1 |
孙文洁,任顺利,武强,等. 新常态下我国煤矿废弃矿井水污染防治与资源化综合利用[J]. 煤炭学报,2022,47(6):2161-2169.
|
|
SUN Wenjie, REN Shunli, WU Qiang,et al. Waterpollution’s prevention and comprehensive utilization of abandoned coal mines in China under the new normal life[J]. Journal of China Coal Society,2022,47(6):2161-2169.
|
2 |
汤鸿霄. 无机高分子絮凝理论与絮凝剂[M]. 北京:中国建筑工业出版社,2006:3.
|
|
TANG Hongxiao. Inorganic polymeric flocculation theory and flocculants[M]. Beijing:China Architecture and Building Press,2006:3.
|
3 |
KHAZAIE A, MAZARJI M, SAMALI B,et al. A review on coagulation/flocculation in dewatering of coal slurry[J]. Water, 2022, 14(6):918. doi: 10.3390/w14060918
|
4 |
WANG Jianping, CHEN Yongzhen, WANG Yi,et al. A novel efficient cationic flocculant prepared through grafting two monomers onto chitosan induced by Gamma radiation[J]. RSC Advances, 2012, 2(2):494-500. doi: 10.1039/c1ra00473e
|
5 |
YANG Zhen, YANG Hu, JIANG Ziwen,et al. Flocculation of both anionic and cationic dyes in aqueous solutions by the amphoteric grafting flocculant carboxymethyl chitosan-graft-polyacrylamide[J]. Journal of Hazardous Materials, 2013, 254/255:36-45. doi: 10.1016/j.jhazmat.2013.03.053
|
6 |
|
|
WEI Zhaoyang. Adsorption and sedimentation characteristics and performance enhancement of cationic modified starch flocculating microalgae[D]. Chongqing:Chongqing University, 2020. doi: 10.1016/j.bej.2020.107785
|
7 |
|
|
LIU Lügang. Preparation,characterization and properties of inorganic polymer flocculant polyferric magnesium silicate[D]. Guangzhou:South China University of Technology, 2017. doi: 10.2166/wst.2017.087
|
8 |
|
|
WANG Dongsheng. Application status and prospect analysis of coal mine water treatment technology[J]. Coal Quality Technology, 2021, 36(3):30-34. doi: 10.3969/j.issn.1007-7677.2021.03.004
|
9 |
华经产业研究院. 2021—2026年中国絮凝剂行业发展现状与前景趋势预测分析报告[R]. 北京:华经产业研究院,2020.
|
|
Huajing Industrial Research Institute. Analysis report on the current development status and future prospect trends of China’s flocculant industry from 2021 to 2026[R]. Beijing:Huajing Industrial Research Institute,2020.
|
10 |
|
|
WANG Rui, ZHANG Yifei, QU Guangmiao,et al. Application and research progress of composite flocculant in water treatment[J]. Guangzhou Chemical Industry, 2021, 49(1):10-11. doi: 10.3969/j.issn.1001-9677.2021.01.005
|
11 |
|
|
TANG Xiaodong, DENG Jieyi, LI Jingjing,et al. Progress in the preparation and research of composite polymer flocculants[J]. Industrial Water Treatment, 2015, 35(2):1-5. doi: 10.11894/1005-829x.2014.35(2).001
|
12 |
SUN Tong, LIU Lianli, WAN Lili,et al. Effect of silicon dose on preparation and coagulation performance of poly-ferric-aluminum-silicate-sulfate from oil shale ash[J]. Chemical Engineering Journal, 2010, 163(1/2):48-54. doi: 10.1016/j.cej.2010.07.037
|
13 |
文彦杰,韩春英,张丽丹,等. 聚硅酸铁镁水处理剂的制备及应用研究[J]. 北京化工大学学报(自然科学版),2012,39(4):90-94.
|
|
WEN Yanjie, HAN Chunying, ZHANG Lidan,et al. Preparation and coagulation behavior of a ferric polysilicate coagulant modified with magnesium[J]. Journal of Beijing University of Chemical Technology(Natural Science),2012,39(4):90-94.
|
14 |
WANG Xiaona, YUE Qinyan, GAO Baoyu,et al. Dispersion copolymerization of acrylamide and dimethyl diallyl ammonium chloride in ethanol-water solution[J]. Journal of Applied Polymer Science, 2011, 120(3):1496-1502. doi: 10.1002/app.33288
|
15 |
郑怀礼,薛文文,陈伟,等. 我国无机高分子混凝剂的研究状况与发展趋势[C]//2014中国环境科学学会学术年会论文集. 四川成都:中国环境科学学会,2014:4405-4408.
