China Surfactant Detergent & Cosmetics ›› 2023, Vol. 53 ›› Issue (9): 989-998.doi: 10.3969/j.issn.2097-2806.2023.09.001
• Basic research • Next Articles
Chang Shiteng1,Cai Xiaojun2,Zheng Yancheng1,*(),Liu Xuejin1,Yi Xiao1,Jiang Zhuyang1
Received:
2023-06-18
Revised:
2023-08-28
Online:
2023-09-22
Published:
2023-09-26
Contact:
* Tel.: +86-13508610396, E-mail: CLC Number:
Chang Shiteng, Cai Xiaojun, Zheng Yancheng, Liu Xuejin, Yi Xiao, Jiang Zhuyang. Physicochemical properties of ethoxylated sulfosuccinate surfactants and their interfacial properties when mixed with a betaine surfactant[J].China Surfactant Detergent & Cosmetics, 2023, 53(9): 989-998.
Tab. 2
Nmin and IFTmin for C12EO6-C10MS/C16ZC mixtures at different NaCl mass fractions at 60 ℃"
Molar ratios | Nmin | IFTmin corresponding to Nmin/(mN/m) | |||||
---|---|---|---|---|---|---|---|
0% NaCl | 0.5% NaCl | 1% NaCl | 0% NaCl | 0.5% NaCl | 1% NaCl | ||
1/0 | 12 | 12 | 14 | 0.049 9 | 0.003 5 | 0.005 2 | |
4/1 | 12 | 14 | 14 | 0.052 1 | 0.006 8 | 0.004 4 | |
3/2 | 12 | 14 | 14 | 0.018 8 | 0.001 8 | 0.007 8 | |
2/3 | 14 | 14 | 14 | 0.019 3 | 0.005 2 | 0.012 6 | |
1/4 | 14 | 14 | 16 | 0.075 1 | 0.084 4 | 0.014 8 |
[1] | Sui Zhihui, Lin Guanfa, Zhu Youyi, et al. Prospect of preparation and application of surfactant in EOR[J]. China Surfactant Detergent & Cosmetics, 2003, 33 (2) : 105-109. |
[2] | Ye Zhongbin. The principle of enhancement recovery[M]. Beijing: Petroleum Industry Press, 2000: 2-5. |
[3] | Tang Hongjiao, Hou Jirui, Zhao Fenglan, et al. Application progress of nonionic and anionic- nonionic surfactants used in oil field[J]. Oilfield Chemistry, 2011, 28 (1) : 115-118. |
[4] | Guo Liwei, Zhou Chuanchen, Zhang Jing, et al. Development and performance evaluation of anionic nonionic surfactant for oil displacement[J]. Contemporary Chemical Industry, 2022, 51 (11) : 2583-2587. |
[5] | Hua Ping, Zhang Haijun, Zhang Yuejun. Synthesis and properties of sodium hexanyl alkyl polyoxyethene (5) ethersulfosuccinate[J]. Detergent & Cosmetics, 2003, 33 (4) : 219-221. |
[6] | Chen Hong. Study on the synthesis and properties of disodium sulfosuccinate of mono tridecanol polyoxyethylene (5) ether[J]. Shandong Chemical Industry, 2001, 30 (2) : 1-3. |
[7] | Hua Ping, Li Jianhua, Dai Baojiang. Synthesis and properties of sodium lauryl polyoxyethene (5) octyl sulfosuccinate[J]. Chemical Reagents, 2007, 29 (8) : 459-462. |
[8] | Hua Ping. Study on sodium hexyl alkyl polyoxyethene (9) ether sulfosuccinate[J]. Applied Chemical Industry, 2003, 32 (5) : 39-42. |
[9] | Hua Ping, Dai Baojiang, Wu Donghui, et al. Synthesis and properties of sodium lauryl polyoxyethene (9) octyl sulfosuccinate[J]. Fine Chemicals, 2007, 24 (10) : 956-960. |
[10] | Ge Hong, Zhang Shengli, Li Heping, et al. Study on the synthesis and properties of disodium sulfosuccinate of lauryl alcohol polyoxythylene (9) ether[J]. Speciality Petrochemicals, 1999 (2) : 3-5. |
[11] |
Li Na, Zhang Guicai, Ge Jijiang, et al. Adsorption behavior of betaine-type surfactant on quartz sand[J]. Energy & Fuels, 2011, 25 (10) : 4430-4437.
