Ahmad A L, Mustafa N N N
School of Chemical Engineering, Engineering Campus, Universiti Sains Malaysia, Seri Ampangan, 14300 Nibong Tebal, Penang, Malaysia.
J Colloid Interface Sci. 2006 Sep 15;301(2):575-84. doi: 10.1016/j.jcis.2006.05.041. Epub 2006 May 24.
The alumina ceramic membrane has been modified by the addition of palladium in order to improve the H(2) permeability and selectivity. Palladium-alumina ceramic membrane was prepared via a sol-gel method and subjected to thermal treatment in the temperature range 500-1100 degrees C. Fractal analysis from nitrogen adsorption isotherm is used to study the pore surface roughness of palladium-alumina ceramic membrane with different chemical composition (nitric acid, PVA and palladium) and calcinations process in terms of surface fractal dimension, D. Frenkel-Halsey-Hill (FHH) model was used to determine the D value of palladium-alumina membrane. Following FHH model, the D value of palladium-alumina membrane increased as the calcinations temperature increased from 500 to 700 degrees C but decreased after calcined at 900 and 1100 degrees C. With increasing palladium concentration from 0.5 g Pd/100 ml H(2)O to 2 g Pd/100 ml H(2)O, D value of membrane decreased, indicating to the smoother surface. Addition of higher amount of PVA and palladium reduced the surface fractal of the membrane due to the heterogeneous distribution of pores. However, the D value increased when nitric acid concentration was increased from 1 to 15 M. The effect of calcinations temperature, PVA ratio, palladium and acid concentration on membrane surface area, pore size and pore distribution also studied.
为了提高氢气渗透性和选择性,已通过添加钯对氧化铝陶瓷膜进行了改性。钯 - 氧化铝陶瓷膜通过溶胶 - 凝胶法制备,并在500 - 1100摄氏度的温度范围内进行热处理。利用氮气吸附等温线的分形分析,从表面分形维数D的角度研究了具有不同化学成分(硝酸、聚乙烯醇和钯)的钯 - 氧化铝陶瓷膜的孔表面粗糙度以及煅烧过程。使用弗伦克尔 - 哈尔西 - 希尔(FHH)模型确定钯 - 氧化铝膜的D值。根据FHH模型,钯 - 氧化铝膜的D值在煅烧温度从500摄氏度升高到700摄氏度时增加,但在900摄氏度和1100摄氏度煅烧后降低。随着钯浓度从0.5 g Pd/100 ml H₂O增加到2 g Pd/100 ml H₂O,膜的D值降低,表明表面更光滑。由于孔的不均匀分布,添加较高量的聚乙烯醇和钯会降低膜的表面分形。然而,当硝酸浓度从1 M增加到15 M时,D值增加。还研究了煅烧温度、聚乙烯醇比例、钯和酸浓度对膜表面积、孔径和孔分布的影响。