Experimental investigation of the effects of oil asphaltene content on CO2 foam stability in the presence of nanoparticles and sodium dodecyl sulfate

IF 7 Q1 ENERGY & FUELS Petroleum Exploration and Development Pub Date : 2024-02-01 DOI:10.1016/S1876-3804(24)60020-0
Hossein SADEGHI , Ali Reza KHAZ’ALI , Mohsen MOHAMMADI
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Abstract

Foam stability tests were performed using sodium dodecyl sulfate (SDS) surfactant and SiO2 nanoparticles as foaming system at different asphaltene concentrations, and the half-life of CO2 foam was measured. The mechanism of foam stability reduction in the presence of asphaltene was analyzed by scanning electron microscope (SEM), UV adsorption spectrophotometric concentration measurement and Zeta potential measurement. When the mass ratio of synthetic oil to foam-formation suspension was 1:9 and the asphaltene mass fraction increased from 0 to 15%, the half-life of SDS-stabilized foams decreased from 751 s to 239 s, and the half-life of SDS/silica-stabilized foams decreased from 912 s to 298 s. When the mass ratio of synthetic oil to foam-formation suspension was 2:8 and the asphaltene mass fraction increased from 0 to 15%, the half-life of SDS-stabilized foams decreased from 526 s to 171 s, and the half-life of SDS/silica-stabilized foams decreased from 660 s to 205 s. In addition, due to asphaltene-SDS/silica interaction in the aqueous phase, the absolute value of Zeta potential decreases, and the surface charges of particles reduce, leading to the reduction of repulsive forces between two interfaces of thin liquid film, which in turn, damages the foam stability.

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在纳米颗粒和十二烷基硫酸钠存在下,石油沥青质含量对二氧化碳泡沫稳定性影响的实验研究
以十二烷基硫酸钠(SDS)表面活性剂和二氧化硅纳米颗粒为发泡体系,在不同沥青质浓度下进行了泡沫稳定性试验,并测量了二氧化碳泡沫的半衰期。通过扫描电子显微镜(SEM)、紫外吸附分光光度浓度测量和 Zeta 电位测量分析了沥青质存在时泡沫稳定性降低的机理。当合成油与泡沫形成悬浮液的质量比为 1:9,沥青质质量分数从 0 增加到 15%时,SDS 稳定泡沫的半衰期从 751 秒减少到 239 秒,SDS/二氧化硅稳定泡沫的半衰期从 912 秒减少到 298 秒。当合成油与泡沫形成悬浮液的质量比为 2:8 且沥青质质量分数从 0% 增加到 15% 时,SDS 稳定泡沫的半衰期从 526 秒缩短到 171 秒,SDS/二氧化硅稳定泡沫的半衰期从 660 秒缩短到 205 秒。此外,由于沥青-SDS/二氧化硅在水相中的相互作用,Zeta 电位的绝对值降低,颗粒的表面电荷减少,导致薄液膜两个界面之间的排斥力降低,进而破坏了泡沫的稳定性。
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CiteScore
11.50
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0.00%
发文量
473
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