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中国科学院兰州化学物理研究所机构知识库
KMS Lanzhou Institute of Chemical Physics,Chinese Academy of Sciences
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环境材料与生态化学... [18]
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Indexed By:SCI
Date Issued:2018
Language:英语
Document Type:期刊论文
Community:环境材料与生态化学研究发展中心
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Rapid nitrogen-rich modification of Calotropis gigantea fiber for highly efficient removal of fluoroquinolone antibiotics
期刊论文
Journal of Molecular Liquids, 2018, 卷号: 256, 页码: 408-415
Authors:
Yi, Langsha
;
Liang, Guiwei
;
Xiao, Weilong
;
Duan, Wenzhen
;
Wang AQ(王爱勤)
;
Zheng YA(郑易安)
;
Zheng YA(郑易安)
Adobe PDF(1816Kb)
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Submit date:2018/06/01
Calotropis Gigantea Fiber
Polydopamine
Nitrogen-rich Modification
Fluoroquinolone Antibiotics
Adsorption
Metallic nanoparticles roughened Calotropis gigantea fiber enables efficient It absorption of oils and organic solvents
期刊论文
Industrial Crops and Products, 2018, 卷号: 115, 页码: 272-279
Authors:
Cao, Enjuan
;
Xiao, Weilong
;
Duan, Wenzhen
;
Wang, Ningfen
;
Wang AQ(王爱勤)
;
Zheng YA(郑易安)
;
Zheng YA(郑易安)
Adobe PDF(2215Kb)
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Submit date:2018/06/01
Calotropis Gigantea Fiber
Metallic Nanoparticles
Oil Sorbent
Oil-water Selectivity
Reusability
Calotropis gigantea fiber derived carbon fiber enables fast and efficient absorption of oils and organic solvents
期刊论文
Separation and Purification Technology, 2018, 卷号: 192, 期号: 0, 页码: 30-35
Authors:
Tu, Lixin
;
Duan, Wenzhen
;
Xiao, Weilong
;
Fu, Chenxi
;
Wang AQ(王爱勤)
;
Zheng YA(郑易安)
;
Zheng YA(郑易安)
Adobe PDF(830Kb)
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Submit date:2018/06/20
Calotropis Gigantea Fiber
Pyrolysis
Carbon Fiber
Hollow Tubular Structure
Oil-absorbing Property
Preparation and oil absorbency of kapok-g-butyl methacrylate
期刊论文
Environmental Technology, 2018, 卷号: 39, 期号: 9, 页码: 1089-1095
Authors:
Wang JT(王锦涛)
;
Zheng YA(郑易安)
;
Wang AQ(王爱勤)
;
Wang AQ(王爱勤)
Adobe PDF(907Kb)
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Submit date:2018/06/11
Kapok Fiber
Butyl Methacrylate
Oil Absorbency
Reusability
Hollow Lumen
Magnetic chitosan–based adsorbent prepared via Pickering high internal phase emulsion for high-efficient removal of antibiotics
期刊论文
International Journal of Biological Macromolecules, 2018, 期号: 106, 页码: 870-877
Authors:
Lu TT(逯桃桃)
;
Zhu YF(朱永峰)
;
Qi YX(齐彦兴)
;
Wang WB(王文波)
;
Wang AQ(王爱勤)
;
齐彦兴
;
王爱勤
Adobe PDF(2931Kb)
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Submit date:2017/12/29
Magnetic Porous Adsorbent
Hipes
Adsorption
Antibiotics
Noble metal-free NiCo nanoparticles supported on montmorillonite/MoS2 heterostructure as an efficient UV–visible light-driven photocatalyst for hydrogen evolution
期刊论文
International Journal of Hydrogen Energy, 2018, 卷号: 43, 期号: 3, 页码: 1375-1385
Authors:
Xu JX(徐继香)
;
Jianyang Gao
;
Wang WB(王文波)
;
Chao Wang
;
Lei Wang
;
徐继香
Adobe PDF(2909Kb)
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Submit date:2018/01/31
Photocatalysis
Montmorillonite
Mos2
Nico Nanoparticle
H-2 Production
Recovery of Protease Inhibitors from Potato Fruit Water by Expanded Bed Adsorption Chromatography in Pilot Scale
期刊论文
American Journal of Potato Research, 2018, 卷号: 95, 期号: 1, 页码: 1-8
Authors:
Jin CY(靳承煜)
;
Zeng FK(曾凡逵)
;
Liu G(刘刚)
;
Ceng FK(曾凡逵)
Adobe PDF(761Kb)
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Submit date:2018/01/02
Protease Inhibitors
Expanded Bed Adsorption
Potato
Glycoalkaloids
Efficient degradation of rhodamine B with magnetically separable Ag3PO4@MgFe2O4 composites under visible irradiation
期刊论文
Journal of Alloys and Compounds, 2018, 卷号: 735, 期号: 0, 页码: 1277-1290
Authors:
Zhou TH(周添红)
;
Zhang, Guozhen
;
Ma PJ(马鹏军)
;
Qiu XL(邱晓莉)
;
Zhang, Hongwei
;
Yang, Hao
;
Liu G(刘刚)
Adobe PDF(3952Kb)
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Submit date:2018/06/20
Inhibition Of Ag3po4 Photocorrosion
Ag3po4@mgfe2o4 Composites
Rhb Degradation
Visible Light-driven
Possible Mechanism
Cobalt blue hybrid pigment doped with magnesium derived from sepiolite
期刊论文
Applied Clay Science, 2018, 卷号: 157, 期号: 0, 页码: 111-120
Authors:
Zhang AJ(张安杰)
;
Mu B(牟斌)
;
Li, Huaming
;
An XC(安兴才)
;
Wang AQ(王爱勤)
Adobe PDF(1830Kb)
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Submit date:2018/06/01
Cobalt Blue
Sepiolite
Bright Blue
Organosilica Coating
Heat-resistant
Insights into the relationship between the color and photocatalytic property of attapulgite/CdS nanocomposites
期刊论文
Applied Surface Science, 2018, 卷号: 439, 期号: 0, 页码: 202-212
Authors:
Wang XW(王晓雯)
;
Mu B(牟斌)
;
An XC(安兴才)
;
Wang AQ(王爱勤)
Adobe PDF(3933Kb)
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Submit date:2018/06/05
Cds
Attapulgite
Color
Photocatalytic Performance
Band-gap Energy