150℃水热环境下PVA薄片促进偏硅酸钠活化水泥自降解的作用

T. Sugama, T. Pyatina, A. Muraca
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引用次数: 3

摘要

研究了聚乙烯醇(PVA)片对偏硅酸钠(SMS)活性矿渣/C类粉煤灰水泥自降解的影响,该水泥在³150°C和1000 psi的热液环境下用于增强型地热系统(EGS)井的裂缝临时密封。在85°C的水溶液中溶解PVA和SMS之间的反应导致在水泥体中形成胶体羟基化硅酸盐交联PVA凝胶。这种凝胶水泥的抗压强度大于2000psi,因此可以确保其充分封堵裂缝。当水热温度升高到³150°C时,凝胶转变为溶胶。由于溶胶在水泥体内广泛扩散,并从水泥中浸出,这种原位gel®溶胶相变对促进水泥的自降解起着关键作用。相反,当凝胶在³150°C下干燥加热时,gel®干凝胶相变导致PVA分子破碎。这种破碎产生了聚硅酸交联的PVA,它是由延伸链断裂、羧基化和缩合结合而成的,因此它不再作为水泥的自降解促进剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of PVA Flakes in Promoting Self-Degradation of Sodium Metasilicate-Activated Cement under a Hydrothermal Environment at 150°C
We investigated the effect of flakes of polyvinyl alcohol (PVA) on the self-degradation of sodium metasilicate (SMS)-activated slag/Class C fly ash cement, which is used as temporary sealer for fractures in Enhanced Geothermal System (EGS) wells under a hydrothermal environment at ³150°C and at pressure of 1000 psi. The reactions between PVA and SMS dissolved in an aqueous medium at 85°C led to the formation of a colloidal hydroxylated silicate-cross-linked PVA gel in the cement body. This gel-incorporated cement had a compressive strength >2000 psi, so ensuring that it adequately plugs the fractures. Increasing the hydrothermal temperature to ³150°C triggered the transformation of the gel into a sol. This in-situ gel®sol phase transition played a pivotal role in promoting the cement’s self-degradation because of the extensive spreading of sol in the cement body, and its leaching from the cement. In contrast, when gel was dry heated at ³150°C, the gel®xerogel phase transformation engendered the molecular fragmentation of PVA. This fragmentation yielded polysilicate cross-linked PVA derived from the combination of extended-chain scission, carboxylation and condensation, so that it no longer served as a self-degrading promoter of cement..
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