China Surfactant Detergent & Cosmetics ›› 2022, Vol. 52 ›› Issue (7): 696-703.doi: 10.3969/j.issn.1001-1803.2022.07.002
• Lecture of science and technology • Previous Articles Next Articles
Feng Yun1,Shi Jing1,Bao Jie1,Hao Yang1,Xu Guiyun2,Fan Jinshi1,3,*()
Received:
2022-06-29
Online:
2022-07-22
Published:
2022-07-21
Contact:
Jinshi Fan
E-mail:chemfan@qust.edu.cn.
CLC Number:
Feng Yun,Shi Jing,Bao Jie,Hao Yang,Xu Guiyun,Fan Jinshi. Common cosmetic preparation technologies(Ⅰ)Oil-water mixture: Emulsions[J].China Surfactant Detergent & Cosmetics, 2022, 52(7): 696-703.
Tab. 1
Types and characteristics of emulsifiers"
种类 | 特征 | 举例 |
---|---|---|
表面活性剂类乳化剂 | ①乳化能力强。分子中有较强的亲水基和亲油基;②性质比较稳定。容易在液滴周围形成单分子乳化膜;③混合使用效果更好 | ①阴离子型乳化剂:硬脂酸钠、硬脂酸钾、油酸钠、油酸钾、硬脂酸钙、十二烷基硫酸钠;②非离子型乳化剂:单脂肪酸甘油酯、平平加1~20、乳化剂OP |
天然乳化剂 | ①主要形成水包油乳剂。因其亲水性强;②多数有较大黏度,增加乳剂稳定性;③使用此乳化剂需添加防腐剂 | 阿拉伯胶、明胶、杏树胶、卵黄、桃胶、海藻酸钠、酪蛋白 |
固体微粒乳化剂 | ①接触角<90°时,形成O/W乳剂;②接触角>90°时,形成W/O乳剂 | O/W型乳化剂:氢氧化镁、氢氧化铝、二氧化硅、皂土;W/O型乳化剂:氢氧化钙、氢氧化锌、硬脂酸镁 |
辅助乳化剂 | 与主要乳化剂合用,提高乳化剂黏度,增强乳剂稳定性 | ①增强水相黏度的辅助乳化剂:羧甲基纤维素钠、羟丙基纤维素、果胶、瓜尔胶;②增强油相黏度的辅助乳化剂:鲸蜡醇、蜂蜡、单硬脂酸甘油酯 |
Tab. 2
Comparisons among emulsion, nanoemulsion and microemulsion"
参数 | 乳剂 | 纳米乳剂 | 微乳液 |
---|---|---|---|
形成过程 | 机械或手动搅拌 | 超声波和高压均质处理 | 自发 |
稳定性 | 动力学稳定 | 动力学稳定 | 热力学稳定 |
液滴大小/μm | 0.5~50 | 0.05~0.50 | 0.01~0.10 |
外观 | 不透明(浑浊) | 透明或不透明 | 透明 |
比表面积/(m2/g) | ~15 | 50~100 | ~200 |
界面张力 | 低 | 低 | 极低 |
系统类型 | W/O,O/W或W/O/W,O/W/O | W/O或O/W | W/O,O/W,双连续体系 |
乳化剂浓度 | 低 | 中 | 高 |
辅助乳化剂类型 | 无 | 长链脂肪醇 | 短链脂肪醇 |
Tab. 5
Types and characteristics of interfacial films"
界面膜 | 乳化剂 | 特性 |
---|---|---|
单分子膜 | 表面活性剂 | 乳化剂吸附在水油两相界面上,除明显降低界面张力之外,规则排列而成的单分子膜也可有效阻止分散相小液滴的合并。但单分子膜容易破裂 |
多分子膜 | 亲水胶 | 亲水胶不能明显地降低界面张力,却能形成机械强度较大的多分子膜,有效阻止液滴合并,并可通过调节pH值,使乳化剂处于稠度最大的状态而增加膜的强度。亲水胶也可以增大水相为外相时的黏度,利于乳剂的稳定。但有些亲水胶成膜能力弱,不能单独作为乳化剂使用 |
固体微粒膜 | 极其细微的固体粉末 | 对水相、油相都有一定程度湿润的固体颗粒可聚集在两相界面间形成固体微粒膜,避免分散相小液滴的彼此接触、合并。此外,固体微粒应比分散液滴小得多才能形成有效的界面膜 |
Tab. 6
Typical emulsifying devices and their characteristics"
混合方式 | 设备 | 优点 | 缺点 |
---|---|---|---|
机械搅拌 | 较高转速(4 000~8 000 r/min)的螺旋桨搅拌器 | 设备简单,操作方便 | 分散度低、不均匀,且易混入空气 |
剪切力 | 胶体磨 | ①可以控制乳剂液滴的大小。上下磨盘间的隙缝可调;②制备出来的液滴较小。胶体磨可制取10 μm左右或更小的液滴 | ①流量不恒定,对于不同黏性的物料流量变化大;②转定子与物料间高速摩擦,易产生较大热量使物料变性,不适用于热敏性物料 |
超声波 | 超声波乳化器 | 均匀分散液体,实验室常用 | 功率大,能耗高 |
机械、超声波 | 均化器 | 分散度高,均匀,不易混入空气 | / |
[1] | Yu Ainong, Zhang Qing. Fine chemicals forming technology[M]. Beijing: Chemical Industry Press, 2002. |
[2] | Wen J, Zhang Q, Zhu D, et al. Performance study on particle size variables for nano multiple emulsions[J]. Journal of Dispersion Science & Technology, 2016, 38 (6) : 801-806. |
[3] |
Bialek A, Bialek M, Jelinska M, et al. Fatty acid profile of new promising unconventional plant oils for cosmetic use[J]. International Journal of Cosmetic Science, 2016, 38 (4) : 382-388.
