Li Shulei, Gao Lihui, Cao Yijun, Gui Xiahui, Li Zhen
School of Chemical Engineering and Technology, China University of Mining & Technology, Xuzhou 221116, Jiangsu, China; Chemical & Materials Engineering, University of Alberta, Edmonton, Alberta, Canada T6G 2V4; National Engineering Research Center of Coal Preparation and Purification, Xuzhou 221116, Jiangsu, China E-mail:
School of Chemical Engineering and Technology, China University of Mining & Technology, Xuzhou 221116, Jiangsu, China; National Engineering Research Center of Coal Preparation and Purification, Xuzhou 221116, Jiangsu, China E-mail:
Water Sci Technol. 2016;74(3):729-37. doi: 10.2166/wst.2016.266.
pH-sensitive copolymers have been widely introduced to achieve rapid dewatering and consolidation of solids in mining and oil sands processing wastes. But no more attention has been given to the flocculation efficiency of solid suspensions as a function of pH using pH-sensitive copolymer. In this study, a pH-sensitive copolymer was synthesized and employed to investigate the flocculation behaviors of kaolin by focused beam reflectance measurement (FBRM). A titration test was introduced to characterize the copolymer conformation transition. The results demonstrated that at pH ranging from 3 to 6, with the pH increase, the zeta potential magnitude of kaolin particles increased, resulting in the repulsive forces between particles increasing. However, the hydrophobicity of kaolin increased as the pH increased. Thus, the hydrophobic forces could neutralize a part of the repulsive forces between particles and result in good and similar flocculation performances. At the pH greater than 6, the zeta potential magnitude of kaolin particles and copolymer molecules increased significantly, and the repulsive force between kaolin particles increased after copolymer addition due to the kaolin particles being more negatively charged, which resulted in poor flocculation efficiency and cloudy supernatant. It was concluded that the pH-sensitive copolymer could achieve both perfect flocculation efficiency and low moisture of filter cake at the isoelectric point of copolymer.
pH敏感共聚物已被广泛应用于矿业和油砂加工废料中固体的快速脱水和固结。但对于使用pH敏感共聚物时,固体悬浮液的絮凝效率随pH值的变化情况,尚未给予更多关注。在本研究中,合成了一种pH敏感共聚物,并采用聚焦光束反射测量(FBRM)研究其对高岭土的絮凝行为。引入滴定试验来表征共聚物的构象转变。结果表明,在pH值为3至6的范围内,随着pH值升高,高岭土颗粒的ζ电位绝对值增加,导致颗粒间排斥力增大。然而,高岭土的疏水性随着pH值升高而增加。因此,疏水力可以抵消颗粒间的部分排斥力,从而产生良好且相似的絮凝性能。在pH值大于6时,高岭土颗粒和共聚物分子的ζ电位绝对值显著增加,添加共聚物后,由于高岭土颗粒带更多负电荷,高岭土颗粒间的排斥力增大,导致絮凝效率低下且上清液浑浊。得出的结论是,在共聚物的等电点时,pH敏感共聚物可以实现完美的絮凝效率和低滤饼水分。