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Featured researches published by Mingliang Luo.


Chinese Journal of Chemical Engineering | 2011

Fabrication of SPES/Nano-TiO2 Composite Ultrafiltration Membrane and Its Anti-fouling Mechanism *

Mingliang Luo; Qingzhi Wen; Jialin Liu; Hongjian Liu; Zilong Jia

Abstract Membrane fouling is one of the major obstacles for reaching a high flux over a prolonged period of ultrafiltration (UF) process. In this study, a sulfonated-polyethersulfone (SPES)/nano-TiO 2 composite UF membrane with good anti-fouling performance was fabricated by phase inversion and self-assembly methods. The TiO 2 nanoparticle self-assembly on the SPES membrane surface was confirmed by X-ray photoelectron spectroscopy (XPS) and FT-IR spectrometer. The morphology and hydrophilicity were characterized by scanning electron microscopy (SEM), atomic force microscopy (AFM) and contact angle goniometer, respectively. The anti-fouling mechanism of composite UF membrane was discussed through the analysis of the micro-structure and component of UF membrane surface. The results showed that the TiO 2 content and the micro-structure of the composite UF membrane surface had great influence on the separation and anti-fouling performance.


Chinese Journal of Chemical Physics | 2010

Dielectric Analysis of Dynamic Fouling Behavior on Surface of Polyethersulfone Composite Ultrafiltration Membrane

Mingliang Luo; Qingzhi Wen; Jialin Liu; Hongjian Liu

A dielectric analysis model for the fouling layer on the polyethersulfone composite ultrafiltration (UF) membrane and solution system, which consists of the solution, concentration polarization layer (CPL), and cake layer, was established by virtue of the interfacial polarization and the electrostatic field theory. The effect of some important parameters, such as the depth, conductivity of CPL, and cake layer, on the dielectric spectroscopy (or dielectric relaxation properties) of the UF system was discussed by the parameter sensitivity analysis and the dielectric measurement. The simulations indicate that the CPL can be created rapidly and the cake layer formation is the dynamic balance process of growth and erosion in the process of UF. The key factor affecting on the dielectric spectrum of UF system is the electrical properties of the CPL and the cake layer. In comparison to the results of dielectric measurement, the simulations indicate that the model proposed in this work is valid and reliable to some degree for describing and explaining the dielectric relaxation phenomenon in UF system. It is very important to further understand the fouling behavior of membrane surface and optimize the controlling techniques of membrane fouling in the process of UF.


Colloids and Surfaces A: Physicochemical and Engineering Aspects | 2012

Rheological behavior and microstructure of an anionic surfactant micelle solution with pyroelectric nanoparticle

Mingliang Luo; Zilong Jia; Houtai Sun; Lejun Liao; Qingzhi Wen


Archive | 2011

Oil-gas well fiber assisted water control fracturing method

Mingliang Luo; Qingzhi Wen; Zilong Jia; Houtai Sun; Jialin Liu; Hongjian Liu


Archive | 2011

Anion type nano compound clean fracturing fluid and preparation method thereof

Mingliang Luo; Zilong Jia; Houtai Sun; Qingzhi Wen; Jialin Liu; Hongjian Liu


Archive | 2012

Water control agent for oil well and preparation method thereof

Mingliang Luo; Qingzhi Wen; Hongjian Liu; Zilong Jia; Houtai Sun; Jialin Liu


Archive | 2011

Preparation method of sulfonated polyethersulfone/TiO2 nano composite ultrafiltration membrane

Mingliang Luo; Qingzhi Wen; Mingchuan Li; Jialin Liu; Zilong Jia; Houtai Sun; Hongjian Liu


Archive | 2011

Sulfonated polyethersulfone/TiO2 nano composite material and preparation method thereof

Mingliang Luo; Qingzhi Wen; Mingchuan Li; Jialin Liu; Zilong Jia; Houtai Sun; Hongjian Liu


Archive | 2011

Preparation method of gas-well water controlling agent

Mingliang Luo; Qingzhi Wen; Houtai Sun; Zilong Jia; Jialin Liu; Hongjian Liu


SPE International Oilfield Nanotechnology Conference and Exhibition | 2012

Preparation and Performance of Environment-friendly Nanoemulsion with Antiscaling

Mingliang Luo; Houtai Sun; Zilong Jia; Qingzhi Wen; Lejun Liao

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Qingzhi Wen

China University of Petroleum

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Zilong Jia

China University of Petroleum

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Hongjian Liu

China University of Petroleum

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Jialin Liu

China University of Petroleum

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Houtai Sun

China University of Petroleum

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