论文标题

结构刚度和集体行为在气体水合分子设计中的作用

Role of Structural Rigidity and Collective Behaviour in the Molecular Design of Gas Hydrates Anti-Agglomerants

论文作者

Sicard, François, Striolo, Alberto

论文摘要

抗壮大(AAS)是在橡胶和石油工业中广泛使用的表面活性分子。在石油工业中,据信AAS强烈吸附到水合物颗粒的表面,以防止油管道中覆盖水合物的生长。它们的分子结构的微小变化可以强烈影响整个系统的热力学和动力学稳定性。在这里,我们采用分子动力学模拟来研究分子结构的修饰,刚性和集体效应的相互作用,该AA旨在防止在摇滚细胞实验中遇到的条件下进行水合物聚集。 AAS是表面活性化合物,具有复杂的亲水性头部和三个疏水尾巴,其结构刚度通过简单芳族组的附着增强。我们观察到,芳香族组可能会对AA的性能产生积极或负面影响,具体取决于其沿疏水性尾巴的位置。我们的方法是基于首先量化负责宏观性能的分子机制。尽管起作用的机制取决于应用程序,但实施的方法可能适用于其他高科技行业,必须控制小颗粒的集聚。

Antiagglomerants (AAs) are surface active molecules widely used in the rubber and petroleum industry, among others. In the petroleum industry, it is believed that AAs strongly adsorb to the surface of hydrate particles to prevent the growth of clathrate hydrate within oil pipelines. Small changes in their molecular structures can strongly affect the thermodynamic and kinetic stability of the system as a whole. Here we employ molecular dynamics simulations to study the interplay between the modification of the molecular structure, rigidity and collective effects of AAs designed to prevent hydrate agglomeration in the conditions encountered in rocking cell experiments. The AAs are surface-active compounds with a complex hydrophilic head and three hydrophobic tails whose structural rigidity is enhanced with the attachement of a simple aromatic group. We observe that the aromatic group can positively or negatively affect the performance of the AAs, depending on its location along the hydrophobic tail. Our approach is based on first quantifying the molecular mechanisms responsible for the macroscopic performance. Although the mechanisms at play depend on the application, the methodology implemented could be applicable to other high-tech industries, where the agglomeration of small particles must be controlled.

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