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Rapid methane hydrate formation to develop a cost effective large scale energy storage system

机译:快速甲烷水合物形成开发成本效益的大型储能系统

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摘要

Natural gas (NG) is the cleanest burning fossil fuel and its usage can significantly reduce CO2 emissions from power plants. With its widespread use, there is an ever increasing need to develop technologies to store NG on a large scale. NG storage via clathrate hydrates is the best option for a large scale storage system because of its non-explosive nature, mild storage conditions, high volumetric capacity and being an environmentally benign process. In this work, we demonstrate a new method to achieve rapid methane hydrate formation in an unstirred tank reactor configuration (UTR) at moderate temperature and pressure conditions employing tetrahydrofuran (THF) as a promoter. For the first time, THF is reported to act both as a thermodynamic and an excellent kinetic promoter for methane hydrate formation. We demonstrate a multi-scale experimental validation of our method to a volumetric sample scale-up factor of 120 and internal reactor diameter scale-up factor of 10. Further, new insights on the dissociation behavior of the hydrates are reported. There is a competitive edge for storing NG via clathrate hydrates compared to compressed natural gas storage both in terms of cost and safety. (C) 2016 Elsevier B.V. All rights reserved.
机译:天然气(NG)是最干净的燃烧化石燃料,其使用可以显着减少发电厂的二氧化碳排放量。凭借其广泛的使用,有需要越来越需要开发技术,以大规模地存储NG。通过Clathrate水合物的NG存储是大规模存储系统的最佳选择,因为其非爆炸性性质,轻度储存条件,高容量,以及环境良好的过程。在这项工作中,我们证明了一种在使用四氢呋喃(THF)作为启动子的中等温度和压力条件下在不误荷载反应器构型(UTR)中实现快速甲烷水合物形成的新方法。据报道,THF作为甲烷水合物形成的热力学和优异的动力学启动子。我们展示了我们对120和内部反应器直径放大因子的体积样本刻度增加因子的多尺度实验验证,并报告了对水合物解离行为的新见解。在成本和安全性方面,与压缩天然气存储相比,通过Clathrate水合物存储NG的竞争优势。 (c)2016年Elsevier B.v.保留所有权利。

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