58
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Dynamic gel-forming properties of cardanol modified phenolic resin gel system in long snake-like simulation core with heterogeneity matching actual reservoir conditions

, , ORCID Icon, , , & show all
Pages 11207-11223 | Received 18 Jul 2023, Accepted 03 Sep 2023, Published online: 11 Sep 2023

References

  • Aldhaheri, M., M. Wei, N. Zhang, and B. Bai. 2019. A review of field oil-production response of injection-well gel treatments. SPE Reservoir Evaluation & Engineering 190164:1–15. doi:10.2118/190164-PA.
  • Al-Shajalee, F., M. Arif, J. Machale, M. Verrall, M. Almobarak, S. Iglauer, and C. Wood. 2020. A multiscale investigation of cross-linked polymer gel injection in sandstone gas reservoirs: implications for water shutoff treatment. Energy & Fuels 34 (11):14046–14057. doi:10.1021/acs.energyfuels.0c02858.
  • Baojun, B., Z. Jia, and Y. Mingfei. 2015. A comprehensive review of polyacrylamide polymer gels for conformance control. Petroleum Exploration and Development 42 (4):525–32. doi:10.1016/S1876-3804(15)30045-8.
  • Caili, D., Z. Chenwei, L. Yifei, Y. Qing, T. Ying, W. Chuan, and S. Chaohui. 2018. Matching principle and in-depth profile control mechanism between elastic dispersed particle gel and pore throat. Acta Petrolei Sinica 4:427–34.
  • Caili, D., L. Yifei, Z. Chenwei, Y. Qing, Y. Shuai, Z. Mingwei, Z. Guang, W. Yining, and S. Yongpeng. 2017. Investigation on matching relationship between dispersed particle gel (DPG) and reservoir pore-throats for in-depth profile control. Fuel 207:109–20. doi:10.1016/j.fuel.2017.06.076.
  • Chenglin, G., L. Yahui, F. Xiqun, Z. Changxi, D. Caili, and Z. Guang. 2018. Study on rheology and microstructure of phenolic resin cross-linked nonionic polyacrylamide (NPAM) gel for profile control and water shutoff treatments. Journal of Petroleum Science and Engineering 169:546–52. doi:10.1016/j.petrol.2018.06.016.
  • Daiyin, Y., S. Shuang, X. Qi, and L. Kai. 2020. Experimental Research on the optimization and evaluation of the polymer/Chromium-Ion deep profile control system for the fractured low-permeability reservoirs. Processes 8 (9):1021. doi:10.3390/pr8091021.
  • Fei, D., D. Caili, S. Yongpeng, Z. Guang, Y. Qing, and L. Yifei. 2022. Gelling behavior of PAM/Phenolic Crosslinked gel and its profile control in a low-temperature and high-salinity reservoir. Gels 8 (7):433. doi:10.3390/gels8070433.
  • Grattoni Carlos Atilio, A.-S. H. H., Y. Canghu, H. Muggeridge Ann, W. Zimmerman Robert, and R. W. Zimmerman. 2001. Rheology and permeability of crosslinked polyacrylamide gel. Journal of Colloid & Interface Science 240 (2):601–07. doi:10.1006/jcis.2001.7633.
  • Guang, Z., D. Caili, and Z. Mingwei. 2014. Investigation of the profile control mechanisms of dispersed particle gel. Plos One 9 (9):100471. doi:10.1371/journal.pone.0100471.
  • Guang, Z., Y. Qing, T. Jiaping, G. Chenglin, A. Hafiz, M. Liping, and D. Caili. 2018. Preparation and application of a novel phenolic resin dispersed particle gel for in-depth profile control in low permeability reservoirs. Journal of Petroleum Science and Engineering 161:703–14. doi:10.1016/j.petrol.2017.11.070.
