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针铁矿对焦磷酸根的吸附特征及吸附机制
引用本文:谢发之,圣丹丹,胡婷婷,李海斌,汪雪春,谢志勇.针铁矿对焦磷酸根的吸附特征及吸附机制[J].应用化学,2016,33(3):343-349.
作者姓名:谢发之  圣丹丹  胡婷婷  李海斌  汪雪春  谢志勇
作者单位:安徽建筑大学 材料与化学工程学院 合肥 230022 ;安徽建筑大学 先进建筑材料安徽省重点实验室 合肥 230022
基金项目:国家自然科学基金项目(21107001),2014年安徽省高校优秀青年人才支持计划项目
摘    要:为深入了解自然水体中焦磷酸盐的迁移转化行为,以表生环境中广泛存在的稳定矿物-针铁矿为研究对象,系统研究了其对焦磷酸根的吸附过程,探索了不同实验条件下(pH值、电解质、时间、温度)针铁矿对焦磷酸根吸附的影响。 结果表明,溶液pH值从6.27升至10.99时,总磷吸附量从3.00 mg/g降低至0.75 mg/g;电解质浓度越低越有利于针铁矿对焦磷酸根的吸附;吸附剂对焦磷酸根的吸附量在最初1 h内增长较快,随后渐渐达到吸附平衡;溶液温度的升高对吸附量提高具有增强作用。 用动力学和热力学模型对吸附过程进行拟合,发现准二级动力学和Langmuir模型具有更好的适用性。 结合材料吸附焦磷酸根前后的表征,推导出针铁矿对焦磷酸根的吸附机制可能是以表面配合和物理吸附为主导。

关 键 词:针铁矿  焦磷酸根  吸附  动力学  热力学  
收稿时间:2015-07-10

Adsorption Behavior and Mechanism of Pyrophosphate on Goethite
XIE Fazhi,SHENG Dandan,HU Tingting,LI Haibin,WANG Xuechun,XIE Zhiyong.Adsorption Behavior and Mechanism of Pyrophosphate on Goethite[J].Chinese Journal of Applied Chemistry,2016,33(3):343-349.
Authors:XIE Fazhi  SHENG Dandan  HU Tingting  LI Haibin  WANG Xuechun  XIE Zhiyong
Affiliation:School of Materials Science and Chemical Engineering;Anhui Key Laboratory of Advanced Building Materials,Anhui Jianzhu University,Hefei 230022,China
Abstract:In order to study the fate and transport behavior of polyphosphate in water body, the adsorption process of pyrophosphate on synthetic goethite which stablely exists in the supergene environment has been studied systematically. The adsorption behaviors under different conditions(pH, electrolyte, time, temperature) were investigated and the adsorption mechanism was discussed. The results indicate that the adsorption capacity decreases from 3.00 mg/g to 0.75 mg/g with the increase of pH from 6.27 to 10.99. The lower the electrolyte concentration, the more favorable to the adsorption. The adsorption characteristic within 48 h was investigated. The adsorption capacity increases rapidly within 1 h, and then reaches the adsorption equilibrium. Moreover, the adsorption capacity increases with the increase of the adsorption temperature. Kinetic models and thermodynamic models were used to analyze the adsorption process, and the results show that the adsorption is in accord with the pseudo second-order equation and Langmuir model. Furthermore, combined with the characterization of materials, the adsorption may be mainly based on surface complexation and physical adsorption.
Keywords:goethite  pyrophosphate  adsorption  kinetic  thermodynamic
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