1 |
徐莹. 基于碳达峰和碳中和背景下的磷化工产业绿色低碳节能减排研究[J]. 化工设计通讯, 2023, 49(1): 156-158.
|
|
XU Ying. Research on green low-carbon energy saving and emission reduction of phosphorus chemical industry based on carbon peak and carbon neutralization[J]. Chemical Engineering Design Communications, 2023, 49(1): 156-158.
|
2 |
陈铭真. 水处理环境工程中膜分离技术的应用[J]. 现代工业经济和信息化, 2022, 12(11): 148-150.
|
|
CHEN Mingzhen. Application of membrane separation technology in water treatment environmental engineering[J]. Modern Industrial Economy and Informationization, 2022, 12(11): 148-150.
|
3 |
KHAN Amin, Mohsin ALI, ILYAS Ayesha, et al. ZIF-67 filled PDMS mixed matrix membranes for recovery of ethanol via pervaporation[J]. Separation and Purification Technology, 2018, 206: 50-58.
|
4 |
HAN Jiuli, BAI Lu, LUO Shuangjiang, et al. Ionic liquid cobalt complex as O2 carrier in the PIM-1 membrane for O2/N2 separation[J]. Separation and Purification Technology, 2020, 248: 117041.
|
5 |
LIU Quan, LI Yukai, LI Qianqian, et al. Mixed-matrix hollow fiber composite membranes comprising of PEBA and MOF for pervaporation separation of ethanol/water mixtures[J]. Separation and Purification Technology, 2019, 214: 2-10.
|
6 |
CHUNTANALERG Panupong, KULPRATHIPANJA Santi, CHAISUWAN Thanyalak, et al. Performance polybenzoxazine membrane and mixed matrix membrane for ethanol purification via pervaporation applications[J]. Journal of Chemical Technology & Biotechnology, 2016, 91(4): 1173-1182.
|
7 |
ZHANG Jinhui, XIN Qingping, LI Xu, et al. Mixed matrix membranes comprising aminosilane-functionalized graphene oxide for enhanced CO2 separation[J]. Journal of Membrane Science, 2019, 570/571: 343-354
|
8 |
AMIRKHANI Farid, HARAMI Hossein Riasat, ASGHARI Morteza. CO2/CH4 mixed gas separation using poly(ether-b-amide)-ZnO nanocomposite membranes: Experimental and molecular dynamics study[J]. Polymer Testing, 2020, 86: 106464
|
9 |
Esmeralda MENDOZA-MENDOZA, ESPAÑA-SÁNCHEZ Beatriz Liliana, DE JESÚS MONTES-LUNA Angel, et al. Effect of poly(ether block amide)-graphene/ZnO membranes in mixed gas separation performance[J]. Journal of Applied Polymer Science, 2023, 140(6): 1-8.
|
10 |
SAZANOVA Tatyana Sergeevna, SMORODIN Kirill Alexandrovich, ZARUBIN Dmitriy Mikhailovich, et al. Morphology effect of zinc oxide nanoparticles on the gas separation performance of polyurethane mixed matrix membranes for CO2 recovery from CH4, O2, and N2 [J]. Membranes, 2022, 12(6): 577.
|
11 |
SOHAIL Aamir, SARFRAZ Muhammad, NAWAZ Sidra, et al. Enhancing carbon capture efficiency of zeolite-embedded polyether sulfone mixed-matrix membranes via annealing process[J]. Journal of Cleaner Production, 2023, 399: 136617.
|
12 |
WANG Xingqian, WANG Yifei, SHAN Yongjiang, et al. Polyethyleneimine-modified multi-walled carbon nanotubes mixed matrix membranes for CO2/N2 separation[J]. Journal of Environmental Chemical Engineering, 2023, 11(2): 109537.
|
13 |
GIWA Adewale, HASAN Shadi W. Novel polyethersulfone-functionalized graphene oxide (PES-fGO) mixed matrix membranes for wastewater treatment[J]. Separation and Purification Technology, 2020, 241: 116735.
|
14 |
CHEN Ping, WANG Yalan, ZHUANG Xiaoqin, et al. Selective removal of heavy metals by Zr-based MOFs in wastewater: New acid and amino functionalization strategy[J]. Journal of Environmental Sciences, 2023, 124: 268-280.
|
15 |
ZHANG Aoshuai, LI Shenhui, AHMAD Ali, et al. Coordinate covalent grafted ILs-modified MIL-101/PEBA membrane for pervaporation: Adsorption simulation and separation characteristics[J]. Journal of Membrane Science, 2021, 619: 118807.
|
16 |
方龙龙, 郑文姬, 宁梦佳, 等. 功能化Zr-MOF强化混合基质膜CO2分离[J]. 化工进展, 2022, 41(9): 4954-4962.
|
|
FANG Longlong, ZHENG Wenji, NING Mengjia, et al. Enhanced CO2 separation of mixed matrix membranes by functionalized Zr-MOF[J]. Chemical Industry and Engineering Progress, 2022, 41(9): 4954-4962.
|
17 |
GU Jianmei, LI Jianquan, MA Qingyu. A facile and general approach to enhance water resistance of metal-organic frameworks by the post-modification with aminopropyltriethoxylsilane[J]. Nanomaterials, 2022, 12(7): 1134.
|
18 |
WU Fang, LI Qiulin, GUO Hu, et al. Modulating crystal and electronic structure of NiFe-MOFs by inorganic acid for highly efficient electrochemical water oxidation[J]. Dalton Transactions, 2023, 52(7): 2027-2035.
|
19 |
MA Changchang, LI Yujia, NIAN Pei, et al. Fabrication of oriented metal-organic framework nanosheet membrane coated stainless steel meshes for highly efficient oil/water separation[J]. Separation and Purification Technology, 2019, 229: 115835.
|
20 |
HUANG L. Synthesis, morphology control, and properties of porous metal-organic coordination polymers[J]. Microporous and Mesoporous Materials, 2003, 58(2): 105-114.
|
21 |
GAO Yongqiang, QIAO Zhihua, ZHAO Song, et al. In situ synthesis of polymer grafted ZIFs and application in mixed matrix membrane for CO2 separation[J]. Journal of Materials Chemistry A, 2018, 6(7): 3151-3161.
|
22 |
SEO You-Kyong, YOON Ji Woong, LEE U-Hwang, et al. Formation of a nanohybrid composite between mesostructured cellular silica foam and microporous copper trimesate[J]. Microporous and Mesoporous Materials, 2012, 155: 75-81.
|
23 |
HU Jun, CAI Hongpei, REN Huiqing, et al. Mixed-matrix membrane hollow fibers of Cu3(BTC)2 MOF and polyimide for gas separation and adsorption[J]. Industrial & Engineering Chemistry Research, 2010, 49(24): 12605-12612.
|
24 |
FATHIZADEH Mahdi, AROUJALIAN Abdolreza, RAISI Ahmadreza. Effect of added NaX nano-zeolite into polyamide as a top thin layer of membrane on water flux and salt rejection in a reverse osmosis process[J]. Journal of Membrane Science, 2011, 375(1/2): 88-95.
|
25 |
ZARSHENAS Kiyoumars, RAISI Ahmadreza, AROUJALIAN Abdolreza. Surface modification of polyamide composite membranes by corona air plasma for gas separation applications[J]. RSC Advances, 2015, 5(25): 19760-19772.
|