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离子强度对膨润土/木质素磺酸钠接枝丙烯酰胺-马来酸酐复合吸附树脂吸附Pb2+/Cu2+的影响
引用本文:姚庆鑫,谢建军,刘军霞,唐丽萍,刘元. 离子强度对膨润土/木质素磺酸钠接枝丙烯酰胺-马来酸酐复合吸附树脂吸附Pb2+/Cu2+的影响[J]. 应用化学, 2015, 32(8): 940-947. DOI: 10.11944/j.issn.1000-0518.2015.08.140436
作者姓名:姚庆鑫  谢建军  刘军霞  唐丽萍  刘元
作者单位:中南林业科技大学材料科学与工程学院 长沙 410004
基金项目:国家自然科学基金资助项目(31270603)
摘    要:为揭示外加电解质离子强度对重金属离子吸附的影响规律与内在机制, 制备了膨润土/木质素磺酸钠接枝丙烯酰胺-马来酸酐复合吸附树脂(BLPAMA), 研究了外加电解质离子强度对BLPAMA吸附单一和二元Pb2+/Cu2+的影响规律, 以及有、无外加0.2 mol/L NaNO3时BLPAMA对二元Pb2+/Cu2+的吸附等温线、吸附热力学及吸附动力学。 结果表明, 在单一Pb2+或Cu2+溶液中, 随离子强度增加, Pb2+和Cu2+吸附量降低;在二元Pb2+/Cu2+溶液中, 随离子强度增加, Pb2+吸附量降低而Cu2+吸附量提高。

关 键 词:木质素  吸附  离子强度  外加电解质  重金属离子  
收稿时间:2014-12-22

Effect of Ionic Strength on the Adsorption of Pb2+ and Cu2+ onto Bentonite/Sodium Lignosulfonate Graft-Polymerized with Acrylamide and Maleic Anhydride
YAO Qingxin,XIE Jianjun,LIU Junxia,TANG Liping,LIU Yuan. Effect of Ionic Strength on the Adsorption of Pb2+ and Cu2+ onto Bentonite/Sodium Lignosulfonate Graft-Polymerized with Acrylamide and Maleic Anhydride[J]. Chinese Journal of Applied Chemistry, 2015, 32(8): 940-947. DOI: 10.11944/j.issn.1000-0518.2015.08.140436
Authors:YAO Qingxin  XIE Jianjun  LIU Junxia  TANG Liping  LIU Yuan
Affiliation:School of Materials Science and Engineering, Central South University of Forestry and Technology, Changsha 410004, China
Abstract:Adsorbent composites comprising of bentonite/sodium lignosulfonate graft-polymerized with acrylamide and maleic anhydride(BLPAMA) were prepared and used to investigate the effect of ionic strength on the adsorption of Pb2+ or Cu2+ onto BLPAMA in single or binary metal ion solutions, the adsorption isotherms, kinetics and thermodynamics of Pb2+ and Cu2+ onto BLPAMA with or without addition of 0.2 mol/L NaNO3 in the binary metal ion solutions. The results show that the increase of ionic strength leads the adsorption capacity of Pb2+ or Cu2+ to decrease in the single metal ion solution, the adsorption capacity of Pb2+ to decrease while the adsorption capacity of Cu2+ to increase in the binary metal ion solution.
Keywords:lignin  adsorption  ionic strength  additive electrolyte  heavy metal ions
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