Bunge Alexander, Leoștean Cristian, Turcu Rodica
National Institute R&D for Isotopic and Molecular Technology, 67-103 Donat Street, 400293 Cluj-Napoca, Romania.
Materials (Basel). 2023 Dec 18;16(24):7696. doi: 10.3390/ma16247696.
Water pollution is a big problem for the environment, and thus depollution, especially by adsorption processes, has garnered a lot of interest in research over the last decades. Since sorbents would be used in large quantities, ideally, they should be cheaply prepared in scalable reactions from waste materials or renewable sources and be reusable. Herein, we describe a novel preparation of a range of magnetic sorbents only from waste materials (sawdust and iron mud) and their performance in the adsorption of several dyes (methylene blue, crystal violet, fast green FCF, and congo red). The preparation is performed in a hydrothermal process and is thus easily scalable and requires little sophisticated equipment. The magnetic nanostructured materials were analyzed using FTIR, VSM, SEM/EDX, XRD, and XPS. For crystal violet as a pollutant, more in-depth adsorption studies were performed. It was found that the best-performing magnetic sorbent had a maximum sorption capacity of 97.9 mg/g for crystal violet (methylene blue: 149.8 mg/g, fast green FCF: 52.2 mg/g, congo red: 10.5 mg/g), could be reused several times without drastic changes in sorption behavior, and was easily separable from the solution by simply applying a magnet. It is thus envisioned to be used for depollution in industrial/environmental applications, especially for cationic dyes.
水污染是一个严重的环境问题,因此,尤其是通过吸附过程进行的脱污染,在过去几十年里引起了大量的研究兴趣。由于吸附剂需要大量使用,理想情况下,它们应该可以通过从废料或可再生资源进行可扩展反应来廉价制备,并且可以重复使用。在此,我们描述了一种仅利用废料(锯末和铁泥)制备一系列磁性吸附剂的新方法,以及它们对几种染料(亚甲基蓝、结晶紫、亮绿FCF和刚果红)的吸附性能。该制备过程是在水热过程中进行的,因此易于扩展规模,并且所需的精密设备很少。使用傅里叶变换红外光谱仪(FTIR)、振动样品磁强计(VSM)、扫描电子显微镜/能谱仪(SEM/EDX)、X射线衍射仪(XRD)和X射线光电子能谱仪(XPS)对磁性纳米结构材料进行了分析。对于作为污染物的结晶紫,进行了更深入的吸附研究。结果发现,性能最佳的磁性吸附剂对结晶紫的最大吸附容量为97.9 mg/g(亚甲基蓝:149.8 mg/g,亮绿FCF:52.2 mg/g,刚果红:10.5 mg/g),可以重复使用多次而吸附行为没有剧烈变化,并且通过简单地施加磁铁就可以很容易地从溶液中分离出来。因此,预计它可用于工业/环境应用中的脱污染,特别是对于阳离子染料。