Rheological Behavior of Xanthan Gum as a Polymeric Profile Modifier for Polymer Flooding Purposes

被引:0
作者
Dengaev, A.V. [1 ]
Durkin, V.V. [2 ]
Sargin, B.V. [3 ]
Safiullina, E.U. [4 ]
Savrey, D.Y. [2 ]
Shishulin, V.А. [1 ]
Ivanova, L.V. [1 ]
Abdulrachman, B. [1 ]
机构
[1] National University of Oil and Gas, Gubkin University, Moscow
[2] Ukhta State Technical University, Komi Republic, Ukhta
[3] LLC «BIG», Moscow
[4] Saint Petersburg Mining University, Oil and Gas Faculty, St. Petersburg
来源
International Journal of Engineering, Transactions B: Applications | 2025年 / 38卷 / 05期
关键词
Fluid Shear Rate; Petroleum Engineering; Polymer Waterflooding; Shear Stress; Temperature; Viscosity; Xanthan Gum;
D O I
10.5829/IJE.2025.38.05B.18
中图分类号
学科分类号
摘要
Today water-based xanthan gum structure-forming agent is used for drilling and exploitation of reservoirs with horizontal wells, high-quality separation of drilling fluids from cement slurry during well cementing, as well as fluids for drilling wells (killing fluid, blocking fluid, behind-the-packer fluid and so on), as well as jelly-like liquids for polymer water flooding and formation hydraulic fracturing. Xanthan gum is an ecologically clean product, due to which the scope of application of this product is continuously expanding. Xanthan gum is produced microbiologically in the bioreactor, which in turn is a complex multi-stage process that includes maintaining optimal conditions and the environment of bacterial activity, cultivation from the necessary bacterial strain and the culture media. Various products of secondary raw materials can be used as a nutrient medium for the production of xanthan gum, for example, low-grade wood, which reduces the cost of production, solves the problem of waste utilization and expands the possibilities of using the resulting biopolymer. Given the high variety of xanthan biopolymers available on the market, significant advantages over other products are the speed of manufacturing the product at a lower cost, the accessibility of raw materials and the production of a convenient logistics chain. All this is proposed by our research team on the basis of the use of solutions based on a biopolymer obtained using an experimental strain producing 4 times more xanthan than analogues to reach the above goals and objectives. Our research evaluates the rheological characteristics of solutions with the resulting products at various temperatures, and also considers the applied rheological models in the range of practical values of shear rates. ©2025 The author(s).
引用
收藏
页码:1180 / 1189
页数:9
相关论文
共 45 条
[1]  
Fu W, Wang Z, Sun B, Xu J, Chen L, Wang X., Rheological properties of methane hydrate slurry in the presence of xanthan gum, SPE Journal, 25, pp. 2341-2352, (2020)
[2]  
Ponmani S, Nagarajan R, Sangwai JS., Effect of nanofluids of CuO and ZnO in polyethylene glycol and polyvinylpyrrolidone on the thermal, electrical, and filtration-loss properties of water-based drilling fluids, SPE Journal, 21, pp. 405-415, (2016)
[3]  
Bavoh CB, Adam JM, Lal B., Specific heat capacity of xanthan gum/PAC polymer-based drilling fluids: An experimental and correlation study, Materials Today: Proceedings, 57, pp. 1002-1007, (2022)
[4]  
Xie Z, Yao H, Yuan Q, Zhong F., The roles of water-soluble polymers in cement-based materials: A systematic review, Journal of Building Engineering, 73, (2023)
[5]  
Liu H, Bu Y, Sanjayan JG, Nazari A, Shen Z., Suitability of polyacrylamide superabsorbent polymers as the internal curing agent of well cement, Construction and Building Materials, 112, pp. 253-260, (2016)
[6]  
Lupyana SD, Sahini MG, Kattiba SM, Gu J., Use of phyto-based polymeric material as chemical admixture in well cement slurry formulation, Upstream Oil and Gas Technology, 7, (2021)
[7]  
Dong B, Yu D, Liu W., Ultrastretchable, repairable and highly sensitive xanthan collagen nanosilver hydrogel for wide temperature flexible sensing, Chemical Engineering Journal, 470, (2023)
[8]  
Bai Y, Zhu Y, Sun J, Shang X, Wang J., High stability polymer gel for lost circulation control when drilling in fractured oil and gas formations, Geoenergy Science and Engineering, 225, (2023)
[9]  
Zhang H-J, Zhu D-Y, Gong Y-L, Qin J-H, Liu X-N, Pi Y-H, Et al., Degradable preformed particle gel as temporary plugging agent for low-temperature unconventional petroleum reservoirs: Effect of molecular weight of the cross-linking agent, Petroleum Science, 19, 6, pp. 3182-3193, (2022)
[10]  
Jia H, Chen H, Guo S., Fluid loss control mechanism of using polymer gel pill based on multi-crosslinking during overbalanced well workover and completion, Fuel, 210, pp. 207-216, (2017)