用户名: 密码: 验证码:
壳聚糖基纳米材料在水处理应用的研究进展
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Progress of Chitosan Nano-substrate in Water Treatment
  • 作者:殷晓春 ; 师玉卓 ; 思广慧 ; 王新华
  • 英文作者:YIN Xiao-chun;SHI Yu-zhuo;SI Guang-hui;WANG Xin-hua;College of Public Health, Gansu University of Traditional Chinese Medicine;Collaborative Innovation Center of Traditional Chinese Medicine for Prevention and Control of Environmental and Nutrition-Related Diseases in Northwest China, Gansu University of Chinese Medicine;
  • 关键词:壳聚糖基纳米材料 ; 印染废水 ; 重金属离子 ; 水处理
  • 英文关键词:Chitosan nano-substrate;;Printing and dyeing wastewater;;Heavy metal ion;;Water treatment
  • 中文刊名:GFZT
  • 英文刊名:Polymer Bulletin
  • 机构:甘肃中医药大学公共卫生学院;西部环境营养相关性疾病的中医药防控2011协同创新中心甘肃中医药大学;
  • 出版日期:2019-03-15
  • 出版单位:高分子通报
  • 年:2019
  • 期:No.239
  • 基金:甘肃省自然科学基金项目(17JR5RA170);; 兰州市科技计划项目(2017-4-77)
  • 语种:中文;
  • 页:GFZT201903002
  • 页数:12
  • CN:03
  • ISSN:11-2051/O6
  • 分类号:20-31
摘要
由于传统吸附剂材料受尺寸和比表面积限制等问题的局限,人们开始开发新型的吸附材料,通过对壳聚糖和纳米材料结构与性能的研究,已有多种壳聚糖基纳米材料被广泛应用。本文简述了近年来壳聚糖基纳米材料在净化饮用水、处理废水中染料及重金属离子的应用。并对目前存在的问题以及今后的发展方向进行了总结,为进一步开发性能优良的吸附材料奠定了理论基础。
        Due to the limitation of size and specific surface area of traditional adsorbent materials, itisurgentto seek new types of adsorbent materials. Through the study of the structure and properties of chitosan and nanomaterials, a variety of chitosan nano-substrate has been widely used. In this paper, the application of chitosan nanomaterials in purifying drinking water was described briefly, and the progress of chitosan nano-materials for removal of dyes and heavy metal ions from wastewater in recent years was reviewed. The current problems and future development of chitosan-nanomaterialswere summarized, which lays a theoretical foundation for the further development of excellent adsorption materials.
引文
[1] Mekonnen M M,Hoekstra A Y.Sci Adv,2016,2:1~6.
    [2] Guitton M J.Lancet Planet.Health,2017,1:46~47.
    [3] Yang X Z,Shi Z,Liu L S.Chem Eng J,2015,260:444~453.
    [4] Ming T,De_Richter R,Liu W,Caillol S.Renew Sust Energ Rev,2014,31(31):792~834.
    [5] Oller I,Malato S,Sánchezpérez J A.Sci Total Environ,2011,409(20):4141~4166.
    [6] Dutta J.Springer Cham,2015:1029~1063.
    [7] Fu F,Wang Q.Environ Manage,2011,92 (3):407~418.
    [8] Fan C,Li K,Li J,Ying D,Wang Y,Jia J.J Hazard Mater,2016,326:211~220.
    [9] Fan L,Zhang Y,Luo C,Lu F,Qiu H,Sun M.Int J Biol Macromol,2012,50:444~450.
    [10] Rao M M,Ramana D K,Seshaiah K,Wang M C,Chien S W.J Hazard Mater,2009,166(2):1006~1013.
    [11] Chen H,Wang X,Li J,Wang X.Mater Chem A,2015,3(11):6073~6081.
    [12] Ling C,Liu F Q,Long C,Chen T P,Wu Q Y,Li A M.Chem Eng J,2014,236(2):323~331.
    [13] Khin MM,Nair AS,Babu VJ,Murugan R,Ramakrishna S.Energy Envrion Sci,2012,5(8):8075~8019.
    [14] Wang L,Xing R,Liu S,Cai S,Yu H,Feng H,Li R,Li P.Int J Biol Macromol,2010,46(5):524~528.
    [15] Seidi F,Haghdust S,Saedi S,Xu X.Macromol Res,2016,24(1):1~8.
    [16] Szygu?a A,Guibal E,Palacín MA,Ruiz M,Sastre A M.J Environ Manage,2009,90(10):2979~2986.
