Please wait a minute...
材料导报  2023, Vol. 37 Issue (9): 21090197-10    https://doi.org/10.11896/cldb.21090197
  无机非金属及其复合材料 |
含重金属离子废水处理技术研究进展
杨旭1, 历新宇1, 周娟苹1, 姜男哲1,2,*
1 延边大学理学院,吉林 延吉 133000
2 延边大学工学院,吉林 延吉 133000
Technological Advances in the Removal of Heavy Metal Ions from Wastewater
YANG Xu1, LI Xinyu1, ZHOU Juanping1, JIANG Nanzhe1,2,*
1 School of Science, Yanbian University, Yanji 133000, Jilin, China
2 College of Engineering, Yanbian University, Yanji 133000, Jilin, China
下载:  全 文 ( PDF ) ( 5270KB ) 
输出:  BibTeX | EndNote (RIS)      
摘要 含重金属离子的废水的排放是水体污染的主要来源之一,带来了严重的水资源危机。为了解决上述问题,实现我国水资源健康发展,亟待开发高效可行的含重金属离子废水处理技术。近年来,主要的处理技术有沉淀技术、膜过滤技术、吸附技术、光催化技术以及微流道技术等。本文对几种常见的重金属离子废水处理技术的研究现状进行了详细介绍,提出了各项技术在实际应用中的欠缺,展望了各项技术在含重金属离子废水处理领域的发展趋势,以期为开发出经济、高效的新型含重金属离子废水处理技术提供有益参考。
服务
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章
杨旭
历新宇
周娟苹
姜男哲
关键词:  含重金属离子废水  沉淀技术  膜过滤技术  吸附技术  光催化技术  微流道技术    
Abstract: The discharge of wastewater containing heavy-metal ions is the main source of water pollution, which has caused serious water resource crisis. Therefore, the preparation of new materials with an adequate adsorption effect, simple operation, and recoverability has always attracted research interest. In recent years, many methods, such as precipitation, membrane filtration, adsorption, photocatalysis, and microfluidics, have been reported for the removal of heavy-metal ions from wastewater. This paper comprehensively details the research status and development trend of several common heavy-metal-ion wastewater treatment technologies and outlines the shortcomings of each technology in practical application. It aims to provide a useful basis for the development of economical and efficient new wastewater treatment technologies.
Key words:  heavy metal ion wastewater    precipitation technology    membrane filtration technology    adsorption technology    photocatalytic technology    microfluidic technology
出版日期:  2023-05-10      发布日期:  2023-05-04
ZTFLH:  X703.5  
基金资助: 国家自然科学基金(21661031;21263026)
通讯作者:  *姜男哲,延边大学工学院教授、博士研究生导师。1996年6月本科毕业于北京化工大学,2009年7月在韩国仁荷大学化学系取得理学博士学位。回国后主要从事沸石分子筛的绿色合成及工业催化应用的研究工作。近年来,以第一或通信作者身份在国内外杂志发表论文30余篇,包括 Microporous and Mesoporous Materials、Chinese Journal of Catalysis、Applied Catalysis A:General、Catalysis Letter等。nzjiang@ybu.edu.cn   
作者简介:  杨旭,2019年6月于唐山师范学院获得工学学士学位。现为延边大学理学院化学系硕士研究生,在姜男哲教授的指导下进行研究。目前主要研究领域为固体废弃物的高附加值利用。
引用本文:    
杨旭, 历新宇, 周娟苹, 姜男哲. 含重金属离子废水处理技术研究进展[J]. 材料导报, 2023, 37(9): 21090197-10.
YANG Xu, LI Xinyu, ZHOU Juanping, JIANG Nanzhe. Technological Advances in the Removal of Heavy Metal Ions from Wastewater. Materials Reports, 2023, 37(9): 21090197-10.
链接本文:  
http://www.mater-rep.com/CN/10.11896/cldb.21090197  或          http://www.mater-rep.com/CN/Y2023/V37/I9/21090197
1 Wu W, Dong J L, Zhang J S, et al. Materials Reports A:Review Papers, 2020, 34(9), 17124(in Chinese).
武伟, 董季玲, 张锦山, 等. 材料导报:综述篇, 2020, 34(9), 17124.