doi: 10.1021/ef200616b |
[12] | Dai Caili, Zhao Jianhui, Yan Lipeng, et al. Adsorption behavior of cocamidopropyl betaine under conditions of high temperature and high salinity[J]. Journal of Applied Polymer Science, 2014, 131 (12). |
[13] |
McLachlan A A, Marangoni D G. Interactions between zwitterionic and conventional anionic and cationic surfactants[J]. Journal of Colloid and Interface Science, 2006, 295 (1) : 243-248.
pmid: 16213512 |
[14] |
Muñoz M, Rodríguez A, Graciani M M, et al. Conductometric, surface tension, and kinetic studies in mixed SDS-Tween 20 and SDS-SB3-12 micellar solutions[J]. Langmuir, 2004, 20 (25) : 10858-10867.
pmid: 15568834 |
[15] |
Liu Q, Dong M, Ma S, et al. Surfactant enhanced alkaline flooding for Western Canadian heavy oil recovery[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2007, 293 (1-3) : 63-71.
doi: 10.1016/j.colsurfa.2006.07.013 |
[16] |
Cai Hongyan, Zheng Yancheng, Wang Hongzhuang, et al. Synthesis and physiochemical properties of poly (ethylene glycol)-octanol sulfosuccinates[J]. Journal of Molecular Liquids, 2018, 265: 556-564.
doi: 10.1016/j.molliq.2018.05.139 |
[17] | Hua Ping, Li Jianhua, Zhang Yuejun. Effects of adduct numbers of ethylene oxide (EO) in lauryl polyoxyethylene (LEOn) on synthetic conditions of sodium lauryl polyoxyethene(n)-hexyl mixed sulfosuccinate[J]. Speciality Petrochemicals, 2005, 3: 18-21. |
[18] | Liu Yu, Zheng Yancheng, Han Hexiang, et al. Synthesis and properties of carboxybetaine and sulfobetaine surfactants[J]. China Surfactant Detergent & Cosmetics, 2015, 45 (12) : 680-684. |
[19] |
Zhen Lili, Huang Dan, Li Rong, et al. Synthesis of polyoxyethylene (n) stearyl ether sodium sulfosuccinate by ultrasonic-microwave Co-irradiation technology[J]. Current Microwave Chemistry, 2016, 3 (1) : 31-37.
doi: 10.2174/2213335602666150522221257 |
[20] |
Shi Laishun, Ji Tong, Gong Xuedi, et al. Synthesis and surface properties of amide-based amphoteric surfactants with different hydrophobic carbon chain length[J]. Journal of the Iranian Chemical Society, 2022, 19 (3) : 847-860.
doi: 10.1007/s13738-021-02347-0 |
[21] |
Song L, Cong Y, Wang M, et al. Incorporation of disodium alkyl polyoxyethylene ether sulfosuccinate inside styrene droplets: Mechanism and its application for preparation of multihollow polymer spheres[J]. Journal of Colloid and Interface Science, 2008, 322 (1) : 231-236.
doi: 10.1016/j.jcis.2008.01.057 pmid: 18359492 |
[22] |
Al-Sabagh A M, Zakaa M M, Noor El-Din M R. The Interfacial tension and alkane carbon number (nmin) of alkyl benzene sulfonates in relation to enhanced oil recovery. Part I: effect of surfactant molecular weight/temperature and electrolyte on nmin[J]. Journal of Dispersion Science and Technology, 2009, 30 (8) : 1237-1246.
doi: 10.1080/01932690802544899 |
[23] |
Cao Y, Zhao R, Zhang L, et al. Effect of electrolyte and temperature on interfacial tensions of alkylbenzene sulfonate solutions[J]. Energy & Fuels, 2012, 26 (4) : 2175-2181.