|
|
ZHENG Huaili, XUE Wenwen, CHEN wei,et al. Research status and development trend of inorganic polymer coagulants in China[C]// Proceedings of the 2014 China Society of Environmental Sciences Academic Annual Conference. Chengdu,Sichuan:China Society of Environmental Sciences Academic,2014:4405-4408.
|
16 |
张世军,李思健. 芋艿淀粉丙烯酰胺接枝共聚物的合成及其对酒糟废水的处理[J]. 环境保护,2000,28(5):45-46.
|
|
ZHANG Shijun, LI Sijian. Synthesis of taro starch acrylamide graft copolymer and its treatment of distiller’s grains wastewater[J]. Environmental Protection,2000,28(5):45-46.
|
17 |
宋艳,李大炳,康绍辉,等. 碱性铀矿浆天然絮凝剂絮凝沉降技术研究[C]//中国核科学技术进展报告(第五卷)——中国核学会2017年学术年会论文集第2册. 山东威海:中国核学会,2017:77-80.
|
18 |
CHO M S, YOON K J, SONG B K. Dispersion polymerization of acrylamide in aqueous solution of ammonium sulfate:Synthesis and characterization[J]. Journal of Applied Polymer Science, 2002, 83(7):1397-1405. doi: 10.1002/app.2300
|
19 |
|
20 |
|
|
HOU Xinghan, LIU Yali. Synthesis and application of amino-grafted cationic polyacrylamide flocculant[J]. China Water & Wastewater, 2012, 28(15):68-70. doi: 10.3969/j.issn.1000-4602.2012.15.018
|
21 |
LI Ran, HE Chao, HE Yanling. Preparation and characterization of poly-silicic-cation coagulant from industrial wastes[J]. Desalination, 2013, 319:85-91. doi: 10.1016/j.desal.2013.03.024
|
22 |
VIJAYALAKSHMI S P, RAICHUR A M. The utility of Bacillus subtilis as a bioflocculant for fine coal[J]. Colloids and Surfaces B:Biointerfaces, 2003, 29(4):265-275. doi: 10.1016/s0927-7765(03)00005-5
|
23 |
许丽丽. 生物与非生物联合絮凝剂在尾煤水处理中的合理应用[J]. 煤炭技术,2017,36(2):312-313.
|
|
XU Lili. Reasonable application of microbial and non-microbial combined flocculation technology in trail coal water treatment[J]. Coal Technology,2017,36(2):312-313.
|
24 |
杨佩斯,李祝,唐婧红,等. 常压室温等离子体诱变选育高产生物絮凝剂黑曲霉菌株[J]. 中国酿造,2020,39(1):61-65.
|
|
YANG Peisi, LI Zhu, TANG Jinghong,et al. Breeding of high yield microbial flocculant Aspergillus niger by atmospheric and room temperature plasma mutagenesis[J]. China Brewing,2020,39(1):61-65.
|
25 |
LI Huiru, WU Shaohua, DU Cheng,et al. Preparation,performances,and mechanisms of microbial flocculants for wastewater treatment[J]. International Journal of Environmental Research and Public Health, 2020, 17(4):1360. doi: 10.3390/ijerph17041360
|
26 |
章沙沙,柳增善,周红梅,等. 生物絮凝剂研究及在污水领域的应用现状[J]. 环境保护科学,2022,48(1):74-80.
|
|
ZHANG Shasha, LIU Zengshan, ZHOU Hongmei,et al. Research of microbial flocculants and its application in sewage treatment[J]. Environmental Protection Science,2022,48(1):74-80.
|
27 |
MAO Yujie, MILLETT R, LEE C S,et al. Investigating the influence of pectin content and structure on its functionality in bio-flocculant extracted from okra[J]. Carbohydrate Polymers, 2020, 241:116414. doi: 10.1016/j.carbpol.2020.116414
|
28 |
马綦镇. 生物絮凝剂强化电厂循环水处理效能的研究[D]. 沈阳:辽宁大学,2021.
|
|
MA Qizhen. Study on microbial flocculant to enhance the efficiency of circulating water treatment in power plant[D]. Shenyang:Liaoning University,2021.
