纳米SiO2膨胀驱油剂提高采收率

TE311; 渗透压作为低矿化度水驱提高采收率新机理近年来得到了广泛研究,注入水中水分子在渗透压作用驱动下进入被油滴包裹的水滴中,使原油发生表观膨胀现象.但目前仅靠渗透压作用对原油膨胀的效果不明显,且对于原油膨胀的研究仅限于定性研究,缺乏定量分析.本研究引入3种纳米SiO2作为原油膨胀强化驱油剂,以油包水(W/O)乳状液模拟油藏中原始油水分布,观察W/O乳状液液滴的膨胀效果,并计算膨胀倍数.实验结果表明:亲水和疏水纳米SiO2均能起到强化原油膨胀的效果,且由于亲水硅溶胶(HS-40)具有更小的粒径和较高的Zeta电位绝对值,对原油的膨胀效果更好.随着HS-40质量分数增加,在吸附作用下,油水界...

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Published in深圳大学学报(理工版) Vol. 38; no. 6; pp. 613 - 620
Main Authors 吴一宁, 晏翔, 唐丽莎, 黄永平, 曹梦娇, 代英杰, 何龙, 杨利萍
Format Journal Article
LanguageChinese
Published 中国石油大学(华东)石油工程学院,山东省油田化学重点实验室,山东青岛266580%中国石化集团西北石油局有限公司,新疆乌鲁木齐830011 30.11.2021
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ISSN1000-2618
DOI10.3724/SP.J.1249.2021.06613

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Abstract TE311; 渗透压作为低矿化度水驱提高采收率新机理近年来得到了广泛研究,注入水中水分子在渗透压作用驱动下进入被油滴包裹的水滴中,使原油发生表观膨胀现象.但目前仅靠渗透压作用对原油膨胀的效果不明显,且对于原油膨胀的研究仅限于定性研究,缺乏定量分析.本研究引入3种纳米SiO2作为原油膨胀强化驱油剂,以油包水(W/O)乳状液模拟油藏中原始油水分布,观察W/O乳状液液滴的膨胀效果,并计算膨胀倍数.实验结果表明:亲水和疏水纳米SiO2均能起到强化原油膨胀的效果,且由于亲水硅溶胶(HS-40)具有更小的粒径和较高的Zeta电位绝对值,对原油的膨胀效果更好.随着HS-40质量分数增加,在吸附作用下,油水界面处的表面活性物质进入原油内部,加速原油膨胀;在HS-40质量分数为0.20%时原油膨胀倍数达到最高,为3.29倍;当HS-40质量分数继续增加,纳米SiO2颗粒将阻碍水分子在油水界面处的传质.当地层水与注入水之间存在较大的矿化度差异时,纳米SiO2的存在能加速原油表观膨胀现象,该现象为低矿化度水驱提供了 一个新思路.
AbstractList TE311; 渗透压作为低矿化度水驱提高采收率新机理近年来得到了广泛研究,注入水中水分子在渗透压作用驱动下进入被油滴包裹的水滴中,使原油发生表观膨胀现象.但目前仅靠渗透压作用对原油膨胀的效果不明显,且对于原油膨胀的研究仅限于定性研究,缺乏定量分析.本研究引入3种纳米SiO2作为原油膨胀强化驱油剂,以油包水(W/O)乳状液模拟油藏中原始油水分布,观察W/O乳状液液滴的膨胀效果,并计算膨胀倍数.实验结果表明:亲水和疏水纳米SiO2均能起到强化原油膨胀的效果,且由于亲水硅溶胶(HS-40)具有更小的粒径和较高的Zeta电位绝对值,对原油的膨胀效果更好.随着HS-40质量分数增加,在吸附作用下,油水界面处的表面活性物质进入原油内部,加速原油膨胀;在HS-40质量分数为0.20%时原油膨胀倍数达到最高,为3.29倍;当HS-40质量分数继续增加,纳米SiO2颗粒将阻碍水分子在油水界面处的传质.当地层水与注入水之间存在较大的矿化度差异时,纳米SiO2的存在能加速原油表观膨胀现象,该现象为低矿化度水驱提供了 一个新思路.
Author 吴一宁
杨利萍
曹梦娇
唐丽莎
晏翔
代英杰
黄永平
何龙
AuthorAffiliation 中国石油大学(华东)石油工程学院,山东省油田化学重点实验室,山东青岛266580%中国石化集团西北石油局有限公司,新疆乌鲁木齐830011
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Author_FL WU Yining
CAO Mengjiao
YANG Liping
HE Long
HUANG Yongping
DAI Yingjie
YAN Xiang
TANG Lisha
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DocumentTitle_FL Enhancing oil recovery by nano SiO2 expansion oil displacement agent
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Keywords 油田开发;纳米SiO2;油滴膨胀;提高采收率;渗透压;低矿化度水驱
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Snippet TE311; 渗透压作为低矿化度水驱提高采收率新机理近年来得到了广泛研究,注入水中水分子在渗透压作用驱动下进入被油滴包裹的水滴中,使原油发生表观膨胀现象.但目前仅靠渗透...
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Title 纳米SiO2膨胀驱油剂提高采收率
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