于湘,牛显春,俞志东.缓蚀剂钼酸盐插层水滑石对Cl- 吸附行为的研究[J].表面技术,2012,(6):26-29.
YU Xiang,NIU Xian-chun,YU Zhi-dong.Study on Adsorption of Chloride Ion on Molybdate Intercalated Hydrotalcite[J].Surface Technology,2012,(6):26-29
缓蚀剂钼酸盐插层水滑石对Cl- 吸附行为的研究
Study on Adsorption of Chloride Ion on Molybdate Intercalated Hydrotalcite
投稿时间:2012-09-04  修订日期:2012-12-20
DOI:
中文关键词:  钼酸盐插层水滑石  Cl-  缓蚀剂  吸附动力学
英文关键词:molybdate intercalated hydrotalcite  chloride ion  corrosion inhibitor  adsorption kinetics
基金项目:广东省科技计划项目(2012B010500028); 广东石油化工学院自然科学基金(510009)
作者单位
于湘 广东石油化工学院化工与环境学院, 茂名525000 
牛显春 广东石油化工学院化工与环境学院, 茂名525000 
俞志东 广东石油化工学院化工与环境学院, 茂名525000 
AuthorInstitution
YU Xiang College of Chemical and Environmental Engineering, Guangdong University of Petrochemical Technology, Maoming 525000, China 
NIU Xian-chun College of Chemical and Environmental Engineering, Guangdong University of Petrochemical Technology, Maoming 525000, China 
YU Zhi-dong College of Chemical and Environmental Engineering, Guangdong University of Petrochemical Technology, Maoming 525000, China 
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中文摘要:
      以缓蚀剂钼酸盐插层水滑石(HT-MoO42-)为吸附剂,对NaCl 溶液中的Cl-进行吸附,探讨了吸附时间、温度和Cl-初始浓度等因素对吸附的影响。测定了HT-MoO42-吸附Cl-前后的元素组成变化,测定了吸附等温线和吸附动力学曲线。结果表明,该吸附反应为介孔单分子层与多分子层吸附相结合,在70 h 内达到吸附平衡,吸附量随Cl-初始浓度、温度的增加而增大,吸附过程遵循Lagergren 二级反应动力学过程,相关系数R2 为0.9981。
英文摘要:
      Corrosion inhibitor molybdate intercalated hydrotalcite as absorbent were used to adsorb Cl- from NaCl solution. The effects of the adsorption time, adsorption temperature and initial concentration of the adsorbate (Cl-) were investigated. The element change of HT-MoO42- powers was admeasured before and after adsorption Cl-, and adsorption isotherm and adsorption kinetic curve were determined. The experimental results showed that the adsorption reaction mainly proceeded in the form of Mesoporous monolayer combined with multilayer adsorption. The adsorption reached balance within 70h. The adsorption capacity was enhanced with the increase of initial chloride concentrations and temperature. The adsorption kinetics was followed Lagergren pseudo-second-order kinetic model with correlation coefficients of 0. 9981.
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