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材料导报  2019, Vol. 33 Issue (Z2): 526-532    
  高分子与聚合物基复合材料 |
聚合物吸附剂的制备及在水体重金属污染净化应用中的研究进展
蒋芳, 雷婷, 李声剑, 任子旋, 王利莲, 刘萌, 汤立红, 王世雄
云南大学化学科学与工程学院,昆明 650091
Research Progress in Preparation of Polymer Adsorbents and Purification of Heavy Metal Pollution in Water Body
JIANG Fang, LEI Ting, LI Shengjian, REN Zixuan, WANG Lilian, LIU Meng, TANG Lihong, WANG Shixiong
School of Chemical Science and Technology, Yunnan University, Kunming 650091
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摘要 水污染严重威胁着全球淡水资源的安全。在众多污染物中,重金属污染致命且难以去除。水环境中重金属主要以溶解态和颗粒态存在,其迁移与转化过程复杂多样,几乎包括水体中各种物理、化学和生物过程。重金属还易被生物摄食吸收、浓缩和富集,通过食物链逐级放大,达到危害顶级生物的水平。因此,对重金属进行净化显得尤为重要。目前,吸附技术是使用最为广泛、对环境最为友好的一种净化方法。其中研究较热的一类新型吸附剂——高分子聚合物(如改性天然聚合物、高分子硫聚合物、地质聚合物和导电聚合物等),由于其制备简单、结构稳定、可个性化定制,对重金属具有高效的吸附作用,因此它的应用前景较广阔。基于此,本文对高分子聚合物的合成方法以及去除重金属污染物的应用研究进展进行总结,并对其发展前景做一些展望。
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蒋芳
雷婷
李声剑
任子旋
王利莲
刘萌
汤立红
王世雄
关键词:  高分子聚合物  吸附剂  重金属  水体污染    
Abstract: Water pollution is a serious threat to the safety of global freshwater resources. Among many pollutants, heavy metal pollution is fatal and difficult to remove.In the water environment, heavy metals are mainly in the form of particles, and their migration and transformation processes are complex and diverse, including almost all physical, chemical and biological processes in water. Heavy metals are also easily absorbed, concentrated and enriched by biological feeding, and are scaled up through the food chain to reach levels that harm top organisms. Among the va-rious heavy metal purification methods currently studied, the adsorption technology has the advantages of wide material source, simple operation, high removal rate, recyclability and environmental friendliness. Among them, a new type of adsorbent, a high molecular polymer (such as modified natural polymer, high molecular sulfur polymer, geopolymer and conductive polymer), is simple to prepare, structurally stable, and customi-zable, and it has high adsorption capacity for heavy metals and has broad application prospects. In this paper, the synthesis research methods and the application research progress of removing heavy metal pollutants are summarized, and some prospects are made for its development prospects.
Key words:  high-molecular polymer    adsorbent    heavy metal    water pollution
               出版日期:  2019-11-25      发布日期:  2019-11-25
ZTFLH:  O61  
基金资助: 云南省自然科学基金面上项目(2018FB014);昆明市科技局环保示范类重大项目(2017-1-S-12305)
通讯作者:  wangshixiong@ynu.edu.cn   
作者简介:  蒋芳,1997年生,2017年6月在北京化工大学获得应用化学专业学士学位。云南大学硕士研究生,硕士期间参与发表论文3篇。在导师的带领下参与云南省自然科学基金面上项目(2018FB014)以及昆明市科技局环保示范类重大项目(2017-1-S-12305)。主要研究方向为重金属水体污染的治理。
王世雄,云南大学副研究员,2018年入选云南大学“东陆中青年骨干教师”人才项目。2009年硕士毕业后留校任教,并于2016年获得云南大学博士学位。以第一或通讯作者在国内外学术期刊上发表论文近20篇,申请国家发明专利2项。现主要围绕高原湖泊水体修复技术开展砷污染和富营养化方面的基础理论和应用研究,主持包括中国科协采集工程项目、云南省教育厅教师类项目、云南省科技厅自然科学基金、云南大学自然科学基金项目以及省部共建国家重点实验室开放课题基金等。
引用本文:    
蒋芳, 雷婷, 李声剑, 任子旋, 王利莲, 刘萌, 汤立红, 王世雄. 聚合物吸附剂的制备及在水体重金属污染净化应用中的研究进展[J]. 材料导报, 2019, 33(Z2): 526-532.
