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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Molecular Dynamics Simulations of Hydrophobic Nanoparticle Effects on Gas Hydrate Formation
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Molecular Dynamics Simulations of Hydrophobic Nanoparticle Effects on Gas Hydrate Formation

机译:疏水性纳米粒子效应对天然气水合物形成的分子动力学模拟

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To investigate the effect of particle-based hydrate inhibitors on hydrate crystallization, molecular dynamics (MD) simulations were performed at the interface of hydrate-forming liquids where 2 nm sized silica nanoparticles are stabilized. The hydrophobic nanoparticles were prepared by functionalization of CH3 groups on the amorphous SiO2 surface, and the three-phase contact angle of the oil (CH4 + decane), the aqueous phase (water + tetrahydrofuran (THF)), and the solid was 108.7 degrees. Although the hydrates were not crystallized on the solid substrate, there was a trend that hydrate nucleation occurred on the side of the aqueous phase in the presence of nanoparticles. Through the four-body structural order parameter profiles, the formation of a low order parameter layer around the nanoparticles was observed, which originates from the reduced diffusivity by water binding. Adjacent to this layer, an elevation of the order parameter appeared in the same region where nucleation occurs because the less ordered layer acts as nucleation seeds. Indeed, a well of low free energy is formed in the presence of nanoparticles, in contrast to the non-nanoparticle system where no significant deviations were observed. Also, the driving force of hydrate nucleation is reduced with the increased nanoparticle injection. The nanoparticles prevented the diffusion of methane into the aqueous phase, resulting in a V-shape graph of induction time and delayed hydrate growth rate. These simulation results on the nanoparticle effect will provide a fundamental basis for improving the performance of particle-based inhibitors.
机译:为了研究对水合物的结晶的基于颗粒的水合物抑制剂的作用,分子动力学(MD)模拟物在的水合物形成液,其中2个纳米尺寸的二氧化硅纳米粒子被稳定的界面进行的。通过在无定形SiO 2表面上的CH 3基团的官能化制备疏水纳米粒子,以及油(CH4 +癸烷)的三相接触角,水相(水+四氢呋喃(THF)),固体为108.7度。虽然水合物在固体基质上没有结晶,但是在纳米颗粒存在下在水相的侧面发生水合物成核的趋势。通过四体结构顺序参数曲线,观察到围绕纳米颗粒周围的低阶参数层的形成,其源自通过水结合的降低的扩散率。与该层相邻,出现在发生成核的相同区域中的订单参数的升高,因为较少的有序层用作成核种子。实际上,与非纳米颗粒系统相比,在纳米颗粒存在下形成良好的无自由能量,其中没有观察到显着偏差。而且,随着纳米颗粒注射的增加,水合物成核的驱动力减小。纳米颗粒防止甲烷扩散到水相中,导致诱导时间的V形图和延迟水合物生长速率。这些模拟结果对纳米粒子效应产生了一种基础的基础,可以提高颗粒基抑制剂的性能。

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