Production Department, Egyptian Petroleum Research Institute, Naser City, Cairo, Egypt.
Production Department, Egyptian Petroleum Research Institute, Naser City, Cairo, Egypt.
Int J Biol Macromol. 2018 Sep;116:434-442. doi: 10.1016/j.ijbiomac.2018.05.056. Epub 2018 May 16.
Starch is a natural biopolymer that subjected to various chemical modifications through different industrial applications. Molecular structure of starch allow its grafting with different vinyl monomers in the presence of crosslinking agents to synthesize cross-linked hydrogels, which used in enhanced oil recovery (EOR) applications, water shutoff and drag reduction. Application of native starch in the field of petroleum reservoirs as a flooding agent suffer from some limitations concerned with microbial degradation, thermal and salinity resistance under harsh petroleum reservoir conditions. In the current research, we stated the synthesis of acryloylated starch then it's grafting with poly (Acrylamide/Vinylmethacrylate/1-Vinyl-2-pyrrolidone) terpolymer in presence of dimethylphenylvinylsilane through emulsification polymerization. Characterization and structure determination occur by different spectroscopic techniques as stated throughout the manuscript. Rheological and solution properties carried out as a function of shear rate, salinity and temperature at simulated reservoir conditions. Flooding tests carried out through linear-dimensional sandstone model at simulated reservoir conditions, and recovered oil amount calculated on volumetric basis. The obtained results indicate that the prepared starch-g-terpolymer can tolerate to severe flooding conditions of high temperature and salinity, moreover it can increase recovery factor up to 49% of residual oil saturation so considered as a promised EOR candidate.
淀粉是一种天然的生物聚合物,通过不同的工业应用,可以进行各种化学修饰。淀粉的分子结构允许其在交联剂存在的情况下与不同的乙烯基单体接枝,合成交联水凝胶,用于提高石油采收率(EOR)应用、堵水和减阻。天然淀粉在油藏领域作为驱油剂的应用受到一些限制,包括在恶劣的油藏条件下微生物降解、热稳定性和耐盐性的问题。在当前的研究中,我们首先合成了丙烯酰化淀粉,然后在二甲苯基乙烯基硅烷的存在下,通过乳液聚合将其接枝到聚(丙烯酰胺/甲基丙烯酸甲酯/1-乙烯基-2-吡咯烷酮)三元共聚物上。通过整篇论文中所述的不同光谱技术进行了表征和结构确定。在模拟油藏条件下,研究了剪切速率、盐度和温度对流变和溶液性能的影响。在模拟油藏条件下的线性尺寸砂岩模型中进行了驱油测试,并按体积计算了回收油的量。研究结果表明,所制备的淀粉-g-共聚物能够耐受高温和高盐度的恶劣驱油条件,此外,它还可以将残余油饱和度的采收率提高到 49%,因此被认为是一种有前途的 EOR 候选物。