doi: 10.1111/ics.12301 pmid: 26659407 |
[4] |
Liu J, Zhou H, Tan Y, et al. Comparison of plant-based emulsifier performance in water-in-oil-in-water emulsions: soy protein isolate, pectin and gum Arabic[J]. Journal of Food Engineering, 2021, 307 (3) : 110625.
doi: 10.1016/j.jfoodeng.2021.110625 |
[5] |
Xie Yanping, Zhang Xiuqi, Cai Zhixiang, et al. Glyceryl monolaurate graft-modified gum arabic and its emulsification properties[J]. Food Science, 2019, 40 (18) : 28-34.
doi: 10.1111/j.1365-2621.1975.tb03728.x |
[6] | Burguera J L, Burguera M. Analytical applications of emulsions and microemulsions[J]. Talanta, 2012 (96) : 11-20. |
[7] | Xenakis A, Kalaitzaki, Papadimitriou V. Highly water dilutable microemulsions: a structural study[J]. Colloid & Polymer Science, 2015, 293 (4) : 1111-1119. |
[8] | Zhao Zhenguo, Wang Shun. Applied colloid and interface chemistry[M]. Beijing: Chemical Industry Press, 2017. |
[9] |
Sun H, Li X, Liu D, et al. Synergetic adsorption of asphaltenes and oil displacement surfactants on the oil-water interface: insights on stabilization mechanism of the interfacial film[J]. Chemical Engineering Science, 2021, 245: 116850-116858.
doi: 10.1016/j.ces.2021.116850 |
[10] |
Suzuki T, Nakamura M, Sumida H, et al. Liquid crystal make-up remover: conditions of formation and its cleansing mechanisms[J]. Journal of Society of Cosmetic Chemists of Japan, 1991, 25 (3) : 193-202.
doi: 10.5107/sccj.25.193 |
[11] |
Pakkang N, Uraki Y, Koda K, et al. Preparation of water-in-oil microemulsion from the mixtures of castor oil and sunflower oil as makeup remover[J]. Journal of Surfactants and Detergents, 2018, 21 (6) : 809-816.
doi: 10.1002/jsde.12189 |
[12] | Sun Shuxiu. Preparation and application of functional self-emulsifying fluid[D]. Fuzhou: Fujian Normal University, 2016. |
[13] | Feng Junli. Study on microemulsion of VE[D]. Wuxi: Jiangnan University, 2007. |
[14] | Zhang Lili, Wen Shumei, Gao Jing. Ultrasound-assisted bicontinuous ionic liquid microemulsion extraction of astaxanthin from Antarctic krill shells[J]. Chinese Journal of Food, 2021, 21 (9) : 130-141. |
[15] |
Chang Naifang, Tsai Fengjie, Zheng Yamin, et al. Using a cellular system to directly assess the effects of cosmetic microemulsion encapsulated deoxyarbutin[J]. International Journal of Molecular Sciences, 2021, 22 (23) : 13110.
doi: 10.3390/ijms222313110 |
[16] | Luo Yulu, Meng Qin. Preparation of microemulsions from rhamnolipids and their application in cosmetics[J]. Chemical Reaction Engineering and Processes, 2020, 36 (5) : 466-472. |
[17] | Guo Jing, Zhang Long, Tang Yao, et al. Stability of amino acids in Tween 80-ethanol-glycerol-water microemulsion make-up[J]. Journal of Yangzhou University (Natural Science Edition), 2014, 17 (3) : 32-35. |
[18] |
Waiyawat J, Kanjana P, Kongsema M, et al. Tooth desensitizing calcium phosphate composite gelatin-based gel[J]. Journal of Bioactive and Compatible Polymers, 2020, 35 (6) : 491-503.
doi: 10.1177/0883911520960502 |
[19] | Guan Tong. Research evaluation of the cleansing properties of volatile oil nanoemulsions of mountain waxberry in root canals[D]. Nanchang: Nanchang University, 2021. |
[20] | Wang Jinqiu, Wang Lifang, et al. Development of contact lens cleaning solution and its effect evaluation[J]. China Pharmaceuticals, 1997 (1) : 29-30. |
[21] | Xu Mengyue, Li Qing, Wu Hua, et al. Preparation and structural characterization of glycyrrhizic acid fiber tea tree essential oil emulsion gel[J]. Food Science, 2021, 42 (4) : 15-22. |
[22] | Guo Jing, Liu Tianqing. Preparation of β-carotene loaded hydrogels by emulsion template method[C]// Proceedings of the 17th National Colloid and Interface Chemistry Conference. Wuxi: Chinese Chemical Society, 2019: 203-204. |
[23] |
Cristina S, Mircea T, Adina R, et al. Novel gel microemulsion as topical drug delivery system for curcumin in dermatocosmetics[J]. Pharmaceutics, 2021, 13 (4) : 505-524.
