Page 45 - 《精细化工》2023年第5期
P. 45
第 5 期 姚贤锐,等: 疏水深共熔溶剂在绿色化学工艺中的应用 ·965·
for one-pot extraction of anthraquinones from Rhei Radix et Rhizoma[J]. using menthol-based hydrophobic deep eutectic solvent and modeling
Journal of Pharmaceutical Analysis, 2022, 12(1): 87-95. by response surface methodology[J]. Biomass Conversion and Biorefinery,
[37] LIAO M C, ZHAO Y, YANG X Y, et al. A greener and sustainable 2022, 12(4): 1331-1341.
route for medicinal plant analysis: Recycle utilization of hydrophobic [53] FAN Y C, WU H W, CAI D X, et al. Effective extraction of harmine
deep eutectic solvent[J]. Microchemical Journal, 2022, 178: 107372. by menthol/anise alcohol-based natural deep eutectic solvents[J].
[38] PITACCO W, SAMORÌ C, PEZZOLESI L, et al. Extraction of Separation and Purification Technology, 2020, 250: 117211.
astaxanthin from Haematococcus pluvialis with hydrophobic deep [54] LALIKOGLU M. Intensification of formic acid from dilute aqueous
eutectic solvents based on oleic acid[J]. Food Chemistry, 2022, 379: solutions using menthol based hydrophobic deep eutectic solvents[J].
132156. Journal of the Indian Chemical Society, 2022, 99(1): 100303.
[39] YANG L, XIE L Y, CHEN X, et al. Solvent terminated natural deep [55] ZHU W J, JIN P N, CHENG M, et al. Novel recyclable acidic
eutectic solvent microextraction for concentration of curcuminoids in hydrophobic deep eutectic solvents for highly efficient extraction of
Curcumae Longae Rhizoma and turmeric tea[J]. Journal of calcium dobesilate in water and urine samples[J]. Talanta, 2021, 233:
Separation Science, 2022, 45(13): 2252-2261. 122523.
[40] ALSAUD N, SHAHBAZ K, FARID M. Antioxidant and antibacterial [56] CABLÉ P, LE BRECH Y, MUTELET F. Liquid-liquid extraction of
evaluation of Manuka leaves (Leptospermum scoparium) extracted phenolic compounds from aqueous solution using hydrophobic deep
by hydrophobic deep eutectic solvent[J]. Chemical Engineering eutectic solvents[J]. Journal of Molecular Liquids, 2022, 366: 120266.
Research and Design, 2021, 174: 96-106. [57] ZHANG H P (张鹤鹏), CHEN J Q (陈金清). Research progress of
[41] WANG T, WANG Q, GUO Q, et al. A hydrophobic deep eutectic hydrophobic eutectic solvent extraction of metal ions[J]. Nonferrous
solvents-based integrated method for efficient and green extraction Metals Science and Engineering (有色金属科学与工程), 2021,
and recovery of natural products from Rosmarinus officinalis leaves, 12(4): 9-18.
Ginkgo biloba leaves and Salvia miltiorrhiza roots[J]. Food [58] PHELPS T E, BHAWAWET N, JURISSON S S, et al. Efficient and
–
Chemistry, 2021, 363: 130282. selective extraction of 99m TcO 4 from aqueous media using hydrophobic
[42] FAN Y C, LUO H, ZHU C Y, et al. Hydrophobic natural alcohols deep eutectic solvents[J]. ACS Sustainable Chemistry & Engineering,
based deep eutectic solvents: Effective solvents for the extraction of 2018, 6(11): 13656-13661.
quinine[J]. Separation and Purification Technology, 2021, 275: 119112. [59] SCHAEFFER N, MARTINS M A R, NEVES C M S S, et al.
[43] ALSAUD N, SHAHBAZ K, FARID M. Evaluation of deep eutectic Sustainable hydrophobic terpene-based eutectic solvents for the
solvents in the extraction of β-caryophyllene from New Zealand extraction and separation of metals[J]. Chemical Communications,
Manuka leaves (Leptospermum scoparium)[J]. Chemical Engineering 2018, 54(58): 8104-8107.
Research and Design, 2021, 166: 97-108. [60] SADEGHI S, DAVAMI A. A rapid dispersive liquid-liquid
[44] DONG Q H, CAO J, WU R, et al. Efficient removal of ginkgolic microextraction based on hydrophobic deep eutectic solvent for
acids from Ginkgo biloba leaves crude extract by using hydrophobic selective and sensitive preconcentration of thorium in water and rock
deep eutectic solvents[J]. Industrial Crops and Products, 2021, 166: samples: A multivariate study[J]. Journal of Molecular Liquids,
113462. 2019, 291: 111242.