  • Guangsheng, C., C. Qingchao, L. Ying, B. Ruixuan, Z. Ning, and W. Peilun. 2022. Influencing factors of surfactant stripping crude oil and spontaneous imbibition mechanism of surfactants in a tight reservoir. ACS Omega 7 (22):19010–20. doi:10.1021/acsomega.2c02190.
  • Jia, H., P. Wanfen, Z. Jinzhou, and L. Ran. 2011. Experimental Investigation of the novel phenol−Formaldehyde cross-linking HPAM gel system: Based on the Secondary cross-linking method of organic cross-linkers and its gelation performance study after flowing through porous media. Energy & Fuels 2 (2):727–36. doi:10.1021/ef101334y.
  • Kattimuttathu, I. S. 2012. Rigid polyurethane foams from cardanol: Synthesis, structural characterization, and evaluation of polyol and foam properties. ACS Sustainable Chemistry & Engineering 1 (2):232–42. doi:10.1021/sc300079z.
  • Matsumoto, A., K. Hasegawa, and A. Fukuda. 2010. Studies on modified phenolic resin. Iv: Properties of phenolic resin modified with 4-hydroxyphenyl- maleimide/n-butylacrylate copolymers. Polymer International 30 (1):65–72. doi:10.1002/pi.4990300110.
  • Plummer Mark, A., and W. Cowley Scott. 2006. Chemical mechanisms in hydrogen sulfide decomposition to hydrogen and sulfur. Molecular Simulation 32 (2):101–08. doi:10.1080/08927020600599691.
  • Qingchao, C., C. Guangsheng, W. Peilun, B. Ruixuan, and B. Yujie. 2023. CO2 diffusive characteristics and influencing factors in the porous medium with saturated polyacrylamide solutions. Arabian Journal Chemistry 16 (10):105106. doi:10.1016/j.arabjc.2023.105106.
  • Qingchao, C., C. Guangsheng, B. Yujie, Z. Zhixuan, Z. Ning, and L. Dongju. 2023. Probing the demulsification mechanism of emulsion with SPAN series based on the effect of solid phase particles. Molecules 28 (7):3261. doi:10.3390/molecules28073261.
  • Shamlooh, M., A. Hamza, I. A. Hussein, M. S. Nasser, M. Magzoub, and S. Salehi. 2019. Investigation of the rheological properties of nanosilica-reinforced PAM/PEI gels for wellbore strengthening at high reservoir temperatures. Energy & Fuels 3 (7):6829–36. doi:10.1021/acs.energyfuels.9b00974.
  • Sydansk, R. D., and P. A. Argabright. 1988. Conformance improvement in a subterranean hydrocarbon-bearing formation using a crosslinked polymer. Vol. 93966686, 05–17. USP and Trademark Office. US4744419 A.
  • Zhe, W., C. Guangsheng, B. Yujie, W. Peilun, L. Xincheng, and W. Xin. 2022. Probing the generation mechanism of emulsion. Colloids and Surfaces A: Physicochemical and Engineering Aspects 653:129997. doi:10.1016/j.colsurfa.2022.129997.
  • Zhixuan, Z., L. Lin, L. Jiawei, C. Jia, X. Zhongzheng, Y. Wu, and D. Caili. 2022. Probing the effect of young’s modulus on the plugging performance of micro-nano-scale dispersed particle gels. Petroleum Science 19 (2):688–96. doi:10.1016/j.petsci.2021.10.027.
  • Zhongbin, Y., H. Erqin, X. Siyu, H. Lijuan, C. Hong Luo Pingya, S. Zheng, S. Leiting, L. Nanjun, and N. Lai. 2010. The mechanism study of disproportionate permeability reduction by hydrophobically associating water-soluble polymer gel. Journal of Petroleum Science and Engineering 72 (1–2):64–66. doi:10.1016/j.petrol.2010.03.004.
  • Zizhao, W., Z. Zhixuan, J. Tianyu, D. Yunbo, L. Jinming, W. Yining, Z. Mingwei, D. Caili, and L. Lin. 2023. Probing the effect of young’s modulus on the reservoir regulation abilities of dispersed particle gels. Gels 9 (5):402. doi:10.3390/gels9050402.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.