JIANG Fang, LEI Ting, LI Shengjian, REN Zixuan, WANG Lilian, LIU Meng, TANG Lihong, WANG Shixiong. Research Progress in Preparation of Polymer Adsorbents and Purification of Heavy Metal Pollution in Water Body. Materials Reports, 2019, 33(Z2): 526-532.
链接本文:  
http://www.mater-rep.com/CN/  或          http://www.mater-rep.com/CN/Y2019/V33/IZ2/526
1 Ahmaruzzaman M. Advances in Colloid and Interface Science,2011,166(1),36.
2 Dorota Kołodyńska. Environmental Science & Pollution Research,2013,20(9),5939.
3 Mark S S, Crusberg T C, Dacunha C M, et al. Biotechnology Progress,2010,22(2),523.
4 Ngah W, Hanafiah M. Bioresour Technology,2008,99(10),3935.
5 Duan C, Zhao N, Yu X, et al. Cellulose,2013,20(2),849.
6 Singha A S, Guleria A. Separation Science & Technology,2014,49(16),2557.
7 Feng N, Guo X, Liang S, et al. Journal of Hazardous Materials,2011,185(1),49.
8 Bhatnagar A, Minocha A K, Sillanpää M. Biochemical Engineering Journal,2010,48(2),18.
9 Verma A, Chakraborty S, Basu J K. Separation & Purification Technology,2006,50(3),336.
10 Kelly-Vargas K, Cerro-Lopez M, Reyna-Tellez S, et al. Physics & Che-mistry of the Earth,2012,37-39(3),26.
11 Gaballah I, Goy D, Allain E, et al. Metallurgical & Materials Transactions B,1997,28(1),13.
12 Li Z, Teng T T, Alkarkhi A F M, et al. Water Air & Soil Pollution,2013,224(4),1.
13 Reddy D H K, Seshaiah K, Reddy A V R, et al. Carbohydrate Polymers,2012,88(3),1077.
14 Sun X, Zhu J, Gu Q, et al. Colloids & Surfaces A Physicochemical & Engineering Aspects,2018,S0927775718305351-.
15 Hasell T, Parker D J, Jones H A, et al. Chemical Communications,2016,52(31),5383.
16 Thielke M W, Bultema L A, Brauer D D, et al. Polymers,2016,8(7),266.
17 Worthington M, Kucera R, Albuquerque I, et al. Chemistry,2017,23(64).
18 Chung W J, Griebel J J, Kim E T, et al. Nature Chemistry,2013,5(6),518.
19 Ahmaruzzaman M. Progress in Energy & Combustion Science,2010,36(3),327.
20 Morsy M S, Alsayed S H, Al-Salloum Y, et al. Arabian Journal for Science & Engineering,2014,39(6),4333.
21 Rees C A, Provis J L, Lukey G C, et al. Langmuir the ACS Journal of Surfaces & Colloids,2007,23(17),9076.
22 Sumajouw D M J, Hardjito D, Wallah S E, et al. Journal of Materials Science,2007,42(9),3124.
23 Palomo A, Blanco-Varela M T, Granizo M L, et al. Cement & Concrete Research,1999,29(7),997.
24 Comrie D C, Kriven W M. Advances in Ceramic Matrix Composites IX, Volume 153.USA 2012.
25 Cristelo N, Glendinning S, Miranda T, et al. Construction & Building Materials,2012,36(4),727.
26 Zhang Z, Yao X, Zhu H. Applied Clay Science,2012,49(1),1.
27 Nasvi M C M, Ranjith P G, Sanjayan J. Applied Energy,2013,102(2),1391.
28 Zhang Z, Wang K, Mo B, et al. Energy & Buildings,2015,87,220.
