Chong Lin
Southwest Petroleum University
19 Papers
16 Citations
Chong Lin is an academic researcher from Southwest Petroleum University. The author has contributed to research in topics: Brine & Apparent viscosity. The author has an hindex of 7, co-authored 19 publications.
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Papers
Synthesis and Performance Evaluation of a Nanocomposite Pour-Point Depressant and Viscosity Reducer for High-Pour-Point Heavy Oil
Jincheng Mao,Kang Zhi,Xiaojiang Yang,Chong Lin,Lijun Zheng,Ming Zuo,Mao Jinhua,Sikai Dai,Jinxing Xue,Dong Ouyang +9 more
TL;DR: In this article, the use of silica nanoparticles (nano-SiO2) to reduce the pour point of crude oil is discussed, and the authors explore ways to efficiently and inexpensively exploit and transport high-viscosity and high-pour-point crude oil.
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Preparation of a Hydrophobic-Associating Polymer with Ultra-High Salt Resistance Using Synergistic Effect.
Yang Zhang,Jincheng Mao,Jinzhou Zhao,Xiaojiang Yang,Tao Xu,Chong Lin,Mao Jinhua,Hongzhong Tan,Zhaoyang Zhang,Bo Yang,Shaoyun Ma +10 more
TL;DR: The experimental results indicate that, because of the good shear resistance properties, the polymer SRP-2-1 could be used as an alternative in many fields, for instance in fracturing fluids, enhanced oil recovery, and sewage treatment.
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Effects of a counter-ion salt (potassium chloride) on gemini cationic surfactants with different spacer lengths
Jincheng Mao,Jizhen Tian,Wenlong Zhang,Xiaojiang Yang,Heng Zhang,Chong Lin,Yang Zhang,Zhaoyang Zhang,Jinzhou Zhao +8 more
TL;DR: In this paper, the authors synthesized four Gemini cationic surfactants with three, four, five, and six methylene groups in spacers, and compared the performance of the spacers with different spacer lengths.
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The role of KCl in cationic Gemini viscoelastic surfactant based clean fracturing fluids
Xiaojiang Yang,Mao Jinhua,Jincheng Mao,Qihui Jiang,Meitao Fu,Chong Lin,An Chen,Meng Cun,Anqi Du,Shuyue Xiao,Jinzhou Zhao +10 more
TL;DR: In this article, the performance of KCl on viscoelasticity, temperature, shear resistance of cationic VES fracturing fluid and clay stability was also studied, and it was shown that the higher the concentration, the better the clay stabilization effect.
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A novel hydrophobically associating polymer based on Twin-tailed amphiphilic Monomer: Experimental study and molecular dynamics simulation
TL;DR: In this paper, a novel twin-tailed amphiphilic monomer named CGS-12 was synthesized by copolymerization of CGS with acrylamide (AM) and acrylic acid (AA) in aqueous solution.
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