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第 4 期 王邓峰,等: 萝藦绒活性炭纤维的制备及其对亚甲基蓝的吸附性能 ·807·
[11] JIANG N, CHEN J Y, PARIKH D V. Acoustical evaluation of [26] WANG G, ZHANG L, ZHANG J. ChemInform abstract: A review of
carbonized and activated cotton nonwovens[J]. Bioresource electrode materials for electrochemical supercapacitors[J]. Chemical
Technology, 2009, 100(24): 6533-6536. Society Reviews, 2012, 41(2): 797-828.
[12] LI Haihong (李海红), YANG Pei (杨佩), XUE Hui (薛慧), et al. [27] WANG Z Q, WANG D F, WANG M R, et al. Metaplexis japonica
Preparation and characterization of activated carbon from cotton seed hair fiber: A member of natural hollow fibers and its
woven waste with potassium hydroxide[J]. Fine Chemicals (精细化 characterization[J]. Textile Research Journal, 2019, 89(21/22): 4363-
工), 2018, 35(1): 174-180. 4372.
[13] ZUO Q, ZHANG Y, ZHENG H, et al. A facile method to modify [28] YANG S, LI L, XIAO T, et al. Role of surface chemistry in modified
activated carbon fibers for drinking water purification[J]. Chemical ACF (activated carbon fiber)-catalyzed peroxymonosulfate oxidation[J].
Engineering Journal, 2019, 365: 175-182. Applied Surface Science, 2016, 383: 142-150.
[14] SUI Zehua (隋泽华), JIANG Zepeng (江泽鹏), ZHANG Jun (张均), [29] GIANNAKOUDAKIS D A, KYZAS G Z, AVRANAS A, et al.
et al. Research progress of plant-based activated carbon precursor Multi-parametric adsorption effects of the reactive dye removal with
and preparation method[J]. New Chemical Materials (化工新型材 commercial activated carbons[J]. Journal of Molecular Liquids,
料), 2018, 46(6): 31-34. 2016, 213: 381-389.
[15] ZUO Songlin (左宋林). Review on phosphoric acid activation for [30] HUANG Y, MA E, ZHAO G. Thermal and structure analysis on
preparation of activated carbon (Ⅰ): Roles of phosphoric acid[J]. reaction mechanisms during the preparation of activated carbon
Chemistry and Industry of Forest Products (林产化学与工业), 2017, fibers by KOH activation from liquefied wood-based fibers[J].
37(3): 1-9. Industrial Crops and Products, 2015, 69: 447-455.
[16] LI Z, WANG G, ZHAI K, et al. Methylene blue adsorption from [31] LI Dongna (李冬娜), MA Xiaojun (马晓军). Effect of activation
aqueous solution by loofah sponge-based porous carbons[J]. Colloids technology on wooden activated carbon fiber structure and iodine
and Surfaces A: Physicochemical and Engineering Aspects, 2018, adsorption property[J]. Joural of Functional. Materials (功能材料),
538: 28-35. 2013, 44(17): 2565-2569.
[17] HE Lifen (何丽芬), LIU Qixia (刘其霞), JI Tao (季涛), et al. [32] CHANG M Y, JUANG R S. Adsorption of tannic acid, humic acid,
Adsorption kinetics of jute fiber-based activated carbon on methylene and dyes from water using the composite of chitosan and activated
blue and methyl orange[J]. Chinese Journal of Environmental clay[J]. Journal of Colloid and Interface Science, 2004, 278(1):
Engineering (环境工程学报), 2013, 7(12): 4735-4740. 18-25.
[18] JIANG Baiquan (蒋柏泉), ZENG Fang (曾芳), ZENG Qingfang (曾 [33] SUN Z, YU Y, PANG S, et al. Manganese-modified activated carbon
庆芳), et al. Process optimizations of preparation of activated carbon fiber (Mn-ACF): Novel efficient adsorbent for Arsenic[J]. Applied
with coconut shell and treatment of Active Red X-3B wastewater by Surface Science, 2013, 284: 100-106.