|
29 |
GAO Baoyu, YUE Qinyan, WANG Bingjian,et al. Poly-aluminum-silicate-chloride(PASiC):A new type of composite inorganic polymer coagulant[J]. Colloids and Surfaces A:Physicochemical and Engineering Aspects, 2003, 229(1/2/3):121-127. doi: 10.1016/j.colsurfa.2003.07.005
|
30 |
阿卜杜热合曼·喀斯木,买买提·加肉普,库尔班江·肉孜. 改性纤维素絮凝剂的制备与应用[J]. 广东化工,2013,40(14):5-6.
|
|
ABDURAHMAN K, MAMMAT J, KURBANJIAN R. Preparation and application of modified cellulose flocculating agent[J]. Guangdong Chemical Industry,2013,40(14):5-6.
|
31 |
麻博,林智炜,孙超,等. 复合絮凝剂的制备及其在高浊矿井水中的应用[J]. 洁净煤技术,2022,28(2):186-194.
|
|
MA Bo, LIN Zhiwei, SUN Chao,et al. Preparation of composite flocculant and its application in high turbidity mine water[J]. Clean Coal Technology,2022,28(2):186-194.
|
32 |
刘新新,杨忠莲,高宝玉,等. 聚合氯化铁-聚(环氧氯丙烷-二甲胺)复合絮凝剂在模拟水处理中的混凝特性研究[J]. 环境科学,2013,34(9):3493-3501.
|
|
LIU Xinxin, YANG Zhonglian, GAO Baoyu,et al. Coagulation characteristics of polyferric chloride-poly(epichlorohydrin-dimethylamine) composite flocculant for simulated water treatment[J]. Environmental Science,2013,34(9):3493-3501.
|
33 |
张水燕,陈昌华,李增强,等. PAFC与不同电荷的PAM复配对焦化废水的絮凝效果及机理研究[C]//第十五届焦化学术年会论文集(Ⅱ). 安徽黄山:苏、鲁、皖、赣、冀五省金属学会,2010:666-672.
|
|
ZHANG Shuiyan, CHEN changhua, LI Zengqiang. Study on flocculation effect and mechanism of PAFC compounded with PAM of different charge in coking wastewater[C]//Proceedings of the 15th Coking Academic Annual Conference(Ⅱ). Huangshan,Anhui:Metal Societies of Jiangsu,Shandong,Anhui,Jiangxi and Hebei Provinces,2010:666-672.
|
34 |
CHEN Meijun, ZOU Changjun, TANG Wenyue,et al. Characterization and flocculation evaluation of a new organic-inorganic hybrid polymer flocculant(PAC-AM-DMC)[J]. Journal of Applied Polymer Science, 2021, 138(47):51388. doi: 10.1002/app.51388
|
35 |
ZENG Defang, HU Dan, CHENG Jie. Experimental study on chitosan composite flocculant for treating papermaking wastewater[J]. Journal of Water Chemistry and Technology, 2012, 34(1):35-41. doi: 10.3103/s1063455x12010067
|
36 |
|
|
WANG Shujun, LI Enze, QI Wenhao,et al. Research progress on the application of magnetic coagulation technique in water and wastewater treatment[J]. Applied Chemical Industry, 2021, 50(1):244-249. doi: 10.3969/j.issn.1671-3206.2021.01.053
|
37 |
杨柳崴,王妍,赵瑞,等. 磁性混凝剂在水处理中的应用研究进展[J]. 土木与环境工程学报,2022,44(6):181-192.
|
|
YANG Liuwei, WANG Yan, ZHAO Rui,et al. Literature review of magnetic coagulants in water treatment[J]. Journal of Civil and Environmental Engineering,2022,44(6):181-192.
|
38 |
ZHANG Ming, XIAO Feng, WANG Dongsheng,et al. Comparison of novel magnetic polyaluminum chlorides involved coagulation with traditional magnetic seeding coagulation:Coagulant characteristics,treating effects,magnetic sedimentation efficiency and floc properties[J]. Separation and Purification Technology, 2017, 182:118-127. doi: 10.1016/j.seppur.2017.03.028
|
39 |
MATEUS G A P, PALUDO M P, DOS SANTOS T R T,et al. Obtaining drinking water using a magnetic coagulant composed of magnetite nanoparticles functionalized with Moringa oleifera seed extract[J]. Journal of Environmental Chemical Engineering, 2018, 6(4):4084-4092. doi: 10.1016/j.jece.2018.05.050
|
40 |
陈啸,伍喜庆,岳涛,等. 矿山尾矿水的磁种絮凝处理及机理研究[J]. 环境污染与防治,2019,41(11):1313-1318.
|
|
CHEN Xiao, WU Xiqing, YUE Tao,et al. Study on the magnetic seed flocculation treatment of mine tailings water and its mechanism[J]. Environmental Pollution & Control,2019,41(11):1313-1318.
