Page 218 - 《精细化工》2020年第7期
P. 218
·1500· 精细化工 FINE CHEMICALS 第 37 卷
[23] XIA X G (夏新干). Research on the key technology of coated green 版社), 1994: 15.
hydrophobic packaging cardboard [D]. Wuxi: Jiangnan University [31] HOYLAND R W, FIELD R. Review of transudation of water into
(江南大学), 2011. paper. 1.Some structural aspects[J]. Paper Technol Ind, 1976, 10:
[24] KRZYSZTOF K, GRZEGORS H, et al. A highly effective route to 213.
Si-O-Si moieties through O-silylation of silanols and polyhedral [32] OLIVER J F, AGBEZUGE L, WOODCOCK K. A diffusion
oligomeric silsesquioxane silanols with disilazanes[J]. Chem Sus approach for modelling penetration of aqueous liquids into paper[J].
Chem, 2019, 7: 1043-1048. Colloids and Surfaces A: Physicochemical and Engineering Aspects,
[25] JEONG A Y, GOO S M, KIM D P J. Sol-gel synthesis of sodium 1994, 89: 213-226.
silicate and titanium oxychloride based TiO 2-SiO 2 aerogels and their [33] RAMARAO S V, MASSOQUETE A, LAVRYKOV S, et al.
photocatalytic property under UV irradiation[J]. Sol-Gel Sci Technol, Moisture diffusion inside paper materials in the hygroscopic range
2000, 19: 483-487. and characteristics of diffusivity parameters[J]. Dry Technol, 2003,
[26] QU A L (曲爱兰), WEN X F (文秀芳), PI P H (皮丕辉), et al. 21: 2007-2056.
Composite SiO 2 particle coating surface structure and superhydrophobic [34] ZHANG W (张文), ZHOU J Y (周静宜), CHEN Y S (陈玉顺).
properties[J]. Journal of Inorganic Chemistry (无机化学学报), 2007, Study on rheological properties of polylactic acid (PLA)[J]. Polyester
23(10): 1713-1716. industry (聚酯工业), 2009, 22(1): 23-25.
[27] XIONG L (熊磊), MA H Y (马宏毅), WANG R M (王汝敏), et al. [35] WASHBURN E W.The dynamics of capillary flow[J]. Phys Rev,
Study on multi-walled carbon nanotubes modified with KH550 on 1921, 17: 273-283.
toughening epoxy resin[J]. Journal of Aeronautical Materials (航空 [36] MAHLTIG B, BOTTCHER H. Modified silica sol coatings for
材料学报), 2009, 29: 64-66. water-repellent textiles[J]. Journal of Sol-Gel Science and Technology,
[28] MARMUR A. The lotus effect: Superhydrophobicity and 2003, 27: 43-52.
metastability[J]. Langmuir, 2004, 20: 3517-3519 [37] CHEN Y (陈昱). Study on the preparation and properties of
[29] WANG H X, FANG J, CHENG T, et al. One-step coating of superhydrophobic paper material[D]. Zhuzhou: University of Hunan
fluoro-containing silica nanoparticles for universal generation of technolog (湖南工业大学), 2018.
surface superhydrophobicity[J]. Chem Commun, 2008: 877-879. [38] LÜ P (吕平), YANG W D (杨卫东), YU S J (于素健), et al. Study on
[30] GU T R (顾惕人), LI W L (李外郎), MA J M (马季铭), et al. low temperature performance of F-CS emulsion elastic waterproof
Textbook of surface Chemistry[M]. Beijing: Science Press (科学出 coating[J]. New Building Materials (新型建筑材料), 2000, (11): 26-28.
(上接第 1477 页) metal ions from sulphuric acid media by ionic liquid [A336][P507]
[J]. Hydrometallurgy, 2016, 161: 152-159.
[3] SAHIN A K, VOßENKAUL D, STOITZ N, et al. Selectivity potential [14] KOGELNIG D, STOJANOVIC A, GALANSKI M, et al. Greener
of ionic liquids for metal extraction from slags containing rare earth synthesis of new ammonium ionic liquids and their potential as
elements[J]. Hydrometallurgy, 2017, 169: 59-67. extracting agents[J]. Tetrahedron Letters, 2008, 49(17): 2782-2785.