[45] OLIVEIRA G, MARQUES C, DE OLIVEIRA A, et al. Extraction of [61] GENG Y Q, XIANG Z Y, LV C, et al. Recovery of gold from
bioactive compounds from Curcuma longa L. using deep eutectic hydrochloric medium by deep eutectic solvents based on quaternary
solvents: In vitro and in vivo biological activities[J]. Innovative Food ammonium salts[J]. Hydrometallurgy, 2019, 188: 264-271.
Science & Emerging Technologies, 2021, 70: 102697. [62] RAJPUT M K, KONWAR M, SARMA D. Preparation of a novel
[46] QUAN T, WANG D D, YANG L J, et al. Effective extraction environmentally friendly hydrophobic deep eutectic solvent ChCl-
methods based on hydrophobic deep eutectic solvent coupled with THY and its application in removal of hexavalent chromium from
functional molecularly imprinted polymers: Application on quercetagetin aqueous solution[J]. Water Environment Research, 2021, 93(10):
extraction from natural medicine and blood[J]. Microchemical Journal, 2250-2260.
2022, 174: 107076. [63] HANADA T, GOTO M. Synergistic deep eutectic solvents for
[47] WEI H T (魏晗婷), XIE D M (颉东妹), WANG P B (王鹏波), et al. lithium extraction[J]. ACS Sustainable Chemistry & Engineering,
Determination of carotenoids in Lycium barbarum L. by high speed 2021, 9(5): 2152-2160.
shear dispersing emulsifier assisted hydrophobic deep eutectic [64] CHEN W, LI X W, CHEN L L, et al. Tailoring hydrophobic deep
solvent extraction combined with HPLC[J]. Food Science and eutectic solvent for selective lithium recovery from the mother liquor
Technology (食品科技), 2022, 47(2): 287-293. of Li 2CO 3[J]. Chemical Engineering Journal, 2021, 420: 127648.
[48] VAN DEN BRUINHORST A, RAES S, MAESARA S A, et al. [65] YU L Y, WU K J, HE C H. Tailoring hydrophobic deep eutectic
Hydrophobic eutectic mixtures as volatile fatty acid extractants[J]. solvent for selective lithium recovery from dilute aqueous solutions[J].
Separation and Purification Technology, 2019, 216: 147-157. Separation and Purification Technology, 2022, 281: 119928.
[49] RIVEIRO E, GONZÁLEZ B, DOMÍNGUEZ Á. Extraction of adipic, [66] SHAHREZAEI F, SHAMSIPUR M, GHOLIVAND M B, et al. A
levulinic and succinic acids from water using TOPO-based deep highly selective green supported liquid membrane by using a
eutectic solvents[J]. Separation and Purification Technology, 2020, hydrophobic deep eutectic solvent for carrier-less transport of silver
241: 116692. ions[J]. Analytical Methods, 2020, 12(38): 4682-4690.
[50] CAÑADAS R, GONZÁLEZ-MIQUEL M, GONZÁLEZ E J, et al. [67] YESIL H, TUGTAS A E. Removal of heavy metals from leaching
Hydrophobic eutectic solvents for extraction of natural phenolic effluents of sewage sludge via supported liquid membranes[J].
antioxidants from winery wastewater[J]. Separation and Purification Science of The Total Environment, 2019, 693: 133608.
Technology, 2021, 254: 117590. [68] NI S N, SU J, ZHANG H P, et al. A cleaner strategy for
[51] LALIKOGLU M, AŞÇI Y S, SIRMA TARIM B, et al. Hydrophobic comprehensive recovery of waste SmCo magnets based on deep
deep eutectic solvent effect on acrylic acid separation from aqueous eutectic solvents[J]. Chemical Engineering Journal, 2021, 412:
media by using reactive extraction and modeling with response 128602.
surface methodology[J]. Separation Science and Technology, 2022, [69] LIU R H, GENG Y Q, TIAN Z J, et al. Extraction of platinum(Ⅳ ) by
57(10): 1563-1574. hydrophobic deep eutectic solvents based on trioctylphosphine oxide[J].
[52] LALIKOGLU M. Separation of butyric acid from aqueous media Hydrometallurgy, 2021, 199: 105521.