    [17] Sakkayawong N,Thiravetyan P,Nakbanpote W.J Colloid Interf Sci,2005,286(1):36~42.
    [18] Nogueira V,Lopes I,Rocha-Santos T,Gonc F,Pereira R.Aquat Toxicol,2015,165:172~178.
    [19] Rajendran R,Abirami M,Prabhavathi P,Kanimozhi B.Afr J Biotechnol,2015,14(11):930~936.
    [20] Ngah W S W,Teong L C,Hanafiah M A K M.Carbohyd Polym,2011,83(4):1446~1456.
    [21] Bilal M,Asgher M.Chem Cent J,2015,9(1):1~14.
    [22] Zuo X J.Ind Eng Chem Res,2014,53:1249~1255.
    [23] Abd-Elhakeem M A,Alkhulaqi T A.J Environ Nanotechnol,2014,3(4):17~20.
    [24] Das R,Vecitis CD,Schulze A,Cao B,Ismail AF,Lu X,Chen J,Ramakrishna S.Chem Soc Rev,2017,46(30):6946~7020.
    [25] Yu Z L,Yang N,Kalkavoura V A,Qin B,Ma Z Y,Xing W Y,Qian C,Antonietti M,Yu S H.Angew Chem Int Ed Engl,2018,57(17):4538~4542.
    [26] Alsabagh A M,Fathy M,Morsi R E.Rsc Adv,2015,5(69):55774~55783.
    [27] Ali S W,Joshi M,Rajendran S.J Comput Theor Nanos,2010,3(4):452~460.
    [28] Mali N,Wavikar P,Vavia P.Aaps Pharmscitech,2015,16(1):59~66.
    [29] Kurniawan T A,Sillanp??M E,Sillanp?? M.Crit Rev Env Sci Tec,2012,42(12):1233~1295.
    [30] GuoX,Ji H,Li C,Gao Y,Ding H,Tang L,Feng J.Environ Sci Pollut R,2016,24(4):1~14.
    [31] Gao W,Chen Z,Li Y,Pan Y,Zhu J,Guo S,Hu L,Huang J.Water,2018,10(1):82.
    [32] Abd-Elhakeem M A,Alkhulaqi T A,Basaad F S.Environ Nanotechnol,2014,5(2):117~121.
    [33] Wang Y,El-Deen A G,Peng L,Bernice H L,Zanru G,Mya M K,Yogesh S V,Jing W,Rebecca G H,Remko M B,Kimberly AK,David L B,Hong WD,Chan-Park M B.Acs Nano,2015,9(10):10142~10157.
    [34] Samadder S R.Ksce J Civ Eng,2010,14(5):681~691.
    [35] Morales-Arredondo I,Rodríguez R,Armienta M A,Villanueva-Estrada RE.Hydrogeol J,2016,24(4):1~16.
    [36] Wang J,Xu W-H,Chen L,Huang X-J,Liu J-H.Chem Eng J,2014,251:25~34.
    [37] Sharma R,Singh N,Gupta A,Tiwari S,Tiwaric S K,Dhakate S R.J Mater Chem,2014,2:16669~16677.
    [38] Kwok K C M,Koong L F,Ansari T A,Mckay G.Environ Sci Pollut R,2018(5):1~9.
    [39] Kango S,Kumar R.Environ Earth S,2016,75(5):1~12.
    [40] Nisticò R,Celi L R,Bianco P A,Carlos L,Magnacca G.J Hazard Mater,2018,342:260~269.
    [41] Brionroby R,Gagnon J,Deschênes J,Chabot B.Pure Appl Chem,2017,90(1):63~77.
    [42] Pandey N,Bhatt R.Int J Biol Macromol,2017,106:258~265.
    [43] Dar M A,Sankar K,Dar I A.Environ Monit Assess,2011,173(1/4):955~968.
    [44] Meenakshi,Maheshwari R C.J Hazard Mater,2006,137(1):456~463.
    [45] Piscopo V,Armiento G,Baiocchi A,Mazzuoli M,Nardi E,Piacentini S M,Proposito M Spaziani F.Hydrogeol J,2018,26(4):1027~1045.
    [46] Liu H,Deng S,Li Z,Yu G,Huang J.J Hazard Mater,2010,179(1/3):424~430.
    [47] Pandi K,Viswanathan N.J Chitin Chitosan Sci,2015,3(1):39~45(7).
    [48] Hu H,Yang L,Lin Z,Xiang X,Jiang X,Hou L.Int J Biol Macromol,2018,114:256~262.
