Crystallization and Precipitation Unit, Department of Chemical, University of Cape Town, Private Bag X3, Rondebosch, 7701 Cape Town, South Africa.
J Colloid Interface Sci. 2010 Nov 1;351(1):10-8. doi: 10.1016/j.jcis.2010.06.027. Epub 2010 Jun 19.
Metal sulfide precipitation forms an important component of acid mine drainage remediation systems based on bacterial sulfate reduction. The precipitation reaction is thermodynamically favorable, but a number of technical issues remain. In this study the effect of metal to sulfide molar ratio and operating pH on the nature and settling characteristics of copper and zinc sulfide precipitates was studied in a CSTR. A large number of small copper sulfide particles, with highly negatively charged surfaces and poor settling characteristics, were formed in the presence of a stoichiometric excess of sulfide at pH 6. The size and the settling characteristics of the particles were significantly improved, while the number of particles and magnitude of their zeta potential decreased when experiments were conducted at pH values <6. By comparison, for zinc sulfide, a small change in the number and size of the particles was observed for all metal to sulfide molar ratios and tested operating pH values. Precipitates generated at pH 6 had the most negative zeta potential, while operating at pH values <6 reduced the magnitude of the negative surface charge and improved the settling and dewatering characteristics of the precipitate. The data indicated that the amount of reactive sulfide species (HS(-) and S(2-) ions) available in solution during the precipitation process was important in determining the nature and surface characteristics of the particles produced and this was mainly dependent on pH.
基于细菌硫酸盐还原作用的金属硫化物沉淀形成了酸性矿山排水修复系统的重要组成部分。沉淀反应在热力学上是有利的,但仍存在一些技术问题。在这项研究中,在 CSTR 中研究了金属与硫化物摩尔比和操作 pH 值对铜和锌硫化物沉淀的性质和沉淀特性的影响。在 pH 值为 6 时,存在硫过量的情况下,会形成大量带高度负电荷的表面和较差的沉淀特性的小铜硫化物颗粒。当在 pH 值 <6 的条件下进行实验时,颗粒的大小和沉淀特性得到了显著改善,而颗粒的数量及其 ζ 电位的幅度却降低了。相比之下,对于锌硫化物,对于所有金属与硫化物摩尔比和测试操作 pH 值,颗粒的数量和大小都只有很小的变化。在 pH 值为 6 时生成的沉淀物具有最负的 ζ 电位,而在 pH 值 <6 的条件下运行会降低负表面电荷的幅度,并改善沉淀物的沉淀和脱水特性。数据表明,沉淀过程中溶液中可用的反应性硫化物种类(HS(-)和 S(2-)离子)的数量对所生成的颗粒的性质和表面特性具有重要影响,而这主要取决于 pH 值。