doi: 10.1021/ef201982s |
[24] |
Aubry J M, Ontiveros J F, Salager J L, et al. Use of the normalized hydrophilic-lipophilic-deviation (HLDN) equation for determining the equivalent alkane carbon number (EACN) of oils and the preferred alkane carbon number (PACN) of nonionic surfactants by the fish-tail method (FTM)[J]. Advances in Colloid and Interface Science, 2020, 276: 102099.
doi: 10.1016/j.cis.2019.102099 |
[25] |
Cayias J L, Schechter R S, Wade W H. The utilization of petroleum sulfonates for producing low interfacial tensions between hydrocarbons and water[J]. Journal of Colloid and Interface Science, 1977, 59 (1) : 31-38.
doi: 10.1016/0021-9797(77)90335-6 |
[26] |
Zhao Shuai, Zhou Zhaohui, Shangguan Yangnan, et al. Effect of bivalent cations on the interfacial tensions of extended anionic surfactant solutions[J]. Journal of Molecular Liquids, 2022, 349: 118162.
doi: 10.1016/j.molliq.2021.118162 |
[27] |
Tichelkamp T, Vu Y, Nourani M, et al. Interfacial tension between low salinity solutions of sulfonate surfactants and crude and model oils[J]. Energy & Fuels, 2014, 28 (4) : 2408-2414.
doi: 10.1021/ef4024959 |
[28] |
Cai Hongyan, Luo Wenli, Zheng Yancheng, et al. Thermodynamic parameters and interfacial properties of poly (ethylene glycol)‐octyl sulfosuccinates[J]. Journal of Surfactants and Detergents, 2021, 24 (5) : 749-760.
doi: 10.1002/jsde.v24.5 |
[29] |
Wan Wei, Zhao Jian, Harwell J H, et al. Characterization of crude oil equivalent alkane carbon number (EACN) for surfactant flooding design[J]. Journal of Dispersion Science and Technology, 2016, 37 (2) : 280-287.
doi: 10.1080/01932691.2014.950739 |
[30] |
Liu Miao, Fang Hongbo, Jin Zhiqiang, et al. Interfacial tensions of ethoxylated fatty acid methyl ester solutions against crude oil[J]. Journal of Surfactants and Detergents, 2017, 20: 961-967.
doi: 10.1007/s11743-017-1973-5 |
[31] |
Liu Rui, Du Daijun, Pu Wanfen, et al. Enhanced oil recovery potential of alkyl alcohol polyoxyethylene ether sulfonate surfactants in high-temperature and high-salinity reservoirs[J]. Energy & Fuels, 2018, 32 (12) : 12128-12140.
doi: 10.1021/acs.energyfuels.8b02653 |
[32] |
Pei Haihua, Shan Jingling, Zhang Guicai, et al. Selection of optimum surfactant formulations with ultralow interfacial tension for improving the oil washing efficiency[J]. ACS Omega, 2021, 6 (37) : 23952-23959.
doi: 10.1021/acsomega.1c02930 pmid: 34568674 |
[33] |
Gu Y, Zhou M, Wang X, et al. Preparation and performance evaluation of sulfate-quaternary ammonium Gemini surfactant[J]. Journal of Molecular Liquids, 2021, 343: 117665.
doi: 10.1016/j.molliq.2021.117665 |
[34] |
Zhou Z H, Zhang Q, Liu Y, et al. Effect of fatty acids on interfacial tensions of novel sulfobetaines solutions[J]. Energy & Fuels, 2014, 28 (2) : 1020-1027.
doi: 10.1021/ef402416j |
[35] |
Liu J, Liu Z, Yuan T, et al. Synthesis and properties of zwitterionic Gemini surfactants for enhancing oil recovery[J]. Journal of Molecular Liquids, 2020, 311: 113179.
