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Featured researches published by Yuhua Guo.


Chemical Engineering Communications | 2009

SYNTHESIS OF WELL-CRYSTALLIZED ZEOLITE BETA AT LARGE SCALE AND ITS INCORPORATION INTO POLYSULFONE MATRIX FOR GAS SEPARATION

Zhen Huang; Junfeng Su; Yuhua Guo; Xiao-Qin Su; Lijun Teng

Using a silica source with high specific surface area, aluminum zeolite beta was successfully synthesized in a very short crystallization period through the conventional hydrothermal route. The obtained materials were characterized by means of XRD, TEM, FESEM, EDS, TGA/DTG, and N2 adsorption/desorption techniques. It is found that the well-crystallized zeolite beta can be rapidly synthesized at 170°C in 9 h and the highly porous silica source used could be completely converted into zeolite beta. No difference results from the silica source used. Moreover, through this synthesis route, it is also possible to conveniently obtain zeolite beta at high yield for manufacturing composite membranes for gas separations. The gas permeation tests show that the incorporation of porous zeolite beta into a polymer has modified the gas permeation properties significantly, indicating industrial application potential of this new type of composite material.


International Journal of Pharmaceutics | 2010

Influence of supercritical CO2 pressurization on the phase behavior of mixed cholesteryl esters

Zhen Huang; Mei Feng; Junfeng Su; Yuhua Guo; Tieyan Liu; Yee C. Chiew

Evidences indicating the presence of phase transformations in the mixed cholesteryl benzoate (CBE) and cholesteryl butyrate (CBU) under the supercritical CO(2) pressurization, by means of differential scanning calorimetry (DSC) and X-ray diffraction (XRD), are presented in this work. These include (1) the DSC heating curve of pure CBU; (2) the DSC heating curves of CBU/CBE mixtures; (3) the XRD spectra of pure CBU; (4) the XRD spectra of CBU/CBE mixtures; (5) CBU and CBE are miscible in either solid phase or liquid phase over the whole composition range. As a result of the presence of these phase transformations induced by pressurization, it could be deduced that a solid solution of the CBU/CBE mixture might have formed at the interfaces under supercritical conditions, subsequently influencing their dissolving behaviors in supercritical CO(2).


Separation and Purification Technology | 2006

Multilayer poly(vinyl alcohol)–zeolite 4A composite membranes for ethanol dehydration by means of pervaporation

Zhen Huang; Yan Shi; Rui Wen; Yuhua Guo; Junfeng Su; T. Matsuura


Fluid Phase Equilibria | 2005

Representing dyestuff solubility in supercritical carbon dioxide with several density-based correlations

Zhen Huang; Yuhua Guo; Ge-Biao Sun; Yee C. Chiew; Sibudjing Kawi


Fluid Phase Equilibria | 2008

Ternary solubility of mixed cholesteryl esters in supercritical carbon dioxide

Zhen Huang; Mei Feng; Yuhua Guo; Junfeng Su; Lijun Teng; Tieyan Liu; Yee C. Chiew


Progress in Organic Coatings | 2014

Properties and paper sizing application of waterborne polyurethane emulsions synthesized with isophorone diisocyanate

Yuhua Guo; Jian Jun Guo; Hui Miao; Lijun Teng; Zhen Huang


Journal of Applied Polymer Science | 2009

Preparation and permeation characterization of β-zeolite-incorporated composite membranes

Zhen Huang; Junfeng Su; Xiao-Qun Su; Yuhua Guo; Lijun Teng; Chuan Min Yang


Powder Technology | 2014

Solubility of progesterone in supercritical carbon dioxide and its micronization through RESS

Zhen Huang; Yuhua Guo; Hui Miao; Lijun Teng


Archive | 2012

Water-based halogen-free flame-retardant paper and preparation method thereof

Yuhua Guo; Zhen Huang; Lijun Teng


Archive | 2011

PE composite fresh-keeping packaging film for food modified atmosphere packaging as well as preparation and uses thereof

Chuanmin Yang; Zhen Huang; Yuhua Guo; Junfeng Su; Lijun Teng

Collaboration


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Lijun Teng

Tianjin University of Commerce

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Zhen Huang

Tianjin University of Commerce

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Junfeng Su

Tianjin University of Commerce

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Chuanmin Yang

Tianjin University of Commerce

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Tieyan Liu

Tianjin University of Commerce

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Hui Miao

Tianjin University of Commerce

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Mei Feng

Tianjin University of Commerce

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Yan Shi

Tianjin University of Commerce

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Xianwen Meng

Tianjin University of Commerce

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