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Influence of Various Cation Valence, Salinity, pH and Temperature on Bentonite Swelling Behaviour

机译:各种阳离子,盐度,pH与温度对膨润土膨胀行为的影响

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A major issue for the oil and gas industry is the producing of high water from many fields due to massive water injection. Reducing the water production while improving oil recovery from these fields is a major challenge. Polymer gel has been widely used to shut off water-producing zones, but it is not suitable for high temperature reservoirs (> 100 °C). The aims of the present study were to investigate bentonite particles swelling properties and influence of specific ion type (monovalent/divalent) present in water in swelling behaviour, and hence their potential for plugging high water production zones. In this study series of free swelling tests were conducted on bentonite with varying salinity, pH and temperature. The study found that cation valence, salinities and pH had significant impacts on swelling performance of bentonite particles. Bentonite changed from highly swelled material to aggregate in high salinity. Test results showed that the free swelling of bentonite decreased with the increase of cation valence and concentration. Monovalent cations concentration greatly influenced the swelling volume of bentonite, whereas the influence of the increasing concentration of divalent cations was marginal. As the radius of the hydrated ionic increased, the free swell of bentonite in same valance cation solutions raised. Moderate swelling changes were obtained when the solution pH increased. Meanwhile, increases in temperature will increase the swelling of bentonite due to growth in frequency of interlayer cations and water molecules. Bentonite particles swelling could be controlled and inhibited by varying solution salinities and/or altering interlayer exchangeable cations. Thus, bentonite particles swelling will be triggered by low salinity, after it's been injected and mixed with lower reservoir water salinity.
机译:石油和天然气行业的主要问题是由于巨大的注水,来自许多领域的高水位。降低水产产量,同时从这些领域改善石油恢复是一个重大挑战。聚合物凝胶已被广泛用于关闭生产区,但不适用于高温储层(> 100°C)。本研究的目的是探讨膨润土颗粒溶胀性能,以及在水中存在于溶胀行为中的特定离子型(单价/二价)的影响,因此它们堵塞高水平生产区的可能性。在这项研究中,在膨润土中进行系列的自由溶胀试验,具有不同的盐度,pH和温度。该研究发现,阳离子价,盐度和pH对膨润土颗粒的溶胀性能产生显着影响。膨润土从高膨胀的材料变为高盐度聚集。试验结果表明,随着阳离子价和浓度的增加,膨润土的自由肿胀降低。单价阳离子浓度极大地影响了膨润土的溶胀体积,而二价阳离子的增加的影响是边缘的。随着水合离子的半径增加,膨润土的自由膨胀在相同的抗阳离子溶液中升高。当溶液pH增加时,获得了中度溶胀变化。同时,由于层间阳离子和水分子的频率的生长,温度的增加将增加膨润土的肿胀。通过不同的溶液盐度和/或改变层间可交换阳离子,可以控制和抑制膨润土颗粒溶胀。因此,膨润土颗粒溶胀将通过低盐度触发,然后被注入并与储层水盐度混合。

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