岩石矿物学杂志
巖石礦物學雜誌
암석광물학잡지
ACTA PETROLOGICA ET MINERALOGICA
2009年
6期
643-648
,共6页
朱霞萍%白德奎%李锡坤%曾江萍%曹三勇
硃霞萍%白德奎%李錫坤%曾江萍%曹三勇
주하평%백덕규%리석곤%증강평%조삼용
粘土矿物%镉%吸附
粘土礦物%鎘%吸附
점토광물%력%흡부
clay minerals%cadmium%adsorption
研究了土壤中主要硅酸盐粘土矿物蒙脱石、伊利石、高岭石、海泡石对重金属镉的吸附行为.结果表明:硅酸盐粘土矿物吸附镉受酸度和离子强度的影响;吸附反应是快反应,能很好地符合Lagergren二级吸附速度方程;优化条件下的高岭石对镉吸附很弱,蒙脱石、伊利石、海泡石对镉的实验饱和吸附容量分别为2.88、1.08、2.82 mg/g,蒙脱石吸附镉更适合Freundlich拟合,伊利石、海泡石对镉的吸附结果更适合Langmuir拟合;相关性分析表明,硅酸盐粘土矿物对镉的饱和吸附容量大小与其理化性质有关,其中矿物中氧化锰含量高低与其对镉饱和吸附容量大小的相关性达到极显著水平.
研究瞭土壤中主要硅痠鹽粘土礦物矇脫石、伊利石、高嶺石、海泡石對重金屬鎘的吸附行為.結果錶明:硅痠鹽粘土礦物吸附鎘受痠度和離子彊度的影響;吸附反應是快反應,能很好地符閤Lagergren二級吸附速度方程;優化條件下的高嶺石對鎘吸附很弱,矇脫石、伊利石、海泡石對鎘的實驗飽和吸附容量分彆為2.88、1.08、2.82 mg/g,矇脫石吸附鎘更適閤Freundlich擬閤,伊利石、海泡石對鎘的吸附結果更適閤Langmuir擬閤;相關性分析錶明,硅痠鹽粘土礦物對鎘的飽和吸附容量大小與其理化性質有關,其中礦物中氧化錳含量高低與其對鎘飽和吸附容量大小的相關性達到極顯著水平.
연구료토양중주요규산염점토광물몽탈석、이리석、고령석、해포석대중금속력적흡부행위.결과표명:규산염점토광물흡부력수산도화리자강도적영향;흡부반응시쾌반응,능흔호지부합Lagergren이급흡부속도방정;우화조건하적고령석대력흡부흔약,몽탈석、이리석、해포석대력적실험포화흡부용량분별위2.88、1.08、2.82 mg/g,몽탈석흡부력경괄합Freundlich의합,이리석、해포석대력적흡부결과경괄합Langmuir의합;상관성분석표명,규산염점토광물대력적포화흡부용량대소여기이화성질유관,기중광물중양화맹함량고저여기대력포화흡부용량대소적상관성체도겁현저수평.
An experimental study of the adsorption of clay minerals such as montmorillonite, illite, kaolinite and sepiolite for Ca~(2+) was conducted. The results indicate that acidity and ion intensity are factors affecting adsorption, that the adsorption reaction is rapid, and that adsorption kinetics is fitted well with the Lagergren quasi-second reaction rate model. Under the optional conditions, the adsorption of kaolinite for cadmium is weak, and the saturated adsorption capacities of montmorillonite, illite and sepiolite for cadmium are 2.88,1.08 and 2.82 mg/g respectively. The behaviors of adsorption of Cd~(2+) on montmorillonite are fitted to Freundlich Model, while the behaviors of adsorption of Cd~(2+) on illite and sepiolite are fitted to Langmuir Model. Correlation analysis shows that the saturated adsorption capacity of cadmium on silicate clay minerals is related to its physical and chemical properties, and the correlation between manganese oxides and the saturated adsorption capacity of cadmium is extremely significant.