首页> 外文期刊>Journal of Surfactants and Detergents >A New Type of Sulfobetaine Surfactant with Double Alkyl Polyoxyethylene Ether Chains for Enhanced Oil Recovery
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A New Type of Sulfobetaine Surfactant with Double Alkyl Polyoxyethylene Ether Chains for Enhanced Oil Recovery

机译:具有双烷基聚氧乙烯醚链的新型磺基甜菜碱表面活性剂,可提高采油率

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A new type of sulfobetaine with double alkyl polyoxyethylene (n) ether chains, dicoconut oil alcohol polyoxethylene (n) ether methylhydroxylpropyl sulfobetaine (diC(12-14)E (n) HSB) was synthesized using a commercial nonionic surfactant, coconut oil alcohol polyoxethylene (n) ether, as raw material and its properties as a surfactant for enhanced oil recovery (EOR) in the absence of alkali was studied. The purified product is a mixture of homologues with mainly C-12/C-12, C-12/C-14 and C-14/C-14 alkyl chains and widely distributed EO chains (n = 2.2 on average) with an average molar mass of 742.6 g/mol. The diC(12-14)E(2.2)HSB has an improved aqueous solubility at 25 A degrees C compared with didodecylmethylhydroxylpropyl sulfobetaine (diC(12)HSB), a homologue without an EO chain, and is highly surface active as reflected by its low CMC (4.6 x 10(-6) mol/L), high saturated adsorption (6.8 x 10(-10) mol/cm(2)) and small cross sectional area (0.24 nm(2)/molec.) at the air/water interface. With a hydrophile-lipophile balance well matched with Daqing crude oil/connate water system, the sulfobetaine can reduce Daqing crude oil/connate water interfacial tension to ultra-low values at 45 A degrees C in the absence of alkali, and displays a low saturated adsorption at the sandstone/water interface (0.0024 mmol/g), reduced by 69 and 92 % respectively in comparison with that of the corresponding carboxyl betaine, diC(12-14)E(2.2)B and its homologue without an EO chain, didodecylmethylcarboxyl betaine (diC(12)B). With these excellent properties diC(12-14)E(2.2)HSB gives a high tertiary recovery, 18.4 % original oil in place, when mixed with other hydrophobic and hydrophilic sulfobetaines in surfactant-polymer (SP) flooding free of alkali. The insertion of EO chains in combination with the replacement of carboxyl betaine by sulfobetaine is therefore very efficient for improving the properties of the double chain hydrophobic carboxyl betaines as surfactants for SP flooding free of alkali.
机译:使用商业非离子表面活性剂椰子油醇聚氧乙烯合成了一种新型的具有双烷基聚氧乙烯(n)醚链的磺基甜菜碱,二椰子油醇聚氧乙烯(n)醚甲基羟丙基磺基甜菜碱(diC(12-14)E(n)HSB)。 (n)以醚为原料,研究了其在不存在碱的情况下作为提高采收率(EOR)的表面活性剂的性能。纯化产物是主要具有C-12 / C-12,C-12 / C-14和C-14 / C-14烷基链和分布广泛的EO链(平均n = 2.2)的同系物的混合物摩尔质量为742.6 g / mol。与二十二烷基甲基羟丙基磺基甜菜碱(diC(12)HSB)(没有EO链的同系物)相比,diC(12-14)E(2.2)HSB在25 A的温度下具有改善的水溶性,并且由其反映出的高表面活性低CMC(4.6 x 10(-6)mol / L),高饱和吸附(6.8 x 10(-10)mol / cm(2))和小横截面面积(0.24 nm(2)/ mol)。空气/水接口。磺基甜菜碱具有与大庆原油/天然水系统完全匹配的亲油亲油平衡,可以在没有碱的情况下将大庆原油/天然水的界面张力在45 A的温度下降低至超低值,并显示出较低的饱和度与相应的羧基甜菜碱diC(12-14)E(2.2)B及其同系物没有EO链相比,在砂岩/水界面的吸附(0.0024 mmol / g)分别降低了69%和92%,十二烷基甲基羧基甜菜碱(diC(12)B)。凭借这些优异的性能,diC(12-14)E(2.2)HSB与表面活性剂-聚合物(SP)中的其他疏水性和亲水性磺基甜菜碱混合使用时,在无碱的条件下,可获得较高的三次采油率,原始油为18.4%。因此,EO链的插入与磺基甜菜碱取代羧基甜菜碱的结合对于提高双链疏水性羧基甜菜碱的性能非常有效,因为该表面活性剂用于无碱的SP泛滥。

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