2 Yang S Y, Taylor D, Yang D, et al. Environmental Pollution, 2021, 287(15), 117611.
3 Jessica B, Emmanuei S, Renald B. Heliyon, 2020, 6(9), e04691.
4 Yu T, Jiang T Y, Liu X, et al. China geology, 2021, 48(2), 460(in Chinese).
余涛, 蒋天宇, 刘旭, 等. 中国地质, 2021, 48(2), 460.
5 Zhang C, Yu Z H. Journal of Functional Materials, 2019, 50(7), 07111(in Chinese).
张聪, 余志辉. 功能材料, 2019, 50(7), 07111.
6 Fan Q L, Guo X F, Yuan J S. Journal of Hebei University of Technology, 2019, 48(3), 21(in Chinese).
范庆玲, 郭小甫, 袁俊生. 河北工业大学学报, 2019, 48(3), 21.
7 Lin M, Han J L, An Y C, et al. Environmental Engineering Journal, 2020, 14(9), 2378(in Chinese).
林明, 韩京龙, 安烨辰, 等. 环境工程学报, 2020, 14(9), 2378.
8 Liu J Y, Liu L H, Xue J R, et al. Environmental Chemistry, 2018, 37(9), 2016(in Chinese).
刘金燕, 刘立华, 薛建荣, 等. 环境化学, 2018, 37(9), 2016.
9 He H B, Luo Y M, Luo Z Z, et al. Progress in Chemistry, 2019, 31(4), 561(in Chinese).
何洪波, 罗一旻, 罗荘竹, 等. 化学进展, 2019, 31(4), 561.
10 Wang B J, Bai Z S, Jiang H R, et al. Journal of Hazardous Materials, 2019, 364, 192.
11 Huang Y Y, Huang H F, Shi R P. Applied Chemical Industry, 2018, 47(1), 185(in Chinese).
黄瑶瑶, 黄涵芳, 石润平. 应用化工, 2018, 47(1), 185.
12 Chen Q, Yao Y, Li X, et al. Journal of Water Process Engineering, 2018, 26, 289.
13 Kunar M, Pakshirajan K. Journal of Cleaner Production, 2020, 284, 124769.
14 Lyu J F, Quan Y C, Tong X, et al. Engineering, 2022, 9, 67.
15 Tran T K, Chiu K F, Lin C Y, et al. International Journal of Hydrogen Energy, 2017, 42(45), 27741.
16 Tran T T, Duong H L, Luong T V, et al. Science Journal of Chemistry, 2017, 5(6), 87.
17 Muhammed K O, Hanife S E. Process Safety and Environmental Protection, 2018, 119, S0957582018302878.
18 Ding J D, Wang Y L, Shen Y, et al. Electroplating and Environmental Protection, 2018, 38(6), 73(in Chinese).
丁建东, 王云丽, 沈洋, 等. 电镀与环保, 2018, 38(6), 73.
19 Krystynik P, Masin P, Keusinove Z, et al. International journal of Environmental Science and Technology, 2018, 16(8), 4167.
20 Li Z L, Xu Z F, Zhang X, et al. Chinese Journal of Engineering Science, 2020, 42(8), 999(in Chinese).
李子良, 徐志峰, 张溪, 等. 工程科学学报, 2020, 42(8), 999.
21 Chen X. Study on treatment of wastewater containing heavy metals by jet bed electrodeposition. Master's Thesis, Northeastern University, China, 2016(in Chinese).
陈熙. 喷射床电沉积法处理含重金属废水的研究. 硕士学位论文, 东北大学, 2016.
22 Ning D D, Yang C, Hui W. Separation and Purification Technology, 2019, 220, 217.
23 Li X, Wu Y Q, Zhu Y Y, et al. Water Treatment Technology, 2018, 44(3), 34(in Chinese).
李想, 吴雅琴, 朱圆圆, 等. 水处理技术, 2018, 44(3), 34.
24 Cui J, Li F, Wang Y, et al. Separation and Purification Technology, 2020, 250, 117116.
25 Ibrahim Y, Naddeo V, Banat F, et al. Separation and Purification Technology, 2020, 250, 117250.
26 Fu Y, Lin Y K, Tang Y H, et al. Membrane Science and Technology, 2020, 40(4), 126(in Chinese).
扈阳, 林亚凯, 唐元晖, 等. 膜科学与技术, 2020, 40(4), 126.