    [49] Shen C,Wu L,Chen Y,Li S,Rashid S.Chem Eng J,2016,303:391~400.
    [50] Prasad K S,Amin Y,Selvaraj K.J Hazard Mater,2014,276(9):232~240.
    [51] Thakre D,Rayalu S,Kawade R,Meshram S,Subrt J,Labhsetwar N.J Hazard Mater,2010,180(1):122~130.
    [52] Muthu P S,Meenakshi S.Int J Biol Macromol,2016,85:16~22.
    [53] Natarajan S,Lakshmi D S,Bhuvaneshwari M,Iswarya V,Mrudula P,Chandrasekarana N,Mukherjee A.RSC Adv,2017,7:27645~27655.
    [54] Fan M,Gong L,Huang Y,Wang D,Gong Z.Sci Total Environ,2018,613~614:1317~1323.
    [55] Elewa M M,El-Shafei A A,Moneer A A,Naim M M.Desalin Water Treat,2016,57(48/49),23293~23307.
    [56] Munusamy M A,Kumar S S,Rajan M,Abdullah A.Prog Biosci Bioeng,2017,1(1):36~43.
    [57] Pramanik A,Jones S,Gao Y,Sweet C,Begum S,Sweet C,Begum S,Shukla M K,Buchanan J P,Moserb R D,Ray P C.J Mater Chem B,2017,5:9522~9531.
    [58] Maddigpu P R,Sawant B,Wanjari S,Goel M D,Vione D,Dhodapkar R S,Rayalu S.J Hazard Mater,2017,343:157~165.
    [59] Skariyachan S,Mahajanakatti A B,Grandhi N J,Prasanna A,Sen B,Sharma N.Environ Monit Assess,2015,187(5):279.
    [60] Su H C,Liu Y S,Pan C G,Chen J,He L Y.Sci Total Environ,2018,s 616/617:453~461.
    [61] Xu L K,Ouyang W Y,Qian Y Y,Su C,Su J Q,Chen H.Environ Pollut,2016,213:119~126.
    [62] Schwermer C U,Krzeminski P,Wennberg A C,Vogelsang C,Uh l W.Water Sci Technol,2018,77(4):1115~1126.
    [63] Morsi R E,Alsabagh A M,Nasr S A,Zaki M M.Int J Biol Macromol,2017,97:264~269.
    [64] Kamal T,Islam M U,Khan S B,Asiri A M.Int J Biol Macromol,2015,81:584~590.
    [65] Kamal T,Anwar Y,Khan S B,Chani M T,Asiri A M.Carbohydr Polym,2016,148:153~160.
    [66] Rasoulifard M H,Seyed Dorraji M S,Mozafari V.Environ Prog Sustain,2016,36(1):66~72.
    [67] Wu X,Shi H,Yang X.J Green Sci Technol,2015,6;173~175.
    [68] Zhu X,Zhang Z,Yan G.J Water Environ Technol,2016,14(2):96~105.
    [69] Wu X L,Xiao P,Zhong S,Fang K,Lin H,Chen J.Rsc Adv,2017,7(45):28145~28151.
    [70] Wu H J,Gao H Y,Yang Q X,Zhang H L,Wang D S,Zhang W J,Yang X F.Chem Eng J,2018,63 (1):159~168.
    [71] Blachnio M,Budnyak T M,Derylomarczewska A,Marczewski A W,Tertykh V A.Langmuir,2018,34 (6):2258~2273.
    [72] Jin Q,Li Y,Yang D,Cui J.Rsc Adv,2018,8(3):1255~1264.
    [73] Wu D,Hu L,Wang Y,Wei Q,Yan L.J Colloid Interf Sci,2018,523:56~64.
    [74] Zhang Z,Xiao F,Guo Y,Wang S,Liu Y.Acs Appl Mater Inter,2013,5(6):2227~2233.
    [75] SchulerE,Gustavsson AK,Hertenberger S,Sattler K.Sol Energy,2013,96(4):220~226.
    [76] Zhao YL,Tao CG,Xiao G,Su H J.Rsc Adv,2017,7(18):11211~11221.
    [77] Rengifo-Herrera J A,Pizzio L R,Pinotti A,Silva D A M,Mendoza E.J Mol Catal,2018,448:1~9.
    [78] Gao J,Wei W,Shi MJ,Han HK,Lu J W,Xie J M.J Mater Sci,2016,51(9):4481~4494.
