Long Jun, Xu Zhenghe, Masliyah Jacob H
Department of Chemical and Materials Engineering, University of Alberta, Edmonton, Alberta, Canada T6G 2G6.
Langmuir. 2006 Feb 14;22(4):1652-9. doi: 10.1021/la052757f.
In a recent study (Energy Fuels 2005, 19, 936), a partially hydrolyzed polyacrylamide (HPAM) was used as a process aid to recover bitumen from oil sand ores. It was found that HPAM addition at the bitumen extraction step not only improved bitumen recovery but also enhanced fine solids settling in the tailings stream. To understand the role of HPAM, single-molecule force spectroscopy was employed for the first time to measure the desorption/adhesion forces of single HPAM molecules on silica, mica, and bitumen surfaces using an atomic force microscope (AFM). Silicon wafers with an oxidized surface layer and newly cleaved mica were used, respectively, to represent sand grains and clays in oil sands. The force measurements were carried out in deionized water and in commercial plant process water under equilibrium conditions. The desorption/adhesion forces of HPAM obtained on mica, silica, and bitumen surfaces were approximately 200, 40, and 80 pN in deionized water and approximately 100, 50, and 40 pN in the plant process water, respectively. The measured adhesion forces together with the zeta potential values of these surfaces indicate that the polymer would preferentially adsorb onto clay surfaces rather than onto bitumen surfaces. It is the selective adsorption of HPAM that benefits both bitumen recovery and tailings settling when the polymer was added directly to the bitumen extraction process at an appropriate dosage.
在最近的一项研究(《能源与燃料》,2005年,第19卷,936页)中,一种部分水解的聚丙烯酰胺(HPAM)被用作从油砂矿石中回收沥青的助滤剂。研究发现,在沥青萃取步骤中添加HPAM不仅提高了沥青回收率,还增强了尾矿流中细颗粒固体的沉降。为了了解HPAM的作用,首次采用单分子力谱法,使用原子力显微镜(AFM)测量单个HPAM分子在二氧化硅、云母和沥青表面的解吸/粘附力。分别使用具有氧化表面层的硅片和新劈开的云母来代表油砂中的砂粒和粘土。力的测量在去离子水和商业工厂工艺用水中于平衡条件下进行。在去离子水中,HPAM在云母、二氧化硅和沥青表面获得的解吸/粘附力分别约为200、40和80 pN,在工厂工艺用水中分别约为100、50和40 pN。测得的粘附力以及这些表面的zeta电位值表明,该聚合物将优先吸附在粘土表面而非沥青表面。当以适当剂量将该聚合物直接添加到沥青萃取过程中时,正是HPAM的选择性吸附对沥青回收和尾矿沉降都有益。