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Nanofluid-assisted gas to hydrate (GTH) energy conversion for promoting CO2 recovery and sequestration processes in the petroleum industry

机译:纳米流体辅助的天然气到水合物(GTH)的能量转换,以促进石油工业中的CO2回收和封存过程

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摘要

In this work the enhancement of gas to hydrate conversion employing the nanographene oxide (NGO)-based nanofluid regarding CO2 capture and sequestration recovery is investigated. A new series of experiments are carried out at different pressures, temperatures, agitation intensities and NGO promoter concentrations by using a newly developed fully automated GTH (gas to hydrate) energy converter. According to the presented results at the 3 MPa and 275.15 K and in the presence of 30 ppm NGO, it is possible to reach a CO2 gas to hydrate conversion of 95% at a low impeller speed in less than 2.5 h, which is quite interesting from an energy consumption standpoint. The presented approach can have potential application for development of low cost hydrate-based carbon dioxide recovery plants in petroleum industry.
机译:在这项工作中,研究了使用基于氧化石墨烯(NGO)的纳米流体来提高气体到水合物的转化率,从而提高了CO2的捕集和封存率。通过使用新开发的全自动GTH(气水合)能量转换器,在不同的压力,温度,搅拌强度和NGO促进剂浓度下进行了一系列新的实验。根据在3 MPa和275.15 K下以及在存在30 ppm NGO的情况下给出的结果,有可能在不到2.5小时的低叶轮速度下实现95%的CO2气体转化为水合物的过程,这非常有趣从能源消耗的角度来看。所提出的方法可以在石油工业中开发低成本的基于水合物的二氧化碳回收装置中具有潜在的应用。

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