Zhang Jianfeng, Brutus Timothy E, Cheng Jiemin, Meng Xiaoguang
School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.
Center for Environmental Systems, Stevens Institute of Technology, Hoboken, NJ 07030, USA.
J Environ Sci (China). 2017 Jul;57:190-195. doi: 10.1016/j.jes.2017.03.015. Epub 2017 Mar 28.
Batch experiments were conducted to evaluate fluoride removal by Al, Fe, and Ti-based coagulants and adsorbents, as well as the effects of coexisting ions and formation of aluminum-fluoride complexes on fluoride removal by co-precipitation with alum (Al(SO)·18HO). Aluminum sulfate was more efficient than the other coagulants for fluoride removal in the pH range between 6 and 8. Nano-crystalline TiO was more effective for fluoride removal than Al and Fe hydroxides in a pH range of 3-5. Coexisting anions in water decreased the removal of fluoride in the order: phosphate (2.5mg/L)>arsenate (0.1mg/L)>bicarbonate (200mg/L)>sulfate (100mg/L)=nitrate (100mg/L)>silicate (10mg/L) at a pH of 6.0. The effect of silicate became more significant at pH>7.0. Calcium and magnesium improved the removal of fluoride. Zeta-potential measurements determined that the adsorption of fluoride shifted the PZC of Al(OH) precipitates from 8.9 to 8.4, indicating the chemical adsorption of fluoride at the surface. The presence of fluoride in solution significantly increased the soluble aluminum concentration at pH<6.5. A Visual MINTEQ modeling study indicated that the increased aluminum solubility was caused by the formation of AlF, AlF, and AlF complexes. The AlF complexes decreased the removal of fluoride during co-precipitation with aluminum sulfate.
进行了批次实验,以评估铝基、铁基和钛基凝聚剂及吸附剂对氟化物的去除效果,以及共存离子和氟化铝络合物的形成对与明矾(Al(SO)·18HO)共沉淀去除氟化物的影响。在pH值为6至8的范围内,硫酸铝比其他凝聚剂更有效地去除氟化物。在pH值为3至5的范围内,纳米晶TiO比氢氧化铝和氢氧化铁更有效地去除氟化物。在pH值为6.0时,水中共存阴离子对氟化物去除的影响顺序为:磷酸盐(2.5mg/L)>砷酸盐(0.1mg/L)>碳酸氢盐(200mg/L)>硫酸盐(100mg/L)=硝酸盐(100mg/L)>硅酸盐(10mg/L)。在pH>7.0时,硅酸盐的影响更为显著。钙和镁提高了氟化物的去除率。ζ电位测量确定,氟化物的吸附使氢氧化铝沉淀物的零电荷点从8.9变为8.4,表明氟化物在表面发生了化学吸附。在pH<6.5时,溶液中氟化物的存在显著增加了可溶性铝的浓度。一项Visual MINTEQ建模研究表明,铝溶解度的增加是由AlF、AlF和AlF络合物的形成引起的。AlF络合物降低了与硫酸铝共沉淀过程中氟化物的去除率。