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| Fabrication of stable glycine/palygorskite nanohybrid via high-pressure homogenization as high-efficient adsorbent for Cs(I) and methyl violet 期刊论文 Journal of the Taiwan Institute of Chemical Engineers, 2017, 卷号: 80, 页码: 997-1005 Authors: Xu JX(徐继香); Wang WB(王文波); Gao,Jianyang; Wang AQ(王爱勤); Wang WB(王文波); Wang AQ(王爱勤) Adobe PDF(2380Kb)  |  Favorite  |  View/Download:245/4  |  Submit date:2017/10/28 Palygorskite Glycine High-pressure Homogenization Hybrid Materials Adsorption |
| Ammonium sulfide-assisted hydrothermal activation of palygorskite for enhanced adsorption of methyl violet 期刊论文 Journal of Environmental Sciences, 2016, 卷号: 41, 页码: 33-43 Authors: Tian GY(田光燕); Wang WB(王文波); Kang YR(康玉茹); Wang AQ(王爱勤); Tian GY(田光燕); Wang AQ(王爱勤) Adobe PDF(1196Kb)  |  Favorite  |  View/Download:115/2  |  Submit date:2016/03/29 Palygorskite Hydrothermal Adsorption Methyl Violet |
| Preparation of Chitosan-g-Poly (Vinylimidazole-co-2-Acrylamido-2-Methyl Propane Sulfonic Acid) Granular Hydrogel for Selective Adsorption of Hg2+ 期刊论文 Water, Air, and Soil Pollution, 2016, 卷号: 227, 期号: 4, 页码: 110(1-12) Authors: Wang F(王锋); Zheng YA(郑易安); Zhu YF(朱永峰); Wang AQ(王爱勤); Zheng YA(郑易安); Wang AQ(王爱勤) Adobe PDF(805Kb)  |  Favorite  |  View/Download:71/0  |  Submit date:2016/05/14 Granular Hydrogel Selective Adsorption Vinylimidazole Hg2++ |
| One-Step Calcination of the Spent Bleaching Earth for the Efficient Removal of Heavy Metal Ions 期刊论文 ACS Sustainable Chemistry and Engineering, 2015, 卷号: 3, 期号: 6, 页码: 1125-1135 Authors: Tang J(唐洁); Mu B(牟斌); Zheng MS(郑茂松); Wang AQ(王爱勤); Wang AQ(王爱勤) Adobe PDF(9942Kb)  |  Favorite  |  View/Download:129/4  |  Submit date:2015/10/28 Spent Bleaching Earth Attapulgite Carbonization Adsorption Heavy Metal Ions |
| Novel Covalently Cross-Linked Attapulgite/Poly(acrylic acid-co-acrylamide) Hybrid Hydrogels by Inverse Suspension Polymerization: Synthesis Optimization and Evaluation as Adsorbents for Toxic Heavy Metals 期刊论文 Industrial and Engineering Chemistry Research, 2014, 卷号: 53, 期号: 11, 页码: 4277-4285 Authors: Liu P(刘鹏); Jiang LP(姜丽萍); Zhu LX(朱龙祥); Wang AQ(王爱勤); Liu P(刘鹏) Adobe PDF(375Kb)  |  Favorite  |  View/Download:271/1  |  Submit date:2014/10/17 |
| One-step in situ fabrication of a granular semi-IPN hydrogel based on chitosan and gelatin for fast and efficient adsorption of Cu2+ ion 期刊论文 Colloids and Surfaces B: Biointerfaces, 2013, 卷号: 106, 页码: 51-59 Authors: Wang WB(王文波); Huang DJ(黄大建); Kang YR(康玉茹); Wang AQ(王爱勤); Wang AQ(王爱勤) Adobe PDF(1681Kb)  |  Favorite  |  View/Download:333/1  |  Submit date:2013/12/02 Chitosan Gelatin Granular Semi-ipn Hydrogel Heavy Metal Adsorption |
| Granular hydrogel initiated by Fenton reagent and their performance on Cu(II) and Ni(II) removal 期刊论文 Chemical Engineering Journal, 2012, 卷号: 200, 页码: 601-610 Authors: Zheng YA(郑易安); Wang AQ(王爱勤); Wang AQ(王爱勤) Adobe PDF(1368Kb)  |  Favorite  |  View/Download:245/4  |  Submit date:2013/03/24 Granular Hydrogel Fenton Reagent Allylthiourea Heavy Metals Removal |
| Kapok Fiber Oriented Polyaniline for Removal of Sulfonated Dyes 期刊论文 Industrial & Engineering Chemistry Research, 2012, 卷号: 51, 期号: 30, 页码: 10079-10087 Authors: Zheng YA(郑易安); Liu Y(刘毅); Wang AQ(王爱勤); Wang AQ(王爱勤) Adobe PDF(479Kb)  |  Favorite  |  View/Download:224/1  |  Submit date:2013/03/24 |
| Removal of heavy metals using polyvinyl alcohol semi-IPN poly (acrylic acid)/tourmaline composite optimized with response surface methodology 期刊论文 Chemical Engineering Journal, 2010, 卷号: 162, 期号: 1, 页码: 186-193 Authors: Zheng YA(郑易安); Wang AQ(王爱勤); 王爱勤 aqwang@licp.cas.cn Adobe PDF(700Kb)  |  Favorite  |  View/Download:251/0  |  Submit date:2012/09/02 Response Surface Methodology Box–behnken Design Adsorption Heavy Metal Polyvinyl Alcohol |
| Adsorption behavior of Cu2+ from aqueous solutions onto starch-g-poly(acrylic acid)/sodium humate hydrogels 期刊论文 Desalination, 2010, 卷号: 263, 期号: 1-3, 页码: 170-175 Authors: Zheng YA(郑易安); Hua SB(华水波); Wang AQ(王爱勤); 王爱勤 aqwang@licp.cas.cn Adobe PDF(555Kb)  |  Favorite  |  View/Download:324/4  |  Submit date:2012/09/02 Starch Sodium Humate Hydrogel Cu2++ Adsorption Complexation |