Eriksson Rasmus, Merta Juha, Rosenholm Jarl B
Department of Physical Chemistry, Abo Akademi University, Porthansgatan 3-5, FIN-20500 Abo, Finland.
J Colloid Interface Sci. 2007 Sep 1;313(1):184-93. doi: 10.1016/j.jcis.2007.04.034. Epub 2007 May 31.
Suspensions of calcium carbonate in water with an indifferent background electrolyte (NaCl) have been investigated using several techniques. Particular attention was paid to the dissolution of calcite at equilibrium and as a function of sodium polyacrylate (NaPA) concentration. Also of interest was how this affects the magnitude of the surface charge and the zeta potential. The development of the interfacial charge is discussed with respect to the dissolved species and with regard to the kinetics of dissolution. The partial pressure of CO(2) in solution is believed to play a major role in determining the sign of the charge at equilibrium. In addition to effectively stabilizing calcite suspensions, NaPA was also found to act as a chelating agent at the calcite surface, enhancing the dissolution. The order of addition of NaPA to the suspensions was found to be important.
使用多种技术研究了碳酸钙在含有惰性背景电解质(氯化钠)的水中的悬浮液。特别关注了方解石在平衡状态下以及作为聚丙烯酸钠(NaPA)浓度函数的溶解情况。同样令人感兴趣的是这如何影响表面电荷的大小和zeta电位。从溶解物种和溶解动力学方面讨论了界面电荷的形成。溶液中二氧化碳的分压被认为在决定平衡时电荷的正负方面起主要作用。除了有效稳定方解石悬浮液外,还发现NaPA在方解石表面充当螯合剂,促进溶解。发现向悬浮液中添加NaPA的顺序很重要。