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用于高温油藏临时封堵的可降解凝胶及其性能

Degradable Gel for Temporary Plugging in High Temperature Reservoir and Its Properties.

作者信息

Yang Fan, Liu Jinhua, Ji Renjing, Yu Xiaorong, Yang Huan, Su Gaoshen

机构信息

State Key Laboratory of Shale Oil and Gas Enrichment Mechanisms and Effective Development, Beijing 102206, China.

Sinopec Research Institute of Petroleum Engineering Co., Ltd., Beijing 102206, China.

出版信息

Gels. 2024 Jul 5;10(7):445. doi: 10.3390/gels10070445.

Abstract

Although various degradable gel materials have been developed for temporary plugging in oil fields, they often degrade too quickly in high-temperature environments. To address this issue, an unstable crosslinker was synthesized to prepare a high-temperature degradable gel. This gel does not degrade excessively fast at high temperatures. Temperature and crosslinker concentration are the primary factors influencing gel degradation time, followed by monomer and initiator concentrations. Increased temperature and decreased crosslinker concentration both reduce degradation time, which can be adjusted within the range of 90-130 °C by varying the crosslinker concentration. The molecular structure and thermal stability of the degradable gel were analyzed using FTIR, C NMR, and TG. Furthermore, the viscoelastic properties, compressive performance, plugging performance, and core damage performance of the gel were evaluated. Within the test range of 0.1-1000 Pa, the storage modulus is higher than the loss modulus. The gel prepared at 130 °C exhibited a compressive stress of 0.25 MPa at 50% strain. The plugging pressure of the gel in sand-filled tubes with varying permeabilities (538.2-2794.1 mD) exceeded 15 MPa while maintaining a core damage rate below 5%. SEM analysis indicated that the degradation mechanism of the gel may involve the collapse of its three-dimensional network structure due to the hydrolysis of amide groups in the crosslinker. The viscosity of the degradation liquid was below 11 mPa·s, enabling it to be brought back to the surface with the formation fluid without the need for further breaking operations.

摘要

尽管已经开发出各种可降解凝胶材料用于油田的临时封堵,但它们在高温环境下往往降解过快。为了解决这个问题,合成了一种不稳定的交联剂来制备高温可降解凝胶。这种凝胶在高温下不会过度快速降解。温度和交联剂浓度是影响凝胶降解时间的主要因素,其次是单体和引发剂浓度。温度升高和交联剂浓度降低都会缩短降解时间,通过改变交联剂浓度可在90 - 130°C范围内进行调节。使用傅里叶变换红外光谱(FTIR)、碳核磁共振(C NMR)和热重分析(TG)对可降解凝胶的分子结构和热稳定性进行了分析。此外,还评估了凝胶的粘弹性、抗压性能、封堵性能和岩心伤害性能。在0.1 - 1000 Pa的测试范围内,储能模量高于损耗模量。在130°C制备的凝胶在50%应变下表现出0.25 MPa的压缩应力。该凝胶在不同渗透率(538.2 - 2794.1 mD)的填砂管中的封堵压力超过15 MPa,同时岩心伤害率保持在5%以下。扫描电子显微镜(SEM)分析表明,凝胶的降解机制可能涉及交联剂中酰胺基团水解导致其三维网络结构的坍塌。降解液的粘度低于11 mPa·s,使其能够随地层流体返排至地面,无需进一步破胶作业。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6256/11275334/332decf25f9e/gels-10-00445-g001.jpg

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