CuO/AC catalyst[J]. Chinese Journal of Environmental Engineering [34] HAMEED B H. Equilibrium and kinetic studies of methyl violet
(环境工程学报), 2013, (9): 3283-3288. sorption by agricultural waste[J]. Journal of hazardous materials,
[19] SILVA T L, CAZETTA A L, SOUZA P S C, et al. Mesoporous 2008, 154(1/3): 204-212.
activated carbon fibers synthesized from denim fabric waste: efficient [35] KONG J, YUE Q, HUANG L, et al. Preparation, characterization and
adsorbents for removal of textile dye from aqueous solutions[J]. evaluation of adsorptive properties of leatherwaste based activated
Journal of Cleaner Production, 2018, 171: 482-490. carbon via physical and chemical activation[J]. Chemical Engineering
[20] DENG H, LU J, LI G, et al. Adsorption of methylene blue on Journal, 2013, 221(2): 62-71.
adsorbent materials produced from cotton stalk[J]. Chemical [36] LIU Y. Is the free energy change of adsorption correctly calculated?[J].
Engineering Journal, 2011, 172(1): 326-334. Journal of Chemical & Engineering Data, 2009, 54(7): 1981-1985.
[21] FOO K Y, HAMEED B H. Microwave-assisted preparation of oil [37] JIA Z, LI Z, NI T, et al. Adsorption of low-cost absorption materials
palm fiber activated carbon for methylene blue adsorption[J]. Chemical based on biomass (Cortaderia selloana flower spikes) for dye
Engineering Journal, 2011, 166(2): 792-795. removal: Kinetics, isotherms and thermodynamic studies[J]. Journal
[22] ABER S, KHATAEE A, SHEYDAEI M. Optimization of activated of Molecular Liquids, 2017, 229: 285-292.
carbon fiber preparation from Kenaf using K 2HPO 4 as chemical [38] WIBOWO E, ROKHMAT M, ABDULLAH M. Reduction of
activator for adsorption of phenolic compounds[J]. Bioresource seawater salinity by natural zeolite (clinoptilolite): Adsorption isotherms,
Technology, 2009, 100(24): 6586-6591. thermodynamics and kinetics[J]. Desalination, 2017, 409: 146-156.
[23] TIAN D, XU Z, ZHANG D, et al. Micro-mesoporous carbon from [39] LIU J, WAN L, ZHANG L, et al. Effect of pH, ionic strength, and
cotton waste activated by FeCl 3/ZnCl 2: Preparation, optimization, temperature on the phosphate adsorption onto lanthanum-doped
characterization and adsorption of methylene blue and eriochrome activated carbon fiber[J]. Journal of Colloid and Interface Science,
black T[J]. Journal of Solid State Chemistry, 2019, 269: 580-587. 2011, 364(2): 490-496.
[24] BAI B C, KIM E A, LEE C W, et al. Effects of surface chemical [40] FU J, CHEN Z, WANG M, et al. Adsorption of methylene blue by a
properties of activated carbon fibers modified by liquid oxidation for high-efficiency adsorbent (polydopamine microspheres): Kinetics,
CO 2 adsorption[J]. Applied Surface Science, 2015, 353: 158-164. isotherm, thermodynamics and mechanism analysis[J]. Chemical
[25] JIANG B, ZHENG J, LU X, et al. Degradation of organic dye by Engineering Journal, 2015, 259: 53-61.
pulsed discharge non-thermal plasma technology assisted with [41] PATHANIA D, SHARMA S, SINGH P. Removal of methylene blue
modified activated carbon fibers[J]. Chemical Engineering Journal, by adsorption onto activated carbon developed from Ficus carica
2013, 215: 969-978. bast[J]. Arabian Journal of Chemistry, 2017, 10: S1445-S1451.