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·1458· 精细化工 FINE CHEMICALS 第 38 卷
bentonite/carboxymethyl chitosan/sodium alginate hydrogel beads [26] LIU C (刘超), YANG Y Z (杨永哲), WAN N (宛娜). Characteristic
for Cu ( Ⅱ ) adsorption[J]. International Journal of Biological and mechanisms of chromium (Ⅵ) adsorption on alum sludge[J].
Macromolecules, 2019, 135: 490-500. Chinese Journal of Environmental Engineering (环境工程学报),
[16] WANG X P (王向鹏), ZHENG Y X (郑云香), ZONG L N (宗丽娜), 2013, 7(1): 97-102.
et al. Preparation of EDTA modified P(AA-AMPS)/SA hydrogels [27] GORZIN F, ABADI M B R. Adsorption of Cr(Ⅵ) from aqueous
2+
with hydrolysisresistance and its adsorption properties of Cu and solution by adsorbent prepared from paper mill sludge: Kinetics and
3+
Cr [J]. Fine Chemicals (精细化工), 2020, 37(4): 727-733,740. thermodynamics studies[J]. Adsorption Science & Technology, 2018,
[17] HE J J (贺娇娇), YANG X L (杨兴林), LIU M (刘萌), et al. 36(1/2): 149-169.
Preparation of cellulose membrane with high adsorption capacity and [28] GORZIN F, GHOREYSHI A A. Synthesis of a new low-cost activated
2+
its adsorption performance for Pb [J]. Fine Chemicals (精细化工), carbon from activated sludge for the removal of Cr(Ⅵ) from aqueous
2020, 37(2): 370-377. solution: Equilibrium, kinetics, thermodynamics and desorption
[18] MO G H (莫官海), XIE S B (谢水波), ZENG T T (曾涛涛), et al. studies[J]. Korean Journal of Chemical Engineering, 2013, 30(8):
The efficiency and mechanism of U( Ⅵ ) removal from acidic 1594-1602.
wastewater by sewage sludge-derived biochar[J]. CIESC Journal (化 [29] KARTHIK R, MEENAKSHI S. Removal of Cr(Ⅵ) ions by adsorption
工学报), 2020, 71(5): 2352-2362. onto sodium alginate-polyaniline nanofibers[J]. International Journal
[19] ZHANG W, ZHANG S L, WANG J, et al. Hybrid functionalized of Biological Macromolecules, 2015, 72: 711-717.
chitosan-Al 2O 3@SiO 2 composite for enhanced Cr(Ⅵ) adsorption[J]. [30] WANG J H (王家宏), YIN X L (尹小龙), JI Y F (吉艳芬). Cr(Ⅵ)
Chemosphere, 2018, 203: 188-198. adsorption on polyethyleneimine modified graphite oxide[J]. Chinese
[20] NADIA S, MOHAMMAD S, MAHMOUD M S, et al. Removal of Journal of Inorganic Chemistry (无机化学学报), 2015, 31(6): 1185-
2+
2+
2+
Cu , Cd and Ni ions from aqueous solution using a novel 1193.
chitosan/polyvinyl alcohol adsorptive membrane[J]. Carbohydrate [31] LIANG X T (梁兴唐), ZHONG S M (钟书明), LIU Z J (刘子杰),
Polymers, 2019, 210: 264-273. et al. Chitin/polyethyleneimine composite as an adsorbent of aqueous
[21] GAO Y, CHEN C L, TAN X L, et al. Polyaniline-modified 3D- Cr(Ⅵ)[J]. CIESC Journal (化工学报), 2018, 69(5): 2255-2262.
flower-like molybdenum disulfide composite for efficient adsorption/ [32] LIU Y Y, SOHI S P, LIU S Y, et al. Adsorption and reductive
photocatalytic reduction of Cr( )[J]. Journal of Colloid and InterfacceⅥ degradation of Cr(Ⅵ) and TCE by a simply synthesized zero valent
Science, 2016, 476: 62-70. iron magnetic biochar[J]. Journal of Environmental Management,
[22] LI J H (李际会), WANG P (王鹏), ZHUANG K Z (庄克章), et al. 2019, 235: 276-281.
