Research on Ternary Composite Flooding Produced Water Treatment Process

Authors

  • Jinglong Bai
  • Litao Luo

DOI:

https://doi.org/10.54691/402v3r55

Keywords:

Ternary Composite Flooding; Produced Water; Electrochemistry.

Abstract

This paper introduces the ternary composite drive technology and the characteristics of the technology. The characteristics of ternary composite flooding produced water were sorted out, and the characteristics of complex organic composition, poor biochemical treatment, high oil content, high suspended solids content, high viscosity and high emulsification degree were sorted out. Three ternary composite flooding produced water treatment processes were introduced. Under the condition of ensuring that the effluent meets the requirements of reinjection water, the advantages and disadvantages of the three processes are compared, and finally the third process flow is determined to be the optimal option. The process can not only effectively improve the treatment effect of ternary composite flooding produced water, but also overcome the shortcomings in the conventional process, improve the feasibility of the process and reduce the cost.

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References

Chemical Engineering and Equipment,2023,(10):178-179+181.

Application of ternary composite flooding oil recovery technology in petroleum exploitation[J]. Chemical Engineering and Equipment,2021,(08):95+94.

Huang Bin,Wang Chen,Fu Cheng,Fu Siqiang,Huang Likai,Zhang Weisen.Research progress on ternary composite flooding produced water treatment[J].Chemical Industry and Engineering Progress,2020,39(10):4238-4247.

Li Zhe, Zhang Lu, Liang Shujuan, et al.Research progress of produced water treatment technology in oilfield[J].Chemical Engineer,2024,38(03):59-62+103.

Ma Zekun.Study on stability mechanism of ternary composite flooding produced water[D].China University of Mining and Technology,2019.

Chen L, Bai B. Equilibrium, kinetic, thermodynamic, and in situ regeneration studies about methylene blue adsorption by the raspberry-like TiO2@yeast microspheres[J]. Industrial & Engineering Chemistry Research, 2013, 52(44):15568-15577.

Al-Ghouti M A, Al-Kaabi M A, Ashfaq M Y, et al. Produced water characteristics, treatment and reuse: A review[J]. Journal of water Process Engineering, 2019, 28:222-239.

Pu W F, Liu R, Wang K Y, et al. Water-soluble core–shell hyperbranched polymers for enhanced oil recovery[J]. Industrial & Engineering Chemistry Research, 2015, 54(3):798-807.

Tong K, Zhang Y, Liu G, et al. Treatment of heavy oil wastewater by a conventional activated sludge process coupled with an immobilized biological filter[J]. International Biodeterioration & Biodegradation, 2013, 84:65-71.

Berdugo-Clavijo C, Sen A, Seyyedi M, et al. High temperature utilization of PAM and HPAM by microbial communities enriched from oilfield produced water and activated sludge[J]. Amb Express, 2019, 9(1):1-10.

Yan M, Zhao L, Bao M, et al. Hydrolyzed polyacrylamide biodegradation and mechanism in sequencing batch biofilm reactor[J]. Bioresource technology, 2016, 207:315-321.

Zhao L, Bao M, Yan M, et al. Kinetics and thermodynamics of biodegradation of hydrolyzed polyacrylamide under anaerobic and aerobic conditions[J]. Bioresource technology, 2016, 216:95-104.

Zhao C, Zhou J, Yan Y, et al. Application of coagulation/flocculation in oily wastewater treatment: A review[J]. Science of The Total Environment, 2020:142795.

Vengosh A, Jackson R B, Warner N, et al. A critical review of the risks to water resources from unconventional shale gas development and hydraulic fracturing in the United States[J]. Environmental science & technology, 2014, 48(15):8334-8348.

Song Xuefeng, Wu Yueqiang, Xu Chengjun, et al.Research on strong alkali ternary composite flooding produced water treatment process[J].Oil & Gas Field Environmental Protection,2019,29 (03):4-8+60.

Oil & Gas Field Surface Engineering,2021,40(12):39-45.

Gu Wenge, Chen Zhongxi, Zhao Qiushi, et al.Daqing Oilfield ternary composite flooding produced water treatment technology[J].Industrial Water & Wastewater,2018,49(02):48-53.)

Ao Lu, Guo Liang, Wang Fei, et al.Electrochemical-ultrafiltration combined advanced treatment of ternary composite flooding produced water[J].Petroleum and Chemical Equipment,2021,24(02): 103-106.

Gao Zhiyi, Zhao Ruijun, Han Mei, Wang Yimou, Li Peng, Zhao Ruiyu, Liu Chenguang.Research progress on electrochemical treatment of oily wastewater[J].Applied Chemical Industry,2022,51 (03):841-845.

Kan Lianbao,Duan Hui,Ding Siqi,Wang Meng,Cui Hongmei.Application and prospect of electrochemical technology in organic wastewater treatment[J].Contemporary Chemical Industry, 2016,45(05):952-953+956.

Application of ceramic membrane ultrafiltration technology in sewage reinjection of offshore platform[J].Water Treatment Technology,2017,43(10):122-123+127.

Zhang Dawei, Chen Zhongxi, Ren Lu, Meng Xiangchun, Gu Wenge. Study on Properties and Stability Mechanism of Ternary Composite Flooding Produced Water[J]. Oil & Gas Chemicals, 2020, 49 (01): 104-111.

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Published

2024-05-22

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Section

Articles

How to Cite

Bai, J., & Luo, L. (2024). Research on Ternary Composite Flooding Produced Water Treatment Process. Frontiers in Science and Engineering, 4(5), 45-51. https://doi.org/10.54691/402v3r55