27 Aloulou W, Aloulou H, Khemakhem M, et al. Environmental Technology & Innovation, 2020, 18, 100794.
28 Zhang H L, Cai H Q, Xia Y, et al. RSC Advances, 2020, 10(6), 3438.
29 Yue Y B, Chen B Y, Duan X T, et al. Water Treatment Technology, 2018, 44(1), 1(in Chinese).
岳云波, 陈白阳, 段炫彤, 等. 水处理技术, 2018, 44(1), 1.
30 Park S, Jun T, Yoon H R, et al. ACS Applied Polymer Materials, 2019, 1(3), 584.
31 Palsamy K, Ibrahim M M, Huang W, et al. Reactive & Functional Polymers, 2020, 150, 104538.
32 Huang J, Shi L, Zeng G, et al. Journal of Cleaner Production, 2019, 209, 53.
33 Verma S P, Sarkar B. Journal of Water Process Engineering, 2020, 33, 101048.
34 Huang Y, Wu D, Wang X, et al. Separation and Purification Technology, 2015, 158(6), 124.
35 Akamatsu K, Ide Y, Inabe T, et al. Industrial & Engineering Chemistry Research, 2018, 57(29), 9465.
36 Wang J Y, Jia F, Zhang C F, et al. Applied Chemical Industry, 2016, 45(3), 397(in Chinese).
王金云, 贾飞, 张春芳, 等. 应用化工, 2016, 45(3), 397.
37 Gu K F, Pang S C, Yang B B. Journal of Membrane Science, 2020, 614, 118497.
38 Kamari S, Shahbazi A. Chemical Engineering Journal, 2020, 2, 127930.
39 Moradi G, Zinadini S, Rajabi L. Journal of Environmental Chemical Engineering, 2020, 8(6), 104431.
40 Hailemarlam R H, Woo Y C, Damtie M M, et al. Advances in Colloid and Interface Science, 2019, 276, 102100.
41 Li Y, Xu Z, Liu S, et al. Computational Materials Science, 2017, 19, 65.
42 Cao Z, Wei Y Y, Zhao M, et al. Water Treatment Technology, 2016, 42(9), 10(in Chinese).
曹震, 魏杨扬, 赵曼, 等. 水处理技术, 2016, 42(9), 10.
43 Samaei S, Gatotrinidad S, Alatee A. Journal of Water Process Engineering, 2020, 34, 101116.
44 Liu Y P, Li W L, Zhu J, et al. Environmental Protection of Chemical Industry, 2019, 39(1), 16(in Chinese).
刘研萍, 李文龙, 朱佳, 等. 化工环保, 2019, 39(1), 16.
45 Guo S Y, Chen W, Song H J, et al. Water Treatment Technology, 2020, 46(9), 136(in Chinese).
郭诗韵, 陈威, 宋宏娇, 等. 水处理技术, 2020, 46(9), 136.
46 Lin Y K, He L D, Wang Y Q, et al. Membrane Science and Technology, 2020, 40(4), 113(in Chinese).
林亚凯, 何柳东, 王业清, 等. 膜科学与技术, 2020, 40(4), 113.
47 Rakesh S, Sagar B, Devkota S J, et al. Journal of Environmental Chemical Engineering, 2021, 9, 105688.
48 Xia L, Tan J Q, Wu L, et al. Metal Mine, 2021(3), 214(in Chinese).
夏令, 谭佳琦, 吴丽, 等. 金属矿山, 2021(3), 214.
49 Anbazhagan S, Thiruvengadam V, Sukeri A. RSC Advances, 2021, 11(8), 4478.
50 Sun F L, Wang Y. Materials Reports A:Review Papers, 2016, 30(5), 137(in Chinese).
孙凤玲, 王吟. 材料导报:综述篇, 2016, 30(5), 137.
