Department of Environmental Studies for Advanced Society, Graduate School of Environmental Studies, Tohoku University, Sendai, 9808579, Japan.
Technical Division, Research Center, Japan Petroleum Exploration Co., Ltd. (JAPEX), Chiba, 2610025, Japan.
Sci Rep. 2021 Oct 7;11(1):19994. doi: 10.1038/s41598-021-99511-6.
Improving geothermal systems through hydraulic stimulation to create highly permeable fractured rocks can induce seismicity. Therefore, the technique must be applied at a moderate intensity; this has led to concerns of insufficient permeability enhancement. Adding chemical stimulation can mitigate these issues, but traditional methods using strong mineral acids have challenges in terms of achieving mineral dissolution over long distances and highly variable fluid chemistry. Here, we demonstrate a novel chemical stimulation method for improving the permeability of rock fractures using a chelating agent that substantially enhances the dissolution rate of specific minerals to create voids that are sustained under crustal stress without the challenges associated with the traditional methods. Applying this agent to fractured granite samples under confining stress at 200 °C in conjunction with 20 wt% aqueous solutions of sodium salts of environmentally friendly chelating agents (N-(2-hydroxyethyl)ethylenediamine-N, N', N'-triacetic acid and N, N-bis(carboxymethyl)-L-glutamic acid) at pH 4 was assessed. A significant permeability enhancement of up to approximately sixfold was observed within 2 h, primarily due to the formation of voids based on the selective dissolution of biotite. These results demonstrate a new approach for chemical stimulation.
通过水力压裂来改善地热系统,以形成高渗透性的断裂岩石,可能会引发地震。因此,该技术必须适度应用;这导致了人们对渗透率增强不足的担忧。添加化学刺激可以缓解这些问题,但传统的使用强矿物酸的方法在实现长距离矿物溶解和高度可变的流体化学方面存在挑战。在这里,我们展示了一种使用螯合剂来改善岩石裂缝渗透性的新型化学刺激方法,这种螯合剂可以显著提高特定矿物的溶解速率,从而在不涉及传统方法所面临的挑战的情况下,在壳层应力下产生持续的空隙。在 200°C 的围压下,将该试剂应用于断裂的花岗岩样品中,并结合环境友好螯合剂(N-(2-羟乙基)乙二胺-N,N',N'-三乙酸和 N,N-双(羧甲基)-L-谷氨酸)的 20wt%水溶液,pH 值为 4,进行了评估。在 2 小时内,观察到渗透率显著提高了约六倍,这主要是由于基于黑云母选择性溶解的空隙形成。这些结果展示了一种新的化学刺激方法。