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[1] Li Cui*, Ren Gao, Qiaowei Zhang, Kun Jiang, Hongyan He, Wei-Lu Ding, Fangqin Cheng*. Benzo-15-Crown-5 Functionalized Ionic Liquids with Enhanced Stability for Effective Separation of Lithium Isotopes: The Effect of Alkyl Chain Length. ACS Sustainable Chemistry & Engineering. ACS Sustainable Chem. Eng. 2024, 12, 1221−1232.
[2] Li Cui *, Weihong Wang , Xi Chao , Jianming Gao , Fangqin Cheng **. Efficient lithium recovery from electrolytic aluminum slag via an environmentally friendly process: Leaching behavior and mechanism. Journal of Cleaner Production 439 (2024) 140800.
[3] Li Cui, Lijuan Feng, Hefeng Yuan, Huaigang Cheng, Fangqin Cheng*. Efficient recovery of aluminum, lithium, iron and gallium from coal fly ash leachate via coextraction and stepwise stripping. Resources, Conservation & Recycling 202 (2024) 10738.
[4] Li Cui, Qiaowei Zhang, Chen Li, Lijuan Wang, Danli Sun, Fangqin Cheng*. Liquid membrane coupled electrodialysis system for highly-efficient lithium recovery from fly ash acid leaching solution. Chemical Engineering & Processing: Process Intensification 195 (2024) 109650.
[5] Li Cui, Yuheng Fan, Jin Kang, Caixia Yin, Weilu Ding, Hongyan He, Fangqin Cheng*. Novel Class of Crown Ether Functionalized Ionic Liquids with multiple binding sites for Efficient Separation of Lithium Isotopes. Journal of Molecular Liquids 376 (2023) 121412.
[6] Li CuiShasha Li, Jin Kang, Caixia Yin, Yanxia Guo, Hongyan He*, Fangqin Cheng*, A Novel Ion-pair Strategy for Efficient Separation of Lithium Isotopes Using Crown Ethers, Separation and Purification Technology, 274 (2021) 118989.
[7] Zesen Zhao, Li Cui*, Yanxia Guo, Huiquan Li, Fangqin Cheng*. Recovery of gallium from sulfuric acid leach liquor of coal fly ash by stepwise separation using P507 and Cyanex 272. Chemical Engineering Journal, 381(2020) 122699.
[8] Zesen Zhao, Li Cui, Yanxia Guo*, Jianming Gao, Huiquan Li, Fangqin Cheng*. A stepwise separation process for selective recovery of gallium from hydrochloric acid leach liquor of coal fly ash. Separation and Purification Technology, 2021(265) 118455.
[9] Li Cui, Lijuan Wang, Ming Feng, Li Fang, Yanxia Guo, Fangqin Cheng. Ion-pair Induced Solvent Extraction of Lithium (I) from Acidic Chloride Solutions with Tributyl PhosphateI. Green Energy & Environment, 2021, 6(4) 607-616. https://doi.org/10.1016/j.gee.2020.05.002.
[10] Jin Kang, Enze Li, Li Cui*, Qinglin Shao, Caixia Yin*, Fangqin Cheng. Lithium ion specific fluorescent reversible extraction-release based on spiropyran isomerization combining crown ether coordination and its bioimaging. Sensors and Actuators: B. Chemical 327 (2021) 128941.
[11] Lijuan Wang, Ying Wang, Li Cui*, Jianmin Gao, Yanxia Guo, Fangqin Cheng*. A sustainable approach for advanced removal of iron from CFA sulfuric acid leach liquor by solvent extraction with P507. Separation and Purification Technology 251(2020) 117371.
[11] Li Cui, Xia Yang, Junfeng Wang, Hongyan He, Yanxia Guo, Fangqin Cheng*, Suojiang Zhang*.Theoretical prediction of 6Li/7Li separation in liquid-liquid chemical exchange system using Urey model. Chemical engineering Journal 358(2019) 435-445.
[12] Li Cui, Kun Jiang, Junfeng Wang, Kun Dong, Xiangping Zhang, Fangqin Cheng. Role of ionic liquids in the efficient transfer of lithium by Cyanex 923 in solvent extraction system. AIChE Journal, 2019, 65(8) e16606.
