 h could be used to prepare nZVI@FeO composites efficiently and inexpensively. nZVI@FeO was able to remove more than 99% of Cr(vi) from both simulated Cr(vi) solutions and real electroplating wastewater, and the recovery and preparation could be easily performed using external magnets to separate it from the solution. At pH 6.0, the maximum adsorption capacity () for Cr(vi) reached 58.67 mg g. The reaction mechanism was discussed from the perspective of electron transfer. Overall, the results suggest that nZVI@FeO, an efficient adsorbent prepared using an environmentally friendly and inexpensive Fe(ii) disproportionation reaction, is a promising option for the treatment of Cr(vi) from industrial wastewater and other contaminated water sources.
纳米零价铁(nZVI)及其复合材料以其去除Cr(Ⅵ)的卓越能力而闻名,但由于还原过程,其制备成本可能很高。本研究提出了一种利用新型Fe(Ⅱ)歧化反应制备核壳结构nZVI@FeO纳米复合材料的经济有效方法。使用包括FESEM、HRTEM、EDS、XPS、XRD、FTIR和VSM在内的各种技术对nZVI@FeO进行了全面表征。进行了批量实验以评估nZVI@FeO从水溶液中去除Cr(Ⅵ)离子的效率,同时采用经典模型研究与去除过程相关的影响因素。结果表明,0.7mg/ml的NaOH溶液在150℃下与Fe(Ⅱ)反应0.5h可有效且廉价地制备nZVI@FeO复合材料。nZVI@FeO能够从模拟Cr(Ⅵ)溶液和实际电镀废水中去除超过99%的Cr(Ⅵ),并且使用外部磁铁将其与溶液分离,回收和制备都很容易进行。在pH 6.0时,Cr(Ⅵ)的最大吸附容量()达到58.67mg/g。从电子转移的角度讨论了反应机理。总体而言,结果表明,nZVI@FeO是一种利用环境友好且廉价的Fe(Ⅱ)歧化反应制备的高效吸附剂,是处理工业废水和其他受污染水源中Cr(Ⅵ)的有前途的选择。