29 Duxson P, Fernández-Jiménez A, Provis J L, et al. Journal of Materials Science,2007,42(9),2917.
30 Park J H, Cho J S, Yong S O, et al. Archives of Agronomy & Soil Science,2016,62(5),617.
31 Lee N K, Khalid H R, Lee H K. Microporous & Mesoporous Materials,2017,242,238.
32 O’Connor S J, Mackenzie K J D, Smith M E, et al. Journal of Materials Chemistry,2010,20(45),10234.
33 Sarkar C, Basu J K, Samanta A N. Journal of Water Process Engineering,2017,17,237.
34 Ge Y, Yuan Y, Wang K, et al. Journal of Hazardous Materials,2015,299,711.
35 I·lknur Kara, Yilmazer D, Akar S T. Applied Clay Science,2017,139,54.
36 Yousef R I, Eleswed B, Alshaaer M, et al. Journal of Hazardous Mate-rials,2009,165(1),379.
37 El-Eswed B I, Yousef R I, Alshaaer M, et al. International Journal of Mineral Processing,2015,137(34),34.
38 Alshaaer M, El-Eswed B, Yousef R I, et al. Journal of Saudi Chemical Society,2016,20,S85.
39 Alshaaer M, Zaharaki D, Komnitsas K. Desalination & Water Treatment,2015,56(2),338.
40 Singhal A, Gangwar B P, Gayathry J M. Applied Clay Science,2017,150,106.
41 Novais R M, Buruberri L H, Seabra M P, et al. Journal of Hazardous Materials,2016,318,631.
42 Liu Y, Yan C, Zhang Z, et al. Fuel,2016,185,181.
43 Ge Y, Yuan Y, Wang K, et al. Journal of Hazardous Materials,2015,299,711.
44 Tovarcarrillo K L, Nakasone K, Sugita S, et al. Material Science & Engineering C-Materials for Biological Applications,2014,42,808.
45 Mužek M N, Svilovic' S, Zelic' J. Separation Science,2015,51(18),2868.
46 韩永刚,王海燕.化工新型材料,2013
47 Jafari M,Esfandian H,Alizadeh M, et al. Journal of Vinyl and Additive Technology,2012,18,250.
48 Saleh M M, Weidlich C, Mangold K M, et al. Journal of Applied Electrochemistry,2006,36(2),179.
49 Abdi M M, Kassim A, Mahmud H N M E, et al. Journal of Materials Science,2009,44(14),3682.
50 Deng S, Bai R. Water Research,2004,38(9),2424.
51 Esfandian H, Jafari M, Alizadeh M, et al. Journal of Vinyl & Additive Technology,2012,18(4),250.
52 Katsoyiannis I A, Zouboulis A I. Water Research,2002,36(20),5141.
53 Tran Van Khai, Han Gil Na, Dong Sub Kwak, et al. Journal of Materials Chemistry,2012,22(34),17992.
54 Mahmud H N M E, Hosseini S, Yahya R B, et al. Key Engineering Materials,2013,594-595,793.
55 Katal R, Hasani E, Farnam M, et al. Journal of Chemical & Engineering Data,2012,57(2),374.
56 Seid L, Chouder D, Maouche N, et al. Journal of the Taiwan Institute of Chemical Engineers,2014,45(6),2969.
57 Hasani T, Eisazadeh H. Synthetic Metals,2013,175(175),15.
58 Karthik R, Meenakshi S. International Journal of Biological Macromolecules,2015,78,157.
59 Ballav N, Choi H J, Mishra S B, et al. Journal of Industrial & Enginee-ring Chemistry,2014,20(6),4085.
60 Li S, Lu X, Xue Y, et al. Plos One,2012,7(8),e43328.
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