    [79] Wu Y,Wang Y J,Luo G S,Da Y Y.Bioresource Technol,2009,100(14):3459~3464.
    [80] Ma W,Ya F Q,Han M,Wang R.J Hazard Mater,2007,143(1):296~302.
    [81] Ramalingam B,Khan M M R,Mondal B,Mandal A B,Das S K.ACS Sustain Chem Eng,2015,3(9):2291~2302.
    [82] Li Y,Zhou Y,Nie W,Song L,Chen P.J Porous Mat,2015,22(5):1~10.
    [83] Jin Q,Li Y,Yang D,Cui J.Rsc Adv,2018,8(3):1255~1264.
    [84] Squadrone S,Brizio P,Stella C,Prearo M,Pastorino P,Serracca L,Ercolini C,Abete M C.Environ Pollut,2016,215:77~83.
    [85] Kyzas G Z,Deliyanni E A.Molecules,2013,18(6):6193~214.
    [86] Ahmed M A,Ali S M,El-Dek S I,Galal A.Mater Sci Eng B-Adv,2013,178(10):744~751.
    [87] Fu F,Wang Q.J Environ Manage,2011,92(3):407~418.
    [88] Vunain E,Mishra A K,Mamba B B.Int J Biol Macromol,2016,86:570~586.
    [89] Xiao C,Liu X,Mao S,Zhang L,Lu J.Appl Surf Sci,2017,394:378~385.
    [90] Jin X,Li K,Ning P,Bao S,Tang L.Water Air Soil Pollut,2017,228(8):302.
    [91] Li K,WangY,Huang M,Yan H,Yang H,Xiao S,Li A.J Colloid Interf Sci,2015,455:261~270.
    [92] Son E B,Poo K M,Mohamed H O,Choi Y J,Cho W C,Chae K J.Bioresource Technol,2018,259:381~387.
    [93] Monier M,Ayad D M,Abdel-Latif D A.Colloid Surface B,2012,94(7):250~258.
    [94] Anitha T,Kumar P S,Kumar K S,Sriram K,Ahmed J F.Desalin Water Treat,2016,57(29):13711~13721.
    [95] Beheshti H,Irani M,Hosseini L,Rahimi A,Aliabadi M.Chem Eng J,2016,284:557~564.
    [96] Yu P,Wang H Q,Bao R Y,Liu Z,Yang W.Acs Sustain Chem Eng,2017,5(2):1557~1566
    [97] Sivakami M S,Gomathi T,Venkatesan J,Jeong H S,Kim S K,Sudha P N.Int J Biol Macromol,2013,57(6):204~212.
    [98] Chen A,Zeng G,Chen G,Hu X,Yan M,Guan S,Shang C,Lu L,Zou Z,Xie G.Chem Eng J,2012,191(3):85~94.
    [99] Hou C,Zhao D,Zhang S,Wang Y.Colloid Polym Sci,2018,296(3):547~555.
    [100] Fu Y,Huang Y,Hu J,Zhang Z.Water Sci Technol,2018,77(5):1363~1371.
    [101] Hallaji H,Keshtkar A R,Moosavian M A.J Taiwan Inst C,2015,46:109~118.
    [102] Nguyen V C,Pho Q H.The Scientific World J,2014,36(4):314~315.
    [103] Sureshkumar V,Daniel S C G K,Ruckmani K,Sivakumar M.Appl Nanosci,2016,6(2):277~285.
    [104] Mohammad A M,Eldin T A S,Hassan M A,El-Anadouli B E.Arab J Chem,2017,10:683~690.
    [105] Aliabadi M,Irani M,Ismaeili J,Najafzadeh S.J Taiwan Inst C,2014,45(2):518~526.
    [106] Lakhdhar I,Mangin P,Chabot B.J Water Process Eng,2015,7:295~305.
    [107] Sun S,Tang Y,Fu Q,Liu X,Du W.J Sep Sci,2015,35(7):893~900.
    [108] Ghaemi N,Daraei P,Akhlaghi F S.Carbohydr Polym,2018,191:142~151.
    [109] Cai Y,Wu C,Liu Z,Zhang L,Chen L,Zhang L,Chen L,Wang J,Wang X,Yang S,Wang S.Environ Sci-Nano,2017,4:1876~1886.
    [110] Alipour D,Keshtkar A R,Moosavian M A.Appl Surf Sci,2016,366:19~29.
    [111] Rafigh S M,Heydarinasab A.Acs Sustain Chem Eng,2017,5 (11):10379~10386.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700