Optimization, characterization, and Cr(Ⅵ) adsorption properties of [33] WANG J H (王家宏), CHEN Y (陈瑶), SUN T T (孙彤彤). Preparation
iron oxide-coated wheat straw biochar[J]. Journal of Agro-Environment of modified attapulgite adsorbent and its adsorption mechanism for
Science (农业环境科学学报), 2019, 38(8): 1991-2001. aqueous Cr(Ⅵ)[J]. Materials Reports (材料导报), 2020, 34(11):
[23] XU J W, YIN Y G, TAN Z Q, et al. Enhanced removal of Cr(Ⅵ) by 11003-11008.
biochar with Fe as electron shuttles[J]. Journal of Environmental [34] ZHAO X L, SU Y C, LI S B, et al. A green method to synthesize
Sciences (China), 2019, 78: 109-117. flowerlike Fe(OH) 3 microspheres for enhanced adsorption performance
[24] ZHANG Y Z (张艺钟), LIU S (刘姗), LIU Z W (刘志文), et al. toward organic and heavy metal pollutants[J]. Journal of Environmental
Comparison for Cu(Ⅱ) and Cr(Ⅵ) adsorption behavior onto chitosan Sciences (China), 2018, 73: 47-57.
hydrogel beads[J]. Chemical Industry and Engineering Progress (化 [35] JI M, SU X, ZHAO Y X, et al. Effective adsorption of Cr(Ⅵ) on
工进展), 2017, 36(2): 712-719. mesoporous Fe-functionalized Akadama clay: Optimization, selectivity,
[25] DINDAR M H, YAFTIAN M R, ROSTAMNIA S. Potential of and mechanism[J]. Applied Surface Science, 2015, 344: 128-136.
functionalized SBA-15 mesoporous materials for decontamination of [36] YANG J H, LI C S, DAI Y H, et al. Adsorption performance and
water solutions from Cr(Ⅵ), As(Ⅴ) and Hg(Ⅱ) ions[J]. Journal of mechanism of U(Ⅵ) by hydroxy-aluminium impregnated chitosan
Environmental Chemical Engineering, 2015, 3(2): 986-995. [J]. Desalination and Water Treatment, 2020, 180: 293-302.
(上接第 1392 页) low temperature and its application in anti-ultraviolet cotton fibers by
[19] National Technical Committee for Textile Standardization. Evaluation in-situ deposited[D]. Wuhan: Wuhan Textile University (武汉纺织大
of ultraviolet protection of textiles: GB/T18830—2009 [S]. Beijing: 学), 2016.
China Standard Press (中国标准出版社), 2009: 06-11. [25] ZHANG Y L (张艳玲), LEI Y (雷雨), CHEN J B (陈建波), et al.
[20] Foundation Sub-committee of National Textile Standardization Technical Rapid analysis of wine by infrared spectroscopy[J]. Spectral
Committee. Evaluation of antimicrobial properties of textiles-part 3: Instruments and Analysis (光谱仪器与分析), 2009, (Z1): 196-200.
Oscillation method: GB/T 20944. 3—2008[S]. Beijing: China Standard [26] YIN W (尹伟). Preparation of superhydrophobic surfaces with
Press (中国标准出版社), 2008: 04-29. UV-shielding property by coating fibers with ZnO/SiO 2 core/shell
[21] ZHU J L (朱炯霖), LI H (李红), QIN Y (秦圆), et al. Nano-silver structures[D]. Xi'an: Shaanxi University of Science & Technology
multifunctional finishing of cotton fabric[J]. Fine Chemicals (精细化 (陕西科技大学), 2012.
工), 2020, 37(6): 1274-1281. [27] CHEN Y (陈颖). Self-Cleaning property of ZnO/cotton nano -composites
[22] WANG P L (王佩璐). Preparation of nano metal oxide yeast synthesized by ultrasonic-microwave synergistic method[D]. Wuhan:
composites and their research on wastewater treatment[D].Ya'an: Wuhan institute of Technology (武汉工程大学), 2016.
Sichuan Agricultural University (四川农业大学), 2019. [28] WANG D W (王东微). Preparation of several antibiotic material surfaces
[23] ZHANG D S (张德锁), LIAO Y F (廖艳芬), LIN H (林红), et al. and characterization of mechanisms[D]. Chengdu: Southwest Jiaotong
One-step in situ preparation of nano Ag-ZnO on cotton fabric for University (西南交通大学), 2016.
multifunctional finishing[J]. Journal of Textile Research (纺织学报), [29] Ministry of Health. Hygienic standards for disposable sanitary
2014, 35(3): 92-97, 102. products: GB 15979—2002[S]. Beijing: China Standard Press (中国
[24] LI R X (李瑞雪). The preparation of nanometer titanium dioxide at 标准出版社), 2002: 03-05.