|
41 |
ZHANG Xiaohang, HE Xuwen, WEI Ming,et al. Magnetic flocculation treatment of coal mine water and a comparison of water quality prediction algorithms[J]. Mine Water and the Environment, 2019, 38(2):391-401. doi: 10.1007/s10230-019-00590-9
|
42 |
张晓航,何绪文,王浩,等. 磁絮凝工艺对含悬浮物矿井水处理效果的研究[J]. 水处理技术,2018,44(4):122-125.
|
|
ZHANG Xiaohang, HE Xuwen, WANG Hao,et al. Mine water treatment effect with magnetic flocculation technology and flocs fractal characteristics[J]. Technology of Water Treatment,2018,44(4):122-125.
|
43 |
|
|
SHI Chunwei, CHEN Jianbin, WEI Qingquan,et al. Advances in application of magnetic separation technology to oilfield wastewater treatment[J]. Applied Chemical Industry, 2018, 47(4):789-791. doi: 10.3969/j.issn.1671-3206.2018.04.038
|
44 |
王天琪. 磁絮凝耦合IAMBR工艺处理船舶生活污水的试验研究[D]. 哈尔滨:哈尔滨工程大学,2018.
|
|
WANG Tianqi. Experimental study on treatment of ship domestic sewage by magnetic flocculation coupled IAMBR process[D]. Harbin:Harbin Engineering University,2018.
|
45 |
Ting LÜ, ZHANG Shuang, QI Dongming,et al. Enhanced demulsification from aqueous media by using magnetic chitosan-based flocculant[J]. Journal of Colloid and Interface Science, 2018, 518:76-83. doi: 10.1016/j.jcis.2018.02.024
|
46 |
WANG Ting, YANG Wenlong, HONG Yu,et al. Magnetic nanoparticles grafted with amino-riched dendrimer as magnetic flocculant for efficient harvesting of oleaginous microalgae[J]. Chemical Engineering Journal, 2016, 297:304-314. doi: 10.1016/j.cej.2016.03.038
|
47 |
顾大钊,李庭,李井峰,等. 我国煤矿矿井水处理技术现状与展望[J]. 煤炭科学技术,2021,49(1):11-18.
|
|
GU Dazhao, LI Ting, LI Jingfeng,et al. Current status and prospects of coal mine water treatment technology in China[J]. Coal Science and Technology,2021,49(1):11-18.
|
48 |
吕志国,易洋,肖波,等. 超磁分离在煤矿矿井水井下处理工程的应用[J]. 中国给水排水,2018,34(20):105-108.
|
|
Zhiguo LÜ, YI Yang, XIAO Bo,et al. Engineering application of ultra-magnetic-separation technology in downhole treatment of coal mine water[J]. China Water & Wastewater,2018,34(20):105-108.
|
49 |
LEE H S, LIM B R,HUR J,et al. Combined dual-size foam glass media filtration process with micro-flocculation for simultaneous removal of particulate and dissolved contaminants in urban road runoff[J]. Journal of Environmental Management, 2021, 277:111475. doi: 10.1016/j.jenvman.2020.111475
|
50 |
彭映林,余旺,郑雅杰,等. 复合磁絮凝剂的制备及其对黄药废水的处理[J]. 中国有色金属学报,2018,28(8):1676-1687.
|
|
PENG Yinglin, YU Wang, ZHENG Yajie,et al. Preparation of composite magnetic flocculant and its application in treatment of butyl xanthate wastewater[J]. The Chinese Journal of Nonferrous Metals,2018,28(8):1676-1687.
|
51 |
蒋斌斌,高昊,杜坤,等. 煤基复合絮凝剂对高浊度高矿化度矿井水的絮凝效果研究[J]. 矿业科学学报,2020,5(6):681-686.
|
|
JIANG Binbin, GAO Hao, DU Kun,et al. Research on flocculation effect of fly ash composite on high turbidity and high salinity mine water[J]. Journal of Mining Science and Technology,2020,5(6):681-686.
|
52 |
|
|
WANG Hongwang. Experimental study on simultaneous treatment of high hardness and high sulfate in groundwater by K 2FeO 4-PAC-PAM[D]. Taiyuan:Taiyuan University of Technology, 2020. doi: 10.1142/9789813271173_0007
|
53 |
郑彭生,杨建超,郭中权,等. 酸性矿井水中和-絮凝沉淀除铁试验研究[J]. 能源环境保护,2019,33(5):36-38.