51 Es-sahbany H, Hsissou R, Hachimi M E, et al. Materials Today:Proceedings, 2021, 45, 7290.
52 Liu C K, Lei X B, Wang L, et al. Chemical Engineering Journal, 2017, 327, 60.
53 Yu Q, Liu W J. Journal of Chongqing Business University (Natural Science Edition), 2022, 39(3), 33 (in Chinese).
余琦, 刘伟军. 重庆工商大学学报(自然科学版), 2022, 39(3), 33.
54 Aghel B, Mohadesi M, Goura A, et al. International Journal of Environmental Science and Technology, 2020, 17(3), 1239.
55 Fu C, Zhu X P, Dong X, et al. Arabian Journal of Chemistry, 2021, 14(2), 102960.
56 Liu L H, Yang Z C, Zhao L. Progress of Materials in China, 2018, 37(2), 100(in Chinese).
刘立华, 杨正池, 赵露. 中国材料进展, 2018, 37(2), 100.
57 Zhao J, Cao J R, Wang W H, et al. Water Treatment Technology, 2020, 46(5), 55(in Chinese).
赵瑾, 曹军瑞, 王文华, 等. 水处理技术, 2020, 46(5), 55.
58 Zou B Z, Zhang S J, Sun P, et al. Separation and Purification Technology, 2021, 275(15), 119234.
59 Min J X, Zhu S, Ji A Q, et al. Chinese Journal of Chemical Engineering, 2021, 35(1), 191(in Chinese).
闵嘉芯, 朱山, 姬澳琪, 等. 高校化学工程学报, 2021, 35(1), 191.
60 Zhang M, Song L, Jiang H, et al. Journal of Materials Chemistry A, 2017, 5(7), 3434.
61 Chen B. Chemical Engineering Journal, 2019, 356, 69.
62 Liu J X, Ge Y J, Xie S B, et al. Microbiology Bulletin, 2020, 47(3), 941(in Chinese).
刘金香, 葛玉杰, 谢水波, 等. 微生物学通报, 2020, 47(3), 941.
63 Priyadarshanee M, Das S. Journal of Environmental Chemical Engineering, 2020, 9(1), 104686.
64 Lao C L, Luo L Q, Shen Y T, et al. Environmental Science Research, 2020, 33(8), 1929(in Chinese).
劳昌玲, 罗立强, 沈亚婷, 等. 环境科学研究, 2020, 33(8), 1929.
65 Sag Y, Kutsal T. Biotechnology and Bioprocess Engineering, 2001, 6(6), 376.
66 Noormohamadi H R, Fat'hi M R, Ghaedi M, et al. Chemosphere, 2019, 216, 124.
67 Shi L, Xue J W, Liu B H, et al. Ecotoxicology and Environmental Safety, 2018, 161(15), 430.
68 Jadán P C, Alcántara C, Monedero V, et al. Food Chemistry, 2017, 228, 158.
69 Deng X M, Chen Y, Wen J Y. Science Bulletin, 2020, 65(2), 105.
70 Zhang K X, Zhao B X, Zhang Y Q, et al. Water Treatment Technology, 2021, 47(1), 49(in Chinese).
张凯欣, 赵宝秀, 张艳青, 等. 水处理技术, 2021, 47(1), 49.