doi: 10.1016/j.molliq.2020.113179 |
[36] | Zhang Lu, Luo Lan, Zhao Sui, et al. Effect of hydrophobic-lipophilic ability of surfactant on dynamic interfacial tensions[J]. Chinese Journal of Chemical Physics, 2001, 17(l): 62-65. |
[1] | Zhisheng Zhang, Chanliang Shen, Jianxun Li, Yanqiang Liu, Weiwei Han, Sanbao Dong. Preparation and performance of betaine/AOS/Gemini ternary surfactant foam for gas well deliquification [J]. China Surfactant Detergent & Cosmetics, 2024, 54(3): 239-249. |
[2] | Yi Xiao, Tian Fuquan, Zheng Yancheng, Wang Shuaidong, Cai Xiaojun, Luo Fangcao, Chang Shiteng. Properties of mixtures of tetradecanoic acid monoethanolamide ether sulfonate and tetradecanoic acid diethanolamide [J]. China Surfactant Detergent & Cosmetics, 2023, 53(6): 609-616. |
[3] | Shi Yuanyuan, He Kai, Wu Wenzhong. Effects of shale oil composition on the properties of oil-water interface [J]. China Surfactant Detergent & Cosmetics, 2023, 53(10): 1140-1146. |
[4] | Wu Guopeng,Zhang Fuling. Research progress of nanomaterials for oil displacement [J]. China Surfactant Detergent & Cosmetics, 2022, 52(5): 558-565. |
[5] | Ran Lijun,Chen Qi,Chen Zhao,Cui Zhenggang. Determination of high-molecular-weight fatty alcohol polyoxypropylene-polyoxyethylene ether carboxylates [J]. China Surfactant Detergent & Cosmetics, 2022, 52(4): 345-354. |
[6] | Kang Wanli,Wang Kanghui,Li Zhe,Lv Wei,Yang Hongbin,Jia Ruxue,He Yingqi. Study on slow-release surfactant nanocarriers in low-permeability reservoirs [J]. China Surfactant Detergent & Cosmetics, 2022, 52(11): 1147-1154. |
[7] | Zhang Zhi,Hu Xuyan,Yuan Hui,Li Yanchuang. Preparation and performance evaluation of the nanoemulsion based on rhamnolipid [J]. China Surfactant Detergent & Cosmetics, 2021, 51(11): 1067-1072. |
[8] | Wang Qihao,Guo Haiyan,Wang Yuyi,Huang Xiaohe,Zhang Ya,Long Yunqian. Evaluation of enhanced oil recovery of the binary composite flooding system based on the sulfonate of kitchen waste oil and polyacrylamide [J]. China Surfactant Detergent & Cosmetics, 2021, 51(10): 932-938. |
[9] | KANG Wan-li,KANG Xin,JIANG Hai-zhuang,LI Meng-lan,YANG Hong-bin,Yulia A. Ketova,Sergey V. Galkin. Study on the design and synthesis of amphiphilic polymers and their synergistic systems (Ⅵ)Emulsification with amphiphilic polymers [J]. China Surfactant Detergent & Cosmetics, 2020, 50(6): 366-372. |
[10] | KANG Wan-li,JIA Ru-xue,YANG Hong-bin,ZHU Tong-yu,LI Zhe,Bauyrzhan Sarsenbekuly. Study on the design and synthesis of amphiphilic polymers and their synergistic systems (XII) Enhanced oil recovery [J]. China Surfactant Detergent & Cosmetics, 2020, 50(12): 821-828. |
[11] | GENG Tie,ZHAO Chun-hua,LIU Xue-jing,SU Long,ZHENG Li-qiang,SUN Ji-chao. Molecular simulations for aggregation behavior of surfactant molecules at oil/water interface [J]. China Surfactant Detergent & Cosmetics, 2019, 49(8): 537-544. |
[12] | ZHOU Yang,PAN Zhong-wen,CHEN Geng,SUN Shuo. Synthesis of betaine surfactant and its micellar catalysis action on alkaline hydrolysis of acetic esters [J]. China Surfactant Detergent & Cosmetics, 2016, 46(4): 204-207. |
|