成熟领域

研究调查枯竭页岩储层中的氢储存

本文补充了正在进行的氢储存研究,重点是有效提取氢以储存在枯竭的非常规地层中。

使用座滴法评估润湿性的设置。
图1-使用座滴法评估润湿性的装置。
资料来源:SPE 213851。

多孔介质地下储氢(UHSP)的主要挑战之一是确保在长时间存储后有效提取氢气。如果要探索在枯竭产油页岩储层中进行高效超高速超高速处理的可能性,则应确定在整个储存期间氢与残余油的相互作用是否会导致在氢提取过程中回收不期望数量的石油。完整论文中详细介绍的研究补充了正在进行的氢储存研究,重点是有效提取氢,以潜在地储存在枯竭的非常规地层中。

材料和方法

核心样品制备。圆柱形岩心样品是用 1.5 英寸的直径准备的。直径和 3 英寸。

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Mature fields

Study Investigates Hydrogen Storage in Depleted Shale Reservoirs

This paper adds to ongoing research in hydrogen storage, focusing on efficient extraction of hydrogen to be stored potentially in depleted unconventional formations.

Setup for wettability evaluation using the sessile-drop method.
Fig. 1—Setup for wettability evaluation using the sessile-drop method.
Source: SPE 213851.

One of the main challenges of underground hydrogen storage in porous media (UHSP) is ensuring efficient hydrogen extraction after long storage periods. If the possibility of efficient UHSP in depleted oil-producing shale reservoirs is to be explored, it should be ascertained whether hydrogen interaction with residual oil throughout the storage period leads to recovering undesirable amounts of oil during hydrogen extraction. The study detailed in the complete paper adds to the ongoing research in hydrogen storage, focusing on efficient extraction of hydrogen to be stored potentially in depleted unconventional formations.

Materials and Methods

Core-Sample Preparation. Cylindrical core samples were prepared with a 1.5-in. diameter and a 3-in.

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