[4] ZHANG G W (张光伟), CUI X Q (崔学奇). Current status and [15] SUN X, WU D, CHEN J, et al. Separation of scandium (Ⅲ) from
prospect of comprehensive recovery and utilization of rare earth lanthanides (Ⅲ) with room temperature ionic liquid based extraction
tailings in china[J]. Mining Research and Development (矿业研究与 containing Cyanex 925[J]. Journal of Chemical Technology &
开发), 2012, 32(6): 116-119. Biotechnology, 2007, 82(3): 267-272.
[5] BIAN Y Y (卞玉洋). Development of novel processes on the [16] CHEN J, HUANG C, WANG Y, et al. Extraction behavior of
recovery of rare earth elements from NdFeB-based permanent magnet bifunctional ionic liquid [N1888][SOPAA] and TBP for rare earth
wastes[D]. Shanghai: Shanghai University (上海大学), 2016. elements[J]. Journal of Rare Earths, 2016, 34(12): 1252-1259.
[6] CUI J N (崔佳娜), WANG M (王明). Research progress on [17] XIONG Y, KUANG W, ZHAO J, et al. Ionic liquid-based synergistic
saponification process of rare earth extraction separation[J]. Rare extraction of rare earths nitrates without diluent: Typical ion-association
Metals and Cemented Carbides (稀有金属与硬质合金), 2017, 45(2): mechanism[J]. Separation and Purification Technology, 2017, 179:
1-5. 349-356.
[7] WANG W, YANG H, CUI H, et al. Application of bifunctional ionic [18] SUN W, XU F, CHENG W, et al. Synthesis of isosorbide-based
liquid extractants [A336][CA-12] and [A336][CA-100] to the lanthanum polycarbonates via melt polycondensation catalyzed by quaternary
extraction and separation from rare earths in the chloride medium[J]. ammonium ionic liquids[J]. Chinese Journal of Catalysis, 2017,
Industrial & Engineering Chemistry Research, 2011, 50(12): 7534- 38(5): 908-917.
7541. [19] CASTILLO J, COLL M T, FORTUNY A, et al. Cu(Ⅱ) extraction
[8] XIAO H J (肖海建), LAN Q F (蓝桥发), HUANG J (黄金), et al. using quaternary ammonium and quaternary phosphonium based
Research on extraction and separation of rare earth in P507-N235 ionic liquid[J]. Hydrometallurgy, 2014, 141: 89-96.
system[J]. Chinese Rare Earths (稀土), 2015, 36(6): 32-38. [20] CHEN Y, WANG H, PEI Y, et al. Selective separation of scandium
[9] STOJANOVIC A, KEPPLER B K. Ionic liquids as extracting agents (Ⅲ) from rare earth metals by carboxyl-functionalized ionic liquids
for heavy metals[J]. Separation Science and Technology, 2012, 47(2): [J]. Separation and Purification Technology, 2017, 178: 261-268.
189-203. [21] PAYON S, FORTUNY A, COLL M T, et al. Rare earths separation
[10] WELTON T. Room-temperature ionic liquids: Solvents for synthesis from fluorescent lamp wastes using ionic liquids as extractant agents
and catalysis[J]. Chemical Reviews, 1999, 99(8): 2071-2083. [J]. Waste Management, 2018, 82: 241-248.
[11] DAVRIS P, MARINOS D, BALOMENOS E, et al. Leaching of rare [22] CHEN L L (陈莉莉), QIU Z M (邱祖民), HUANG J L (黄金莲), et
earth elements from ‘Rödberg’ ore of fen carbonatite complex deposit, al. Synergistic extraction of lanthanide ions with PMBP-2- ABT and
using the ionic liquid HbetTf2N[J]. Hydrometallurgy, 2018, 175: TBP in ionic liquid two-phase aqueous system[J]. Chinese Rare
20-27. Earths (稀土), 2011, 32(3): 68-71.
[12] ZHAO Z, LYU H, GUO X, et al. The synergistic extraction by [23] GUO X, YAO W, CHEN Y, et al. Peg-functionalized ionic liquids: A
combined ammonium and phosphonium type ionic liquids for rare class of liquid materials for highly efficient extraction of rare earth
earth elements separation[J]. Hydrometallurgy, 2017, 174: 234-247. metals from aqueous solutions[J]. Journal of Molecular Liquids,
[13] SHEN L, CHEN J, CHEN L, et al. Extraction of mid-heavy rare earth 2017, 236: 308-313.