首页> 外文期刊>Geosciences >Experimental Assessment of the Sealing Potential of Hydrated Solgel for the Remediation of Leaky Reservoirs
【24h】

Experimental Assessment of the Sealing Potential of Hydrated Solgel for the Remediation of Leaky Reservoirs

机译:水合溶胶凝胶对渗漏油藏的修复潜力的实验评估

获取原文
           

摘要

The full-scale deployment of underground storage of CO 2 in permeable sedimentary reservoirs depends strongly on the sealing capacity of the caprocks and wellbore cement that may be degraded leading to hydraulic discontinuities. Remediation technologies consisting in rebuilding the sealing capacity of the degraded material, or adding a new sealing layer, is a critical issue as part of the risk mitigation procedure required for underground CO 2 storage. Actually, engineered Portland cement injection is the foremost available industrial technique; however, alternative products offering, for instance, better injection properties, are currently investigated with variable success so far. In this study, a new technique aimed at using a low viscosity hydrated solgel as sealant product in case of leakage is presented. Its low cost, high injectivity capacity and low density of the hydrated product (hydrogel) makes this technique attractive. The solgel synthesis was optimized for (1) reducing energetic and material costs; (2) improving the chemical and mechanical properties of the emplaced product and (3) controlling the duration of the aging process in order to form a solid hydrogel after a few days. Permeability tests that consisted of injecting the synthesized solgel in different porous media confirmed the sealant capacity of the emplaced hydrogel to significantly reduce rock permeability.
机译:在可渗透沉积储层中CO 2地下存储的全面部署在很大程度上取决于盖层和井眼水泥的密封能力,这些密封能力可能会降低,从而导致水力不连续性。修复技术(包括重建降解材料的密封能力或添加新的密封层)是至关重要的问题,它是降低地下CO 2储存所需的风险的一部分。实际上,工程波特兰水泥注入是最重要的工业技术。但是,到目前为止,替代产品提供了更好的注射性能,例如,目前取得了不同的成功。在这项研究中,提出了一种新技术,旨在在泄漏的情况下使用低粘度水合溶胶凝胶作为密封剂产品。它的低成本,高注入能力和低密度的水合产物(水凝胶)使该技术具有吸引力。溶胶凝胶的合成经过优化,可用于(1)降低能量和材料成本; (2)改善封装产品的化学和机械性能,以及(3)控制老化过程的持续时间,以便在几天后形成固体水凝胶。渗透测试包括将合成的溶胶凝胶注入不同的多孔介质中,这证实了水凝胶的密封能力显着降低了岩石的渗透性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号