71 Tanaka A, Nakanishi K, Hamada R, et al. ACS Catalysis, 2013, 3(8), 1886.
72 Li Y, Biao Y, Qin H, et al. Applied Catalysis B Environmental, 2017, 206, 293.
73 Zhang L X, Feng L P, Li P, et al. Chemical Engineering Journal, 2021, 417, 129222.
74 Wang Y, Zhang X, Shang L, et al. Science Bulletin, 2021, 66(1), 9.
75 Wang T, Yu C, Xie X. Advances in Biochemical Engineering/Biotechnology, 2020, 179, 267.
76 Li L, Liu X, Xu J, et al. Chemical Engineering Journal, 2019, 375, 122012.
77 Ge X H, Zhao H, Wang T, et al. Chinese Journal of Chemical Engineering, 2016, 24, 677.
78 Liu Z M, Yang Y, Du Y, et al. Chinese Journal of Analytical Chemistry, 2017, 45(2), 282.
79 Wang B J, Bai Z S, Jiang H R, et al. Journal of Hazardous Materials, 2019, 364, 192.
80 Duc T H, Vu T K, Dang C T, et al. Environmental Technology & Innovation, 2021, 22(4), 101400.
81 Seunghyun C, Jae H K, Kap S Y, et al. Chemical Engineering Journal, 2021, 425(8), 130645.
82 Allioux F M, Pankaj K, Nichoais M, et al. Separation and Purification Technology, 2018, 194, 26.
83 Xiang J, Cai Z, Zhang Y, et al. Sensors and Actuators B Chemical, 2018, 259, 325.
84 Zhang D, He F, Miao Z, et al. Separation and Purification Technology, 2021, 267(2), 118564.
85 Yehezkiel S K, Ramachandra R S, Wataru I, et al. Microchemical Journal, 2018, 142, 377.
86 Wang B J, Xuan J, Yang X Y, et al. Colloids and Surfaces A:Physicochemical and Engineering Aspects, 2021, 626, 127030.
87 Sabrina D M, Serena L, Antonio P, et al. Electroanalysis, 2020, 33(3), 781.
88 Mu R H, Liu B, Chen X, et al. Environmental Technology & Innovation, 2020, 20, 101107.
[1] 肖治国, 成岳, 唐伟博, 余宏伟. 核壳磁性纳米粒子在环境治理中的应用进展[J]. 材料导报, 2019, 33(13): 2174-2183.
[1] Wei ZHOU, Xixi WANG, Yinlong ZHU, Jie DAI, Yanping ZHU, Zongping SHAO. A Complete Review of Cobalt-based Electrocatalysts Applying to Metal-Air Batteries and Intermediate-Low Temperature Solid Oxide Fuel Cells[J]. Materials Reports, 2018, 32(3): 337 -356 .
[2] Dongyong SI, Guangxu HUANG, Chuanxiang ZHANG, Baolin XING, Zehua CHEN, Liwei CHEN, Haoran ZHANG. Preparation and Electrochemical Performance of Humic Acid-based Graphitized Materials[J]. Materials Reports, 2018, 32(3): 368 -372 .
[3] Yunzi LIU,Wei ZHANG,Zhanyong SONG. Technological Advances in Preparation and Posterior Treatment of Metal Nanoparticles-based Conductive Inks[J]. Materials Reports, 2018, 32(3): 391 -397 .
[4] Bingwei LUO,Dabo LIU,Fei LUO,Ye TIAN,Dongsheng CHEN,Haitao ZHOU. Research on the Two Typical Infrared Detection Materials Serving at Low Temperatures: a Review[J]. Materials Reports, 2018, 32(3): 398 -404 .
[5] Yingke WU,Jianzhong MA,Yan BAO. Advances in Interfacial Interaction Within Polymer Matrix Nanocomposites[J]. Materials Reports, 2018, 32(3): 434 -442 .
[6] Zhengrong FU,Xiuchang WANG,Qinglin JIN,Jun TAN. A Review of the Preparation Techniques for Porous Amorphous Alloys and Their Composites[J]. Materials Reports, 2018, 32(3): 473 -482 .
[7] Fangyuan DONG,Shansuo ZHENG,Mingchen SONG,Yixin ZHANG,Jie ZHENG,Qing QIN. Research Progress of High Performance ConcreteⅡ: Durability and Life Prediction Model[J]. Materials Reports, 2018, 32(3): 496 -502 .
[8] Lixiong GAO,Ruqian DING,Yan YAO,Hui RONG,Hailiang WANG,Lei ZHANG. Microbial-induced Corrosion of Concrete: Mechanism, Influencing Factors,Evaluation Indices, and Proventive Techniques[J]. Materials Reports, 2018, 32(3): 503 -509 .
[9] Ningning HE,Chenxi HOU,Xiaoyan SHU,Dengsheng MA,Xirui LU. Application of SHS Technique for the High-level Radioactive Waste Disposal[J]. Materials Reports, 2018, 32(3): 510 -514 .
[10] Haoran CHEN, Yingdong XIA, Yonghua CHEN, Wei HUANG. Low-dimensional Perovskites: a Novel Candidate Light-harvesting Material for Solar Cells that Combines High Efficiency and Stability[J]. Materials Reports, 2018, 32(1): 1 -11 .
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed