Experimental Investigation of Ultrasound-Assisted Weak-Acid Hydrolysis of Crystalline Starch Nanoparticles for Chemical Enhanced Oil Recovery

R. Junin, A. Agi
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引用次数: 1

Abstract

Ascorbic acid was used to synthesize crystalline starch nanoparticles (CSNP) for the first time. The CSNP was isolated and the influence of the process variables on the physical properties, recovery yield and crystallinity were studied. Rheology of crystalline starch nanofluid (CSNF) was compared with cassava starch (CS) solution and xanthan. Interfacial tension (IFT) of CSNF was studied at various concentration and temperatures. Influence of concentration, temperature, salinity and their interaction with ultrasound were investigated. Sessile drop contact angle method was used to determine the wettability proficiency of CSNF on an initially oil-wet sandstone core. To justify the finding highlighted above, CSNF and CS solution were applied for EOR purposes at reservoir condition. The approaches were efficient in generating sphere-shaped and elongated nanoparticles (50 nm mean diameter) and higher yield of 39%. Increase in concentration, surface area and temperature of CS and CSNF increased viscosity in comparison to decline in viscosity as the temperature increases for xanthan. Increased concentration, salinity and temperature rise of CSNF decreased IFT and altered the wettability of the sandstone core. CSNF increased the oil recovery by 23% and was effective at high temperature high pressure reservoir conditions. The energy consumption and cost estimation has demonstrated that the methods and polymeric nanofluid are cost-effective than traditional methods and products.
超声辅助弱酸水解纳米晶体淀粉化学提高采收率的实验研究
首次利用抗坏血酸合成了晶体淀粉纳米颗粒(CSNP)。分离了CSNP,研究了工艺参数对其物理性质、回收率和结晶度的影响。研究了结晶淀粉纳米流体(CSNF)与木薯淀粉(CS)溶液和黄原胶的流变性。研究了不同浓度和温度下CSNF的界面张力(IFT)。考察了浓度、温度、盐度对超声的影响及其与超声的相互作用。采用固滴接触角法测定了CSNF在初始油湿砂岩岩心上的润湿性。为了验证上述发现,CSNF和CS解决方案应用于油藏条件下的EOR目的。该方法可有效制备球形和细长纳米颗粒(平均直径50 nm),产率高达39%。CS和CSNF的浓度、表面积和温度的增加增加了黄原胶的粘度,而粘度随着温度的升高而下降。CSNF浓度的增加、盐度的升高和温度的升高降低了IFT,改变了砂岩岩心的润湿性。CSNF提高了23%的采收率,在高温高压油藏条件下有效。能源消耗和成本估算表明,该方法和聚合物纳米流体比传统方法和产品更具成本效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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