doi: 10.3390/pharmaceutics13040505 |
[1] | Jingxuan Liu, Jianming Jin, Hua Wu. Botanical cosmetic ingredients (VII)Research and development of plant antifungal [J]. China Surfactant Detergent & Cosmetics, 2024, 54(3): 259-266. |
[2] | Wu Bi, Xiaohong Pan, Xiaoqin Tu, Shuai Yin, Hui Sun. Analysis of the mechanism of anti-sensitive skin effect of cosmetic raw material Stephania tetrandra based on network pharmacology [J]. China Surfactant Detergent & Cosmetics, 2024, 54(3): 305-312. |
[3] | Yaoyao Li. Study on the anti-aging and antioxidant effects of isosinensetin [J]. China Surfactant Detergent & Cosmetics, 2024, 54(3): 313-319. |
[4] | Mengran Xu, Hua Zhao. Research progress on the evaluation methods of cosmetic after-sun repair efficacy [J]. China Surfactant Detergent & Cosmetics, 2024, 54(3): 329-336. |
[5] | Liyuan Zhang, Linqi Yan, Qiaoyuan Cheng, Lvye Qi, Rong Wang, Liuqian Huang. Determination of 14 kinds of α-hydroxy acids and hydroxy esters in cosmetics [J]. China Surfactant Detergent & Cosmetics, 2024, 54(3): 353-359. |
[6] | Wei Xu, Po Zou, Changyu Li, Ming Yang, Yan Lu, Huiliang Li. Determination of 36 stimulants in cosmetics by ultra performance liquid chromatography-tandem mass spectrometry [J]. China Surfactant Detergent & Cosmetics, 2024, 54(3): 360-368. |
[7] | Shida Hou, Zhifei Wang, Yakui Wang, Jun Li, Yajie Jiang, Tao Geng. Application properties of the mixed system of AEC and a quaternary ammonium salt with multiple cationic sites [J]. China Surfactant Detergent & Cosmetics, 2024, 54(2): 131-138. |
[8] | Kangfu Zhou, Yixuan Zhi, Feifei Wang, Yazhuo Shang. New emulsion system and its application in cosmetics (VI)Microemulsion [J]. China Surfactant Detergent & Cosmetics, 2024, 54(2): 139-148. |
[9] | Zhen Xie, Wei Huang, Jinsong Zhang, Shuhuai Chen, Linji Qu, Rong Kuang. Study on biomarkers of corneal injury in the evaluation of eye irritation of cosmetics [J]. China Surfactant Detergent & Cosmetics, 2024, 54(2): 161-167. |
[10] | Xiaohong Pan, Ziqi Gao, Zhen Chen, Shuai Yin, Haiping Huang, Bin Hu. Discussion on the current situation of research and management on the stability of cosmetic products in China [J]. China Surfactant Detergent & Cosmetics, 2024, 54(2): 201-208. |
[11] | Kuankuan Gao, Suzhen Yang, Tingting Han, Yan Li, Chunying Yuan, Xinyu Mao. Research progress of royal jelly acid and its skin care efficacy [J]. China Surfactant Detergent & Cosmetics, 2024, 54(2): 209-215. |
[12] | Li Lu, Fang Fang, Youlong Feng, Ling Cao. Screening for illegal addition of sulfonamides in cosmetic products using ultra-performance liquid chromatographytriple quadrupoletandem mass spectrometry with precursor ion scanning [J]. China Surfactant Detergent & Cosmetics, 2024, 54(2): 216-223. |
[13] | Ren Wang, Yuanyang Wu, Jia Qiao, Linqi Yan, Cen Chen, Liyuan Zhang. Study on phenoxyethanol content in children’s cosmetics on the mark and preliminary risk assessment [J]. China Surfactant Detergent & Cosmetics, 2024, 54(2): 224-230. |
[14] | Yixiang Lu, Liting Wu, Jimin Jiang, Hailu Chen, Xuan Huang. Determination of tolnaftate and liranaftate in cosmetics by high performance liquid chromatography and verification by high performance liquid chromatography-tandem mass spectrometry [J]. China Surfactant Detergent & Cosmetics, 2024, 54(2): 231-238. |
[15] | Pei Liu, Ting Pan, Xiaomei Pei, Binglei Song, Jianzhong Jiang, Zhenggang Cui, Bernard P. Binks. Dual-responsive oil-in-water emulsions co-stabilized by a nonionic-anionic Bola surfactant and silica nanoparticles [J]. China Surfactant Detergent & Cosmetics, 2024, 54(1): 1-15. |
|