|
|
ZHENG Pengsheng, YANG Jianchao, GUO Zhongquan,et al. Experimental study on iron removal of acidic mine water in neutralization-flocculation precipitation[J]. Energy Environmental Protection,2019,33(5):36-38.
|
54 |
郑彭生,王健,郭中权,等. 酸性矿井水处理技术研究进展[C]//2021年全国能源环境保护技术论坛论文集. 浙江宁波:中国煤炭学会环境保护专业委员会,2021:8-14.
|
|
ZHENG Pengsheng, WANG Jian, GUO Zhongquan,et al. Research progress of acidic mine water treatment technology[C]//Proceedings of the 2021 National Energy and Environmental Protection Technology Forum. Ningbo,Zhejiang:Environmental Protection Professional Committee of China Coal Society,2021:8-14.
|
55 |
杨晓松,邵立南,刘峰彪,等. 高浓度泥浆法处理矿山酸性废水机理[J]. 中国有色金属学报,2012,22(4):1177-1183.
|
|
YANG Xiaosong, SHAO Linan, LIU Fengbiao,et al. Mechanism of mine acidic waste water treated by high density sludge[J]. The Chinese Journal of Nonferrous Metals,2012,22(4):1177-1183.
|
56 |
|
|
XIANG Yu. Effect of microcystis aeruginosa on fluoride removal mechanism of different coagulants[D]. Nanchang:Nanchang University, 2021. doi: 10.1016/j.jece.2022.107691
|
57 |
杨占峰. 白云鄂博矿区饮用水混凝过滤除氟的研究[D]. 西安:西安建筑科技大学,2003.
|
|
YANG Zhanfeng. Research on removing fluorine of drinking water by coagulation and filtration in Baiyun[D]. Xi’an:Xi’an University of Architecture and Technology,2003.
|
58 |
|
|
ZHAO Nan, XIE Bingwen, LI Fei,et al. Application of the complexation flocculation method in the treatment of industrial wastewater containing fluorine[J]. Plastics Additives, 2020(5):30-31. doi: 10.3969/j.issn.1672-6294.2020.05.0007
|
59 |
杨欣雯,罗猛,李慧清,等. 几种常用除氟方法对煤层气气井排水中氟的去除试验研究[J]. 安全与环境工程,2021,28(3):87-93.
|
|
YANG Xinwen, LUO Meng, LI Huiqing,et al. Experiment research of defluorination of drainage from coal-bed methane wells[J]. Safety and Environmental Engineering,2021,28(3):87-93.
|
60 |
王建兵,李亚男,蒋雯婷,等. 混凝沉淀处理高浊高铁锰矿井水试验研究[J]. 中国矿业大学学报,2013,42(1):141-146.
|
|
WANG Jianbing, LI Ya’nan, JIANG Wenting,et al. Treatment of coal mine drainage with high turbidity,high iron and manganese in the use of coagulation and sedimentation process[J]. Journal of China University of Mining & Technology,2013,42(1):141-146.
|
61 |
张吉库,胡立锋,杨柳. 结团絮凝工艺处理除铁除锰滤池反洗废水的试验[J]. 沈阳建筑大学学报(自然科学版),2016,32(2):341-346.
|
|
ZHANG Jiku, HU Lifeng, YANG Liu. Experiment of pellet coagulation dispose back flushing waste water in deironing and demanganization filter[J]. Journal of Shenyang Jianzhu University(Natural Science),2016,32(2):341-346.
|
62 |
|
|
HE Wenli, GUI Herong, YUAN Zhihua,et al. Removal of lead,cadmium,iron,and manganese from mine water by potassium ferrate coagulation[J]. Industrial Water Treatment, 2009, 29(10):83-86. doi: 10.11894/1005-829x.2009.29(10).83
|
63 |
袁海飞,王刚,严亚萍,等. 有机配位剂对重金属絮凝剂DTSPAM去除水中Cd2+性能的影响[J]. 环境科学学报,2020,40(7):2477-2485.
|
|
YUAN Haifei, WANG Gang, YAN Yaping,et al. Effect of organic coordination agents on the removal of Cd2+ with heavy metal flocculant DTSPAM[J]. Acta Scientiae Circumstantiae,2020,40(7):2477-2485.
|
64 |
ZHAO Chuanliang, ZHOU Junyuan, YAN Yi,et al. Application of coagulation/flocculation in oily wastewater treatment:A review[J]. Science of the Total Environment, 2021, 765:142795. doi: 10.1016/j.scitotenv.2020.142795
|