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- 2017
改性纳米SiO2/PVA复合纤维的制备及重金属离子吸附性能
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Abstract:
[1] | MAHAPATRA A, MISHRA B G, HOTA G. Electrospun Fe2O3-Al2O3 nanocomposite fibers as efficient adsorbent for removal of heavy metal ions from aqueous solution[J]. Journal of Hazardous Materials, 2013, 258-259(6): 116-123. |
[2] | 闫成成, 贾永堂, 曾显华, 等. 静电纺纳米纤维膜用于重金属离子吸附的研究进展[J]. 材料导报, 2014, 28(9): 139-143. YAN Chengcheng, JIA Yongtang, ZENG Xianhua, et al. Research development of electrospinning nanofiber mat for heavy metal ions adsorption[J]. Materials Review, 2014, 28(9): 139-143 (in Chinese). |
[3] | HAKAMI O, ZHANG Y, BANKS C J, et al. Thiol-functionalised mesoporous silica-coated magnetite nanopaiticles for high efficiency removal and recovery of Hg from water[J]. Water Researh, 2012, 46(12): 3913-3922. |
[4] | MA Z, JI H, TENG Y, et al. Engineering and optimization of nano-and mesoporous silica fibers using sol-gel and electrospinning techniques for sorption of heavy metal ions[J]. Journal of Colloid and Interface Science, 2011(358): 547-553. |
[5] | 严潞, 方炜炳, 王迁, 等. 氧化石墨烯-聚合羟基铝复合材料的合成及其对Cd(Ⅱ)的去除效果[J]. 复合材料学报, 2016, 33(3): 613-617. YAN Lu, FANG Weibing, WANG Qian, et al. Synthesis of graphite oxide-polymeric aluminum hydroxyl composites and their removal effects for Cd(Ⅱ)[J]. Acta Materiae Compositae Sinica, 2016, 33(3): 613-617 (in Chinese). |
[6] | 缪月娥, 刘天西. 基于静电纺丝技术的多级结构聚合物纳米纤维复合材料的研究进展[J]. 高分子学报, 2012(8): 801-811. MIAO Yuee, LIU Tianxi. Recent progress in hierarchically organized polymer nanocomposites based on electrospun nanofibers[J]. Acta Polymerica Sinica, 2012(8): 801-811 (in Chinese). |
[7] | LI J, ZHANG S W, CHEN C C, et al. Removal of Cu (Ⅱ) and fulvic acid by graphene oxide nanosheets decorated with Fe3O4 nanoparticles[J]. Acs Applied Materials & Interfaces, 2012, 4(9): 4991-5000. |
[8] | LI J, CHEN C C, ZHANG S W, et al. Surface functional groups and defects on carbon nanotubes affects adsorption-desorption hysteresis of metal cations and oxoanions in water[J]. Environmental Science-Nano, 2014, 5(5): 488-495. |
[9] | 王姣娜, 贺欢, 李秀艳, 等. PA6@LDH纳米纤维膜的制备及其除Cr (Ⅱ)性能的研究[J]. 高分子学报, 2015(7): 778-785. WANG Jiaona, HE Huan, LI Xiuyan, et al. Preparation of PA6@LDH nanofibrous membrane and its high Cr(Ⅱ)-removal perpormance[J]. Acta Polymerica Sinica, 2015(7): 778-785 (in Chinese). |
[10] | CHEN C C, WANG X K. Adsorption of Ni(Ⅱ) from aqueous solution using oxidized multiwall carbon nanotubes[J]. Industrial & Engineering Chemistry Research, 2006, 45(26): 9144-9149. |
[11] | 陈华军, 王锐, 丁梧秀, 等. 聚乙二醇聚合度对介孔η-AlO纤维形貌及吸附能力的影响[J]. 复合材料学报, 2014, 31(3): 845-850. CHEN Huajun, WANG Rui, DING Wuxiu, et al. Effect of polymerization degree of polyethylene glycol on microtopography and adsorbability of mesoporous η-AlO fibers[J]. Acta Materiae Compositae Sinica, 2014, 31(3): 845-850 (in Chinese). |
[12] | 张慧敏, 阮弦, 胡勇有, 等. 静电纺壳聚糖/聚乙烯醇纳米纤维膜对Cu2+、 Ni2+及Cd2+的吸附特性[J]. 环境科学学报, 2015, 35(1): 184-193. ZHANG Huimin, RUAN Xian, HU Yongyou, et al. Adsorptive characteristics of Cu2+, Ni2+ and Cd2+ on chitosan/poly(vinyl alcohol) nanofiber[J]. Acta Scientiae Circumstantiae, 2015, 35(1): 184-193 (in Chinese). |
