Synthesis and Characterization of High Molecular Weight Polyacrylamide Nanoparticles by Inverse-emulsion Polymerization
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作者:
Barari, Mohammad
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Res Inst Petr Ind, Res Ctr Polymer Synth, Div Polymer Sci & Technol, Tehran, IranRes Inst Petr Ind, Res Ctr Polymer Synth, Div Polymer Sci & Technol, Tehran, Iran
Barari, Mohammad
[1
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Abdollahi, Mahdi
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Res Inst Petr Ind, Res Ctr Polymer Synth, Div Polymer Sci & Technol, Tehran, IranRes Inst Petr Ind, Res Ctr Polymer Synth, Div Polymer Sci & Technol, Tehran, Iran
Abdollahi, Mahdi
[1
]
Hemmati, Mahmood
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Res Inst Petr Ind, Res Ctr Polymer Synth, Div Polymer Sci & Technol, Tehran, IranRes Inst Petr Ind, Res Ctr Polymer Synth, Div Polymer Sci & Technol, Tehran, Iran
Hemmati, Mahmood
[1
]
机构:
[1] Res Inst Petr Ind, Res Ctr Polymer Synth, Div Polymer Sci & Technol, Tehran, Iran
Polyacrylamide (PAM) and its copolymers are of important polymeric materials in petroleum industry, for example in drilling fluids and enhanced oil recovery. High molecular weights of these polymers are needed to have optimum efficiency in the above given applications. High molecular weight polyacrylamide nanoparticles were prepared by inverse-emulsion polymerization of aqueous acrylamide solution in xylene as a continuous phase under various conditions in the presence of a mixture of non-ionic emulsifiers (Tween 85 and Span 80). Monomer conversion, particle size and its distribution in the final emulsion and molecular weight of the polymer product were analyzed appropriately by gravimetry, dynamic light scattering (DLS) and capillary viscometry techniques. The effect of variables such as stirrer speed, temperature, initiator concentration and type, emulsifier concentration and hydrophilic-lipophilic balance (HLB) value of the emulsifier system on the viscosity-average molecular weight, particle size and its distribution and reaction kinetics were investigated. Depending on the reaction conditions, PAM particles with average particle sizes generally smaller than 200 nm in diameter and particle size distribution in the range of 50-400 nm and viscosity-average molecular weights as high as 8x10(6) g.mol(-1) were obtained.
机构:
Kyungpook Natl Univ, Dept Appl Chem, Taegu 702701, South Korea
Hankuk Paper Mfg Co Ltd, R&D Ctr, Ulsan 689890, South KoreaKyungpook Natl Univ, Dept Appl Chem, Taegu 702701, South Korea
Yoon, Dong Ho
Jang, Jung Won
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Hankuk Paper Mfg Co Ltd, R&D Ctr, Ulsan 689890, South KoreaKyungpook Natl Univ, Dept Appl Chem, Taegu 702701, South Korea
机构:
National Institute of Clean-and-Low-Carbon Energy,Shenhua Group Corporation Ltd.
College of Chemical Engineering,Beijing University of Chemical TechnologyNational Institute of Clean-and-Low-Carbon Energy,Shenhua Group Corporation Ltd.
Kui Zhang
Qian Wang
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机构:
College of Chemical Engineering,Beijing University of Chemical TechnologyNational Institute of Clean-and-Low-Carbon Energy,Shenhua Group Corporation Ltd.
Qian Wang
Hong Meng
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机构:
Key Laboratory of Organic and Inorganic Composite Materials,Beijing University of Chemical TechnologyNational Institute of Clean-and-Low-Carbon Energy,Shenhua Group Corporation Ltd.
Hong Meng
Mian Wang
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机构:
College of Chemical Engineering,Beijing University of Chemical TechnologyNational Institute of Clean-and-Low-Carbon Energy,Shenhua Group Corporation Ltd.
Mian Wang
Wei Wu
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机构:
College of Chemical Engineering,Beijing University of Chemical TechnologyNational Institute of Clean-and-Low-Carbon Energy,Shenhua Group Corporation Ltd.
Wei Wu
Jianfeng Chen
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机构:
College of Chemical Engineering,Beijing University of Chemical TechnologyNational Institute of Clean-and-Low-Carbon Energy,Shenhua Group Corporation Ltd.