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Prediction of the Interaction between Crude Oil Wax-crystal Fractions and Acrylate Polymers by Monte Carlo Simulation

机译:Monte Carlo模拟预测原油蜡晶级分和丙烯酸酯聚合物的相互作用

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The interaction between n-alkanes and pour point depressants with different structures was investigated. Using n-hexadecane as the representative component of crude oil n-alkanes, molecular simulation was employed to study the interaction between polyacrylate pour point depressants with different side chain length and n-hexadecane, and the interaction between polyacrylate pour point depressants with different polar building blocks and n-hexadecane. It was shown that during wax precipitation process, the mixed energy is low when the side chain length of acrylate is compatible with n-hexadecane. It is easier for polyacrylate to go into wax-crystal lattice, thus lowering crude oil pour point. The simulation for pour point depressants consisting of acrylate and other different polar building blocks demonstrated that the stronger the polarity of polar building block, the lower the interaction energy between polymer pour point depressant and n-hexadecane. At the same time, it is easier for polymers with polar building blocks to interact with n-alkanes. The polar building block can effectively inhibit wax-crystal growth and thus improve crude oil low-temperature fluidity.
机译:研究了N-烷烃与具有不同结构的倾点抑制剂之间的相互作用。使用正己分烷作为原油N-烷烃的代表性组分,采用分子模拟研究了具有不同侧链长度和正己烷的聚丙烯酸盐倾点抑制剂之间的相互作用,以及具有不同极性建筑的聚丙烯酸酯倾点抑制剂之间的相互作用块和n-hexadecane。结果表明,在蜡沉淀过程中,当丙烯酸酯的侧链长度与N-十六烷相容时,混合能量低。聚丙烯酸酯更容易进入蜡状晶格,从而降低原油倾点。由丙烯酸酯和其他不同极性构建块组成的倾点抑制剂的模拟表明,极性构建块的极性越强,聚合物倾点抑制剂和正己烷之间的相互作用能越低。同时,具有极性构建块的聚合物更容易与N-烷烃相互作用。极性构建块可以有效地抑制蜡晶体生长,从而改善原油低温流动性。

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