[13] | ISLAM M S, RAHAMAN M S, YEUM J H. Electrospun novel super-absorbent based on polysaccharide-polyvinyl alcohol-montmorillonite clay nanocomposites[J]. Carbohydrate Polymers, 2015, 115: 69-77. |
[14] | 张双虎, 董相延, 徐淑芝, 等. 静电纺丝技术制备TiO2/SiO2复合中控纳米纤维与表征[J]. 复合材料学报, 2008, 25(3): 138-143. ZHANG Shuanghu, DONG Xiangting, XU Shuzhi, et al. Preparation and characterization of TiO2/SiO2 composite hollow nanofibers via an electrosinning technique[J]. Acta Materiae Compisitae Sinica, 2008, 25(3): 138-143 (in Chinese). |
[15] | 马贵平, 方大为, 聂俊, 等. 电纺丝制备纳米纤维及其应用[J]. 材料科学与工程学报, 2012, 30(2): 321-323. MA Guiping, FANG Dawei, NIE Jun, et al. Electropianning nanofibers and their aoolication[J]. Journal of Materials Science & Engieering, 2012, 30(2): 321-323 (in Chinese). |
[16] | MERCANTE L A, PAVINATTO A, IWAKI L E, et al. Electrospun polyamide 6/poly(allylamine hydrochloride) nanofibers functionalized with carbon nanotubes for electrochemical detection of dopamine[J]. Acs Applied Materials & Interfaces, 2015, 7(8): 4784-4790. |
[17] | 张晓涛, 王喜明. 木质纤维素/纳米蒙脱土复合材料对废水中Cu(Ⅱ)的吸附及解吸[J]. 复合材料学报, 2015, 32(2): 385-394. ZHANG Xiaotao, WANG Ximing. Adsorption and desorption of Cu(Ⅱ) in wastewater by lignocellulose/nano-montmorillonite composites[J]. Acta Materiae Compositae Sinica, 2015, 32(2): 385-394 (in Chinese). |
[18] | XIE Y Y, JIE W, WANG M Z, et al. Fabrication of fibrous amdioxime-functionalized mesoporous silica microsphere and its selectively adsorption property for Pb2+ in aqueous solution[J]. Journal of Hazardous Materials, 2015(297): 66-73. |
[19] | PIRZADA T, ARVIDSON S A, SAQUING C D, et al. Hybrid silica-PVA nanofibers via sol-gel electrospinning[J]. Langmuir, 2012, 28(13): 5834-5844. |
[20] | WANG H, ZHANG P, MA X, et al. Preparation, characterization of electrospun meso-hydroxylapatite nanofibers and their sorptions on Co(Ⅱ)[J]. Journal of Hazardous Materials, 2014, 265(2): 158-165. |
[21] | SRIVASTAVA V C, MALL I D, MISHRA I M. Removal of cadmium (Ⅱ) and zinc (Ⅱ) metal ions from binary aqueous solution by rice husk ash[J]. Colloids & Surfaces A: Physicochemical & Engineering Aspects, 2008, 312(2-3): 172-184. |
[22] | ZHAO R, LI X, SUN B, et al. Preparation of phosphorylated polyacrylonitrile-based nanofiber mat and its application for heavy metal ion removal[J]. Chemical Engineering Journal, 2015(268): 290-299. |
[23] | YANG H, XU R, XUE X, et al. Hybrid surfactant-templated mesoporous silica formed in ethanol and its application for heavy metal removal[J]. Journal of Hazardous Materials, 2008, 152(2): 690-698. |
[24] | KOSKI A, YIM K, SHIVKUMAR S. Effect of molecular weight on fibrous PVA produced by electrospinning[J]. Materials Letters, 2004, 58(3-4): 493-497. |
[25] | RAVAL N P, SHAH P U, SHAH N K. Adsorptive removal of nickel Ⅱ: Ions from aqueous environment: A review[J]. Journal of Environment Management, 2016(179): 1-20. |
[26] | 张帆, 李菁, 谭建华, 等. 吸附法处理重金属废水的研究进展[J]. 化工进展, 2013(11): 2749-2756. ZHANG Fan, LI Jing, TAN Jianhua, et al. Advance of the treatment of heavy metal wastewater by adsorption[J]. Chemical Industry and Engineering Progress, 2013(11): 2749-2756. |