Synthesis and Characterization of an Novel Intercalated Polyacrylamide/Clay Nanocomposite
Abstract
:1. Introduction
2. Results and Discussion
2.1. Synthesis Mechanism of the Intercalated Polymer
2.2. Optimization of the Synthesis Conditions for the Intercalated Polymer/Clay Nanocomposite
2.2.1. Effect of the Inorganic Clay Mineral Content
2.2.2. Effect of the Temperature
2.2.3. Effect of the Initiator Concentration
2.2.4. Effect of the Chain Extender Concentration
2.3. Physico-Chemical Properties of the Intercalated Polymer/Clay Nanocomposites
2.3.1. FTIR Analysis
2.3.2. Thickening Effect
2.3.3. Viscoelastic Properties
2.3.4. Salt Resistance
2.3.5. Thermal Stability
3. Conclusions
4. Materials and Methods
4.1. Instruments
4.2. Methods
4.2.1. Synthesis of the Intercalated Polymer/Clay Nanocomposite
4.2.2. Synthesis of the Intercalated Polymer/Clay Nanocomposite
4.2.3. Thickening Test
4.2.4. Salt Resistance Test
4.2.5. Thermal Stability Test
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
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Polymer Type | Apparent Viscosities of Polymers at Different Concentrations, mPa·s | ||||
---|---|---|---|---|---|
800 mg/L | 1000 mg/L | 1200 mg/L | 1400 mg/L | 1600 mg/L | |
Intercalated | 59.4 | 106.6 | 148.0 | 221.6 | 292.9 |
High molecular weight | 40.3 | 65.4 | 122.0 | 139.6 | 190.3 |
Salt-resistant | 54.5 | 79.7 | 166.6 | 185.3 | 227.0 |
Polymer Type | The Viscosities of Polymer Solution Prepared with Different Types of Water, mPa·s | Viscosity Loss, % | ||
---|---|---|---|---|
Injected Water | Mixed Water | Formation Water | ||
Intercalated | 148.0 | 60.6 | 43.2 | 70.8 |
High molecular weight | 122.0 | 44.7 | 31.2 | 74.4 |
Salt-resistant | 166.6 | 59.1 | 38.4 | 77.0 |
Polymer Type | Placing Time (days) | Viscosity Retention Rate (%) | |||||||
---|---|---|---|---|---|---|---|---|---|
Initiation | 2 | 5 | 10 | 20 | 30 | 40 | 60 | ||
Intercalated | 148.0 | 221.0 | 195.3 | 163.0 | 150.6 | 142.6 | 142.3 | 131.8 | 89.1 |
Salt-resistant | 122.0 | 118.3 | 117.3 | 111.0 | 103.6 | 93.7 | 92.7 | 90.3 | 74.0 |
High molecular weight | 166.6 | 175.3 | 143.3 | 131.6 | 116.3 | 111.0 | 104.6 | 98.3 | 59.0 |
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Zhang, S.; Wei, F.; Liu, P.; Cai, C.; Zeng, Z.; Yu, Z.; Wang, Z.; Bai, Y. Synthesis and Characterization of an Novel Intercalated Polyacrylamide/Clay Nanocomposite. Gels 2023, 9, 104. https://doi.org/10.3390/gels9020104
Zhang S, Wei F, Liu P, Cai C, Zeng Z, Yu Z, Wang Z, Bai Y. Synthesis and Characterization of an Novel Intercalated Polyacrylamide/Clay Nanocomposite. Gels. 2023; 9(2):104. https://doi.org/10.3390/gels9020104
Chicago/Turabian StyleZhang, Song, Falin Wei, Pingde Liu, Cheng Cai, Zhihui Zeng, Zhentao Yu, Zengbao Wang, and Yingrui Bai. 2023. "Synthesis and Characterization of an Novel Intercalated Polyacrylamide/Clay Nanocomposite" Gels 9, no. 2: 104. https://doi.org/10.3390/gels9020104
APA StyleZhang, S., Wei, F., Liu, P., Cai, C., Zeng, Z., Yu, Z., Wang, Z., & Bai, Y. (2023). Synthesis and Characterization of an Novel Intercalated Polyacrylamide/Clay Nanocomposite. Gels, 9(2), 104. https://doi.org/10.3390/gels9020104