Renewable non-edible oils derived long chain (C24.1) bio-based zwitterionic surfactant with ultralow interfacial tension between crude oil and formation brine

IF 9.1 Q1 ENGINEERING, CHEMICAL Green Chemical Engineering Pub Date : 2023-09-01 DOI:10.1016/j.gce.2022.08.001
Homely Isaya Mtui , Fang-Hui Liu , Wei Wang , Jian-Qiao Lang , Shi-Zhong Yang , Bo-Zhong Mu
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引用次数: 1

Abstract

A new ultra-long chain monounsaturated 4-(N-nervonicamidopropyl-N,N-dimethylammonium) butane sulfonate (NDAS) zwitterionic surfactant with ultralow interfacial tensions was developed through the modification of nervonic acid derived from renewable non-edible seed oils by a simple and effective method. Its structure was characterized by ESI-HRMS, 1H NMR, and 13C NMR. NDAS surfactant exhibited a strong interfacial activity (∼10−4 mN/m) between the crude oil and the formation brine at a very low surfactant dosage (0.05 g/L) and at high salinity conditions, which is equivalent to 2% (w/w) of dosage of the most traditional surfactants used in the enhanced oil recovery field. Meanwhile, at a very low concentration (0.05 g/L), NDAS demonstrated strong NaCl compatibility up to 100 g/L, Ca2+ ions compatibility up to 200 mg/L, and temperature stability up to 90 °C. The surface tension, emulsification, and biodegradability parameters were also evaluated. This work consolidates our hypothesis that increasing the hydrophobic chain length of a surfactant certainly contributes to the high interfacial activity and good compatibility of salts and temperatures. Hence, it will facilitate the design of a sustainable alternative to petroleum-based chemicals to develop bio-based surfactants and extend the domain of bio-based surfactants to new applications such as in enhanced oil recovery (EOR).

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可再生非食用油衍生的长链(C24.1)生物基两性离子表面活性剂,具有原油与地层盐水之间的超低界面张力
以可再生非食用种子油为原料,采用简单有效的方法对神经酸进行改性,制备了一种新型的超长链单不饱和4-(N-神经酰胺丙基-N,N-二甲基铵)丁烷磺酸两性离子表面活性剂。通过ESI-HRMS、1H NMR和13C NMR对其结构进行了表征。在极低的表面活性剂用量(0.05 g/L)和高盐度条件下,NDAS表面活性剂在原油和地层盐水之间表现出很强的界面活性(~10−4 mN/m),这相当于提高采收率油田中使用的最传统表面活性剂剂量的2%(w/w)。同时,在极低浓度(0.05 g/L)下,NDAS表现出高达100 g/L的强NaCl兼容性、高达200 mg/L的Ca2+离子兼容性和高达90°C的温度稳定性。还评估了表面张力、乳化性和生物降解性参数。这项工作巩固了我们的假设,即增加表面活性剂的疏水链长度肯定有助于提高界面活性和盐与温度的良好兼容性。因此,它将有助于设计一种可持续的石油基化学品替代品,以开发生物基表面活性剂,并将生物基表面活化剂的领域扩展到新的应用,如提高采收率(EOR)。
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来源期刊
Green Chemical Engineering
Green Chemical Engineering Process Chemistry and Technology, Catalysis, Filtration and Separation
CiteScore
11.60
自引率
0.00%
发文量
58
审稿时长
51 days
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