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Study of an asphaltene electrodeposition strategy for Colombian extra-heavy crude oils boosted by the simultaneous effects of an external magnetic field and ferromagnetic composites

机译:外部磁场和铁磁复合材料同时效应促进哥伦比亚超重原油的沥青质电沉积策略研究

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Asphaltenes removal from heavy and extra-heavy crudes is paramount within the oil industry. This work describes several electrodeposition studies by considering the simultaneous presence of external magnetic fields and ferromagnetic nanoparticles, i.e., composite carbon-nano magnetite nanoparticles (CMG). To do so, we used a Colombian extra-heavy crude oil. With the conventional electrodeposition technique, it is possible to separate up to 46% of the asphaltenes present in the original oil. In contrast, after the proposed electrodeposition process, results show asphaltene removals between 45% and 55%. The highest percentages relate to the process where an external with both, magnetic field and nanoparticles with magnetic properties. The asphaltene fractions were characterized by spectroscopic (FTIR) and thermogravimetric (TGA) techniques. We also carried out a compositional analysis. The nanoparticles were characterized by X-ray powder detraction (XRD) utilizing a Bruker D8 Advance equipment with DaVinci geometry. Its morphology was analyzed using the Quanta FEG 650 Scanning Electron Microscope (SEM), with a FEG electron source, and a scattered electron image detector type SSD, with an EDS detector type EDAX APOLLO X and a resolution of 126.1 eV. The percentages of carbon, nitrogen, sulfur, and hydrogen were also determined using the Vario CUBE equipment. The CMG thermal behavior was analyzed under the same operating conditions as the asphaltenes and utilizing the Netzsch 449 F1 equipment. Likewise, the electrode deposits were characterized physicochemically to corroborate that, in all cases, they corresponded to asphaltene fractions.
机译:在石油工业中,沥青中从沉重和超重的尺寸中取出至关重要。本作品通过考虑外部磁场和铁磁性纳米颗粒的同时存在,描述了几种电沉积研究,即复合碳 - 纳米磁铁矿纳米粒子(CMG)。为此,我们使用了哥伦比亚超重原油。利用传统的电沉积技术,可以分离出在原油中存在的46%的沥青质。相比之下,在提出的电沉积过程之后,结果显示沥青质去除了45%和55%之间。最高百分比与具有磁性特性的磁场和纳米颗粒的外部的过程相关。通过光谱(FTIR)和热重度(TGA)技术以沥青质馏分特征。我们还进行了组成分析。纳米颗粒的特征在于利用具有Davinci几何的Bruker D8先进设备的X射线粉末脱裂(XRD)。使用Quanta Feg 650扫描电子显微镜(SEM),用FEG电子源和散射的电子图像检测器类型SSD分析其形态,具有EDS检测器型EDAX Apollo X和126.1eV的分辨率。还使用VARIO立方体设备测定碳,氮,硫和氢的百分比。在与沥青质相同的操作条件下分析CMG热行为,并利用NetZSCH 449 F1设备。同样地,将电极沉积物的特征性地表征以证实,在所有情况下,它们对应于沥青质级分。

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