【摘 要】
:
Fulvic acids extracted from a typical rice-production region near Taihu Lake of China were fractionated into three fractions including F4. 8, F7. 0 and F11. 0(e
【机 构】
:
College of Environmental Science,College of Resources and Environmental Sciences
论文部分内容阅读
Fulvic acids extracted from a typical rice-production region near Taihu Lake of China were fractionated into three fractions including F4. 8, F7. 0 and F11. 0(eluted by pH4. 8 buffer, pH 7. 0bufferandpH 11. 0buffer, respectively). Sorption of fulvic acid(FA)fractions onto kaolinite was studied by batch adsorption experiments, and characterizations of kaolinite before and after adsorption were investigated using scanning electron microscopy(SEM). Adsorption isotherms of kaolinite for three FA fractions fit well with the Langmuir adsorption model. The adsorption density of the three fractions was positively correlated with the ratio of the amount of the alkyl carbon to that of carboxyl and carbonyl carbon in FA fractions and followed an order of F11. 0>F7. 0>F4.8.Hydrophobic interaction Was one of the control mechanisms for the sorption of FA fraction onto kaolinite. SEM images confirmed that compared to blank kaolinite samples, kaolinite samples coated by a FA fraction displayed an opener and more dispersed conformation resulting from the disruption of the floe structure in complex. Dispersion of kaolinite after adsorption was due to the repulsion between negatively charged FA. coated particles, which is closely related to the amount of FA fractions absorbed on kaolinite.
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