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Thickening Time Compatibility of Geopolymer Cement for Drilling Application

机译:磨床钻井应用的增厚时间兼容性

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This paper investigates the composition of geopolymer cement for thickening time under elevated temperature and pressure. Geopolymer based-cement becoming popular in construction industries because of its improved properties either chemically and physically as compared to Ordinary Portland Cement (OPC). At the same time, replacement of OPC with geopolymer cement able to eliminate CO_2 emission due to calcination burning process. However, applications of geopolymer cement to oil and gas industry for cementing job are not well recorded. Fly ash based geopolymer cement with different percentages of slag from 0% to 10% were mixed using sodium hydroxide and sodium silicate as alkali activators. Density, fluid loss and compressive strengths were determined. The sample were cured at 3,000 psi and 65°C for 24 hours. Results show that the addition of slag reduces the thickening time from 30 minutes to just only 18 minutes with almost 40% reduction in time. In terms of density and compressive strength, an increment of slag is directly proportional as the value increased from 14.3 ppg to 15.0 ppg for density and 1,120 psi to 2,155 psi for compressive strength. For fluid loss test, increment of slag results in decrement of fluid loss from 0.64 ml to just only 0.38 ml.
机译:本文研究了在升高的温度和压力下加厚时间的缘聚合物水泥的组成。基于普通波特兰水泥(OPC)相比,基于古聚合物的水泥在建筑行业中受到改善和物理的流行。同时,用地缘聚合物水泥替换OPC,能够消除由于煅烧燃烧过程引起的CO_2发射。然而,Geo聚物水泥对油和天然气工业进行胶结作业的应用并未记录。使用氢氧化钠和硅酸钠作为碱活化剂将具有0%至10%不同百分比的粉煤灰基质聚合物水泥。确定密度,流体损失和抗压强度。将样品在3,000psi和65℃下固化24小时。结果表明,加入炉渣将增稠时间从30分钟降低到仅限18分钟,随着时间的推移近40%。就密度和抗压强度而言,炉渣的增量与密度的14.3ppg增加到15.0ppg增加到15.0ppg,并且1,120psi至2,155psi以进行抗压强度。对于流体损失试验,渣的增量导致从0.64ml减少流体损失,仅为0.38毫升。

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