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On evaluating the potential of nanocomposites for heavy oil recovery

机译:评估纳米复合材料的潜在重油回收

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The present work investigates potential of nanocomposite (NCP) for enhancing the production in heavy oil formation. NCP was extracted from bauxite ore and the spectral characterization revealed that NCP was a crystalline material whose matrix consists of 64.5 wt.% alumina oxide (Al2O3), 15.7 wt.% iron oxide (Fe2O3), and 19.8 wt.% silica oxide (SiO2). The nanocomposite fluid, obtained by dispersing NCP into the targeted formation brine, showed a good dispersion over the two first days beyond which a hetero-aggregation, visible to the naked eye, was observed. Coreflooding assays, performed on Berea sandstone saturated with a heavy mineral oil (ρ?=?0.854?g/cm3), revealed that 0.25wt.% of NCP dispersed in the formation brine yields a poor recovery. However, increasing the load in NCP from 0.25 to 0.75 wt.% and subsequently 1 wt.% using the same formation brine, showed an increase in the oil recovery up to 14.1% after the waterflooding stage. It was further found that the RF could be as high as 18.3% if 0.25 wt.% NCP was dispersed in a surface-active material (Polyvinyl alcohol, PVA in this study). The result was 4% higher than a scenario in which PVA was used alone. Moreover, it was shown that altering the composition of the preflush could increase the production to up to 11.3%. A comparative analysis with single nanoparticle revealed that the EOR using NCP was six-fold higher compared to that of SiO2?taken alone and 1.5-fold lower than those of Al2O3?or Fe2O3?taken alone.
机译:本作研究研究了纳米复合材料(NCP)的潜力,以提高重油形成的产量。从铝土矿矿石中提取NCP,并且光谱表征显示NCP是晶体材料,其基质由64.5重量%的氧化铝(Al 2 O 3),15.7重量%。%氧化铁(Fe 2 O 3)和19.8重量%二氧化硅氧化物(SiO2 )。通过将NCP分散到靶向地层盐水中获得的纳米复合液显示出良好的分散体,在两天之外,观察到肉眼可见的杂聚集。 CoreFlood测定,在烧伤饱和矿物油(ρα=0.854μlc/ cm3)上进行的贝雷砂岩进行,揭示了0.25wt。分散在地层盐水中的NCP%差异不良。然而,将NCP中的载荷从0.25%增加到0.25%至0.75重量%。%和随后使用相同的形成盐水的%,在水性阶段之后的储存量增加至14.1%。进一步发现,如果0.25重量%,则RF可以高达18.3%。%NCP分散在该研究中的表面活性物质(聚乙烯醇,PVA)中。结果比单独使用PVA的情况高出4%。此外,表明,改变素制的组成可以将产量增加到高达11.3%。用单纳米粒子的比较分析显示,与SiO 2相比,使用NCP的EOR六倍倍为六倍?仅比Al 2 O 3低1.5倍以下的1.5倍?单独服用。

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