Influence of salinity on the properties of the different HPAM/Al3+systems

Author:

Zhang Lei,Khan Nasir,Pu Chunsheng

Abstract

In order to achieve oil increment and water cut reduction in the heterogeneous oil reservoirs, a conformance control technology by using HPAM/Al3+systems has been widely used due to the low price and environmental friendliness. However, the complex structure and state of high-valent metal ions in brine water can directly affect the properties of the different HPAM/Al3+systems, which may lead to unreasonable applications. Therefore, in order to better utilize the HPAM/Al3+systems, the characteristics of gelation of HPAM and the three types of aluminum citrate under different salinities are systematically studied. Experimental results show that an important reason for the cross-linking reaction of HPAM/Al3+being affected by salinity is that the morphology and structure of the aluminum citrate complex is different under the different salinities. Although the change of characteristics of the reaction time and the cross-linking degree of the three HPAM/Al3+systems are different, the process of the cross-linking reactions of the three HPAM/Al3+systems are the same. Besides, the thermal stability of the HPAM/Al3+gels is weakened with the increasing of salinity regardless of the ratio of citrate ligands to Al3+. According to the matching relationship between salinity and HPAM/Al3+systems, the reaction time can be controlled to achieve the requirements of on-site construction operation for the conformance control of a given heterogeneous oil reservoir.

Publisher

EDP Sciences

Subject

Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering

Reference47 articles.

1. Liu H., Wan X. (1995) Development adjustment of heterogeneous sandstone reservoir at late period of high water cut stage, Proceedings of SPE International Meeting on Petroleum Engineering, November 14–17, Beijing, China. SPE Paper No. 29949.

2. Mi L., Jiang H., Pei Y., Li J., Tian J., Xin Y., Killough J.E. (2016) Microscopic oil and water percolation characteristic investigation of water flood reservoir in ultrahigh water cut period, Proceedings of SPE Trinidad and Tobago Section Energy Resources Conference, June 13–15, Port of Spain. SPE Paper No. 180864.

3. Development of Thermotransformable Controlled Hydrogel for Enhancing Oil Recovery

4. Xiaoping Z., Guoda Y., Yanping L., Yingshi H., Tran T., Castellan F., Yang L. (2013) Best practices and application of integrated fit for purpose technologies to revitalise high water cut mature fields – A case history from offshore South China, Proceedings of SPE International Petroleum Technology Conference, March 26–28, Beijing, China, SPE Paper No. 16662.

5. Zhao Y., Jiang H., Li J., Wang C., Gao Y., Yu F., Su H. (2017) Study on the classification and formation mechanism of microscopic remaining oil in high water cut stage based on machine learning, Proceedings of SPE Abu Dhabi International Petroleum Exhibition & Conference, November 13–16, Abu Dhabi. SPE Paper No. 188228.

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