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Hydrophobic amino acids as a new class of kinetic inhibitors for gas hydrate formation

机译:疏水氨基酸作为气体水合物形成的新型动力学抑制剂

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摘要

As the foundation of energy industry moves towards gas, flow assurance technology preventing pipelines from hydrate blockages becomes increasingly significant. However, the principle of hydrate inhibition is still poorly understood. Here, we examined natural hydrophobic amino acids as novel kinetic hydrate inhibitors (KHIs), and investigated hydrate inhibition phenomena by using them as a model system. Amino acids with lower hydrophobicity were found to be better KHIs to delay nucleation and retard growth, working by disrupting the water hydrogen bond network, while those with higher hydrophobicity strengthened the local water structure. It was found that perturbation of the water structure around KHIs plays a critical role in hydrate inhibition. This suggestion of a new class of KHIs will aid development of KHIs with enhanced biodegradability, and the present findings will accelerate the improved control of hydrate formation for natural gas exploitation and the utilization of hydrates as next-generation gas capture media.
机译:随着能源工业的基础转向天然气,防止管道被水合物阻塞的流量保证技术变得越来越重要。但是,对水合物抑制的原理仍知之甚少。在这里,我们检查了天然疏水氨基酸作为新型动力学水合物抑制剂(KHIs),并通过将其用作模型系统研究了水合物抑制现象。发现具有较低疏水性的氨基酸是更好的KHIs,可通过破坏水氢键网络来延缓成核和延缓生长,而具有较高疏水性的氨基酸可增强局部水结构。发现KHI周围水结构的扰动在水合物抑制中起关键作用。有关新型KHIs的建议将有助于具有增强的生物降解性的KHIs的开发,目前的发现将加快对天然气开采中水合物形成的更好控制,以及将水合物用作下一代气体捕获介质。

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