[13] Li Cui, Zesen Zhao, Yanxia Guo, Fangqin Cheng*.Stripping of iron(III) from iron(III)-loaded Aliquat 336 generated during aluminum recovery from coal waste leach liquor using sodium sulfite.Separation and Purification Technology 199 (2018) 304-310.
[14] Li Cui, Fangqin Cheng*, Jingfang Zhou*. Preparation of high purity AlCl3·6H2O from coal waste based on iron(III) removal using ionic liquid. Separation and Purification Technology167201645-54.
[15] Li Cui, Fangqin Cheng*, Jingfang Zhou*. Behaviors and Mechanism of Iron Extraction from Chloride Solutions Using Undiluted Cyphos IL 101. Industrial & Engineering Chemistry Research 54(2015) 7534−7542.
[16] Li Cui, Yanxia Guo, Xuming Wang, Zhiping Du, Fangqin Cheng*. Dissolution Kinetics of Aluminum and Iron from Coal Mining Waste by Hydrochloric Acid. Chinese Journal of Chemical Engineering 23(2015), 590-596.
[17] Yanxia Guo Kezhou Yan Li Cui Fangqin Cheng. Improved extraction of alumina from coal gangue by surface mechanically grinding modification, Powder Technology, 302(2016), 33-41.
[18] Yanxia Guo, Kezhou Yan, Li Cui, Fangqin Cheng, Helen H. Lou. Effect of Na2CO3 additive on the activation of coal gangue for alumina extraction, International Journal of Mineral Processing, 131(2014), 51-57.
[19] Kezhou, Yanxia Guo, Li Fang, Li Cui, Fangqin Cheng, Tongyang Li. Decomposition and phase transformation mechanism of kaolinite calcined with sodium carbonate. Applied Clay Science, 147(2017), 90-96.
[20] Shicheng Yang, Guowei Liu, Junfeng Wang*, Li Cui, Yongmei Chen*. Recovery of lithium from alkaline brine by solvent extraction with functionalized ionic liquid. Fluid Phase Equilibria, 493 (2019) 129e136.
[21] Ruibing Bai, Junfeng Wang,* Li Cui, Shicheng Yang, Wei Qian, Penglei Cui, Yanqiang Zhang*. Efficient Extraction of Lithium Ions from High Mg/Li Ratio Brine through the Synergy of TBP and Hydroxyl Functional Ionic Liquids. Chinese Journal of Chemistry, 2020, 38, 17431751
[22] , ϼ, ̷*. úʯнӵܳ.ú̿ת, 39(2016), 86-91.
[23] ɯɯϼѧ̷*. úҶԪϵԴȡоչ, CIESC Journal, 2020, 71(12): 5388-5399. DOI10.11949/0438-1157.20200424
[24] , , ɯɯ, , ϼ, ̷* . ѧͬλصۼ¼оչ. ѧ, 2021, 72(6): 3215-3227. DOI: 10.11949/0438-1157.20201813.
[25] wɭ, *, ϼ, ̷. úБԽصȡоչ[J]. ѧ, 2021, 72(6): 3239-3251. DOI10.11949/0438-1157.20201400.
[26] x, w, , ϲ, , wɭ, Ф, ϼ, w. ú͑ؼԪصĵѧԴ. ú̿ѧ, 2022, 50(3): 1-38.
[27] wx£ף¶Թ. úú﮵ĵѧȡоչ.ú̿ѧ, 2021, 49(9): 220-229.
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[3] wɭϼ̷٣һNĸFxҺwзFķ2017.12.5ڙ࣬ ZL 201610079109.8
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[3] wɭϼϲ̷٣һִӷúϵݼӺЭͬȡķ2020.09.29ڙ࣬ZL 201910129427.4
[4] ϼ̷٣һִϵȡxӵķ2020.09.29ڙ, ZL 201811365056.1 D
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[9] ̷٣os·_ɭѦFXxԷxķЇZL 201580042559.32019.02.05
[10]̷٣Ф帣|wţһNúʯX^еijFЇZL 2013 1 0125321.X2014.10.22
[11] ̷٣ϼϲ̎úʯͷúҵķЇZL 201310337154.52015.7.1
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