Adofo Yaw Kwakye, Nyankson Emmanuel, Agyei-Tuffour Benjamin, Gbogbo Selassie, Amoako Christian, Morgan Joseph Arko, Manu Gloria Pokuaa, Arkorful Grace Karikari
Material Science and Engineering Department, School of Engineering Sciences, University of Ghana, Legon-Accra, Ghana.
Heliyon. 2025 Jan 16;11(2):e41951. doi: 10.1016/j.heliyon.2025.e41951. eCollection 2025 Jan 30.
Chicken feather protein (CFP), and lecithin (L), Tween 80 (T), and DOSS (D) surfactant systems were loaded onto halloysite nanotubes (HNTs), a natural clay aluminosilicate product to form particulate dispersants at different surfactant concentrations and characterized by Fourier Transform Infrared spectroscopy, thermogravimetric analysis and scanning electron microscopy coupled with EDS. For 24 wt% surfactants concentrations loaded HNTs; 100 wt%CFP-HNTs, 60 wt%CFP- 40 wt%L-HNTs, 20 wt%CFP- 80 wt%T-HNTs, 50 wt%CFP- 25 wt%T-25 wt%L-HNTs and 25 wt %CFP- 25 wt%T-50 wt%D-HNTs showed good interfacial tension lowering abilities by recording 6.39, 2.82, 2.43, 1.68, and 1.55 mN/m at 60s respectively. The CFP-based surfactant-HNTs dispersants formed very stable o/w emulsions against droplet coalescence and showed an increase in interfacial viscosity which contributed to the stability of their respective o/w emulsions. In this study, the US EPA's baffled flask test was deployed to probe the prospects of the CFP-based surfactants-HNTs dispersants in crude oil dispersion at different surfactant concentrations. 100 wt%CFP-HNTs, 60 wt %CFP- 40 wt %L-HNTs, 20 wt %CFP- 80 wt %T-HNTs, 50 wt %CFP- 25 wt%T-25 wt%L-HNTs and 25 wt%CFP- 25 wt%T-50 wt%D-HNTs recorded dispersion effectiveness of 33.9, 74.8, 65.4, 78.6 and 88.2 vol% respectively at 24 wt% surfactant concentration. It can be deduced that an increase in the surfactant concentrations loaded onto HNTs improved the dispersion effectiveness of the produced particulate dispersants. Largely, the 24 wt% CFP-based surfactant-HNTs dispersants showed considerable promise in crude oil dispersion in seawater.
将鸡毛蛋白(CFP)、卵磷脂(L)、吐温80(T)和二辛基磺酸钠(D)表面活性剂体系负载到埃洛石纳米管(HNTs)上,HNTs是一种天然粘土铝硅酸盐产品,在不同表面活性剂浓度下形成颗粒分散剂,并通过傅里叶变换红外光谱、热重分析以及扫描电子显微镜结合能谱进行表征。对于负载24 wt%表面活性剂的HNTs;100 wt%CFP-HNTs、60 wt%CFP-40 wt%L-HNTs、20 wt%CFP-80 wt%T-HNTs、50 wt%CFP-25 wt%T-25 wt%L-HNTs和25 wt%CFP-25 wt%T-50 wt%D-HNTs在60秒时分别记录到6.39、2.82、2.43、1.68和1.55 mN/m的良好降低界面张力能力。基于CFP的表面活性剂-HNTs分散剂形成了非常稳定的水包油乳液以防止液滴聚结,并显示出界面粘度增加,这有助于各自水包油乳液的稳定性。在本研究中,采用美国环境保护局的折流板烧瓶试验来探究不同表面活性剂浓度下基于CFP的表面活性剂-HNTs分散剂在原油分散中的前景。在24 wt%表面活性剂浓度下,100 wt%CFP-HNTs、60 wt%CFP-40 wt%L-HNTs、20 wt%CFP-80 wt%T-HNTs、50 wt%CFP-25 wt%T-25 wt%L-HNTs和25 wt%CFP-25 wt%T-50 wt%D-HNTs的分散效率分别记录为33.9、74.8、65.4、78.6和88.2 vol%。可以推断,负载到HNTs上的表面活性剂浓度增加提高了所制备颗粒分散剂 的分散效率。在很大程度上,24 wt%基于CFP的表面活性剂-HNTs分散剂在海水中原油分散方面显示出可观的前景。