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期刊信息

刊名:中国当代医药
曾用名:健康人
主办:中国保健协会;当代创新(北京)医药科学研究院
主管:中国保健协会
ISSN:1674-4721
CN:11-5786/R
语言:中文
周期:旬刊
影响因子:0
被引频次:142081
数据库收录:
中国科技核心期刊;化学文摘(网络版);哥白尼索引;期刊分类:药学
期刊热词:
护理,疗效观察,疗效,临床疗效,腹腔镜,护理干预,并发症,糖尿病,老年,高血压,

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面向健康产业应用需求的膜技术与膜材料(8)

来源:中国当代医药 【在线投稿】 栏目:期刊导读 时间:2021-04-18 10:54

【作者】网站采编
【关键词】
【摘要】[7] Wu X, Xie Z, Wang H, et al. Improved filtration performance and antifouling properties of polyethersulfone ultrafiltration membranes by blending with carboxylic acid functionalized polysulfone[J].

[7] Wu X, Xie Z, Wang H, et al. Improved filtration performance and antifouling properties of polyethersulfone ultrafiltration membranes by blending with carboxylic acid functionalized polysulfone[J].RSC Advances,2018,8(14):7774-7784.

[8] Wu C,Wang Z,Liu S,et permeability,selectivity and antibacterial property improvement of PVC ultrafiltration membranesvia in-situquaternization[J]. Journal of Membrane Science,2018,548:50-58.

[9] Wang S, Li T, Chen C, et al. PVDF ultrafiltration membranes of controlled performanceviablending PVDF-g-PEGMA copolymer synthesized under different reaction times[J]. Frontiers of Environmental Science and Engineering, 2018, 12(2). doi:10.1007/s-017-0980-0.

[10] Xie M, Huan G, Xia W, et al. Preparation and performance optimization of PVDF anti-fouling membrane modified by chitin[J].Journal of Polymer Engineering,2018,38(2):179-186.

[11] Zhong D, Wang Z, Lan Q, et al. Selective swelling of block copolymer ultrafiltration membranes for enhanced water permeability and fouling resistance[J]. Journal of Membrane Science,2018,558:106-112.

[12] Wang Z, Liu R, Lan Q, et al. Selective swelling blends of block copolymers for nanoporous membranes with enhanced permeability and robustness[J]. Journal of Polymer Science Part B-Polymer Physics,2017,55(21):1617-1625.

[13] Modi A, Bellare J. Efficient separation of biological macromolecular proteins by polyethersulfone hollow fiber ultrafiltration membranes modified with Fe3O4nanoparticlesdecorated carboxylated graphene oxide nanosheets[J].International Journal of Biological Macromolecules, 2019, 135:798-807.

[14] Pang R, Zhang K. A facile and viable approach to fabricate polyamide membranes functionalized with graphene oxide nanosheets[J].RSC Advances,2017,7(84):-.

[15] Shi M, Wang Z, Zhao S, et al. A novel pathway for high performance RO membrane: preparing active layer with decreased thickness and enhanced compactness by incorporating tannic acid into the support[J]. Journal of Membrane Science, 2018, 555:157-168.

[16] Pang R, Zhang K. Fabrication of hydrophobic fluorinated silicapolyamide thin film nanocomposite reverse osmosis membranes with dramatically improved salt rejection[J].Journal of Colloid and Interface Science,2018,510:127-132.

[17] Zhao Y, Zhang Z, Dai L, et al. Preparation of high water flux and antifouling RO membranes using a novel diacyl chloride monomer with a phosphonate group[J]. Journal of Membrane Science, 2017,536:98-107.

[18] Wei X, Bao X, Wu J, et al. Typical pharmaceutical molecule removal behavior from water by positively and negatively charged composite hollow fiber nanofiltration membranes[J]. RSC Advances,2018,8(19):-.

[19] Wang J J, Yang H C, Wu M B, et al. Nanofiltration membranes with cellulose nanocrystals as an interlayer for unprecedented performance[J]. Journal of Materials Chemistry A, 2018, 6(33):-.

[20] Wang Z, Wang Z, Lin S, et al. Nanoparticle-templated nanofiltration membranes for ultrahigh performance desalination[J].Nature Communications,2018,9(1):2004.

[21] Meng N, Zhao W, Shamsaei E, et al. A low-pressure GO nanofiltration membrane crosslinkedviaethylenediamine[J].Journal of Membrane Science,2018,548:363-371.

[22] Guo X, Liu D, Han T, et al. Preparation of thin film nanocomposite membranes with surface modified MOF for high flux organic solvent nanofiltration[J]. AIChE Journal, 2017, 63(4):1303-1312.

[23] Zhu L,Yu H,Zhang H,et al.Mixed matrix membranes containing MIL-53(Al) for potential application in organic solvent nanofiltration[J].RSC Advances,2015,5(89):-.

[24] Yang Y, Zhang Q, Li S, et al. Preparation and characterization of porous polyelectrolyte complex membranes for nanofiltration[J].RSC Advances,2015,5(5):3567-3573.

[25] Lv J L, Zhang G Q, Zhang H M, et al. Graphene oxide-cellulose nanocrystal (GO-CNC) composite functionalized PVDF membrane with improved antifouling performance in MBR: behavior and mechanism[J]. Chemical Engineering Journal, 2018, 352:765-773.

[26] Li N, Zhang J, Tian Y, et al. Anti-fouling potential evaluation of PVDF membranes modified with ZnO against polysaccharide[J].Chemical Engineering Journal,2016,304:165-174.

[27] Lee X J, Show P L, Katsuda T, et al. Surface grafting techniques on the improvement of membrane bioreactor: state-of-the-art advances[J].Bioresource Technology,2018,269:489-502.

[28] Xie W Y, Li J, Sun T T, et al. Hydrophilic modification and antifouling properties of PVDF membranevia in situnano-particle blending[J]. Environmental Science and Pollution Research,2018,25(25):-.

[29] Xue S, Li C, Li J, et al. A catechol-based biomimetic strategy combined with surface mineralization to enhance hydrophilicity and anti-fouling property of PTFE flat membrane[J]. Journal of Membrane Science,2017,524:409-418.

[30] Li C,Wang F,Zhu H,et al.Study on hydrophilic modification and separation performance of PTFE flat membrane by polyacrylic acid post-crosslinked with bisaminoorganosilicone[J]. Membrane Science and Technology,2018,38(3):83-90.

文章来源:《中国当代医药》 网址: http://www.zgddyyzz.cn/qikandaodu/2021/0418/1132.html

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