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Aluminum Oxide Nanoparticles for Highly Efficient Asphaltene Separation from Crude Oil Using Ceramic Membrane Technology

机译:氧化铝纳米粒子用于使用陶瓷膜技术从原油中高效的沥青质分离

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摘要

The effects of aluminum oxide nanoparticles on the removal of asphaltenes from an Iranian crude oil (Soroush) using a ceramic membrane with pore size of 0.2 µm were investigated. In order to achieve superior asphaltene separation by ultrafiltration, it is essential to make some changes for destabilizing asphaltene in crude oil. The asphaltene destabilization was done using crude oil contact with an acid containing dissolved metal ions. Metal oxide nanoparticles adsorbed asphaltene molecules and increased their molecular size. The nanoparticle of aluminum oxide was applied to alter precipitation and peptization properties of asphaltenes. Dynamic Light Scattering (DLS) was used to measurement of the asphaltene molecular size dissolved in toluene. Raman spectroscopy and the Tuinstra equation were used to determine the aromatic sheet diameter (La) via the integrated intensities of the G and D1 modes. This revealed that the asphaltene particles react with nano aluminum oxide and the average molecular size of asphaltene was raised from 512.754 to 2949.557 nm and La from 5.482 to 13.787. The obtained results showed that using nano aluminum oxides, asphaltene separation increased from 60–85 wt% to 90–97 wt% based on the asphaltene content of crude oil.
机译:研究了氧化铝纳米粒子对使用具有孔径为0.2μm的陶瓷膜从伊朗原油(Soroush)中除去沥青质的影响。为了通过超滤来实现优越的沥青质分离,必须对原油中搅拌沥青质不稳定的变化。使用原油接触与含有溶解的金属离子的酸进行沥青质稳定化。金属氧化物纳米颗粒吸附沥青质分子并增加它们的分子大小。氧化铝的纳米颗粒被施加以改变沥青质的沉淀和施用性质。用动态光散射(DLS)用于测量溶解在甲苯中的沥青质分子大小。 RAMAN光谱和TUINSTRA方程用于通过G和D1模式的综合强度来确定芳族片直径(LA)。这表明沥青烯颗粒与纳米氧化铝反应,从512.754至2949.557nm和la从5.482〜13.787升至沥青质的平均分子大小。得到的结果表明,基于原油的沥青质含量,使用纳米氧化铝,沥青质分离从60-85wt%增加到90-97wt%。

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