Faculty of Chemistry, Department of Chemical and Process Engineering, Wrocław University of Technology, Norwida 4/6, 50-373 Wrocław, Poland.
Environ Geochem Health. 2010 Aug;32(4):361-6. doi: 10.1007/s10653-010-9306-x. Epub 2010 Apr 10.
The aim of this work is to investigate the application of fly ash adsorbent for removal of arsenite ions from dilute solution (100-1,000 ppm). Experiments were carried out using material from the "Turów" (Poland) brown-coal-burning power plant, which was wetted, then mixed and tumbled in a granulator to form spherical agglomerates. Measurements of arsenic adsorption from aqueous solution were carried out at room temperature and natural pH of fly ash agglomerates, in either a shaken flask or circulating column, to compare two different methods of contacting solution with adsorbent. Adsorption isotherms of arsenic were determined for agglomerated material using the Freundlich equation. Kinetic studies indicated that sorption follows a pseudo-second-order model. Preferable method to carry out the process is continuous circulation of arsenite solution through a column.
本工作旨在研究粉煤灰吸附剂在从稀溶液(100-1000ppm)中去除亚砷酸盐离子方面的应用。实验使用了来自“Turów”(波兰)褐煤燃烧发电厂的材料,该材料先润湿,然后在造粒机中混合和翻滚,形成球形团聚物。在室温下和粉煤灰团聚体的自然 pH 值下,使用摇瓶或循环柱,从水溶液中测量砷的吸附,以比较两种不同的方法与吸附剂接触溶液。使用弗伦德利希方程确定了团聚材料的砷吸附等温线。动力学研究表明,吸附遵循拟二级模型。进行该过程的优选方法是连续循环通过柱子的亚砷酸盐溶液。