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低分子量醇类对木质素磺酸盐乳液稳定性的影响

Effect of Low-Molecular-Weight Alcohols on Emulsion Stabilization with Lignosulfonates.

作者信息

Ruwoldt Jost, Øye Gisle

机构信息

Ugelstad Laboratory, Department of Chemical Engineering, Norwegian University of Science and Technology (NTNU), 7491 Trondheim, Norway.

RISE PFI AS, Høgskoleringen 6B, 7491 Trondheim, Norway.

出版信息

ACS Omega. 2020 Nov 11;5(46):30168-30175. doi: 10.1021/acsomega.0c04650. eCollection 2020 Nov 24.

Abstract

Lignosulfonates are biobased surfactants and specialty chemicals, which are described as water-soluble polyelectrolyte macromolecules that are generated during the sulfite pulping of lignocellulose biomass. Due to their amphiphilic nature, lignosulfonates have made their way into various applications, such as plasticizers, dispersants, and suspension or emulsion stabilizer. The stabilization efficiency for oil-in-water emulsions is affected, among other aspects, by the presence of alcohols. Low-molecular-weight alcohols can improve the performance of lignosulfonates; however, the effects of such additive have not yet been fully explored. In this article, we hence studied emulsion stability in dependence of alcohol concentration and other parameters, such as salinity. One or two regions of improved stability were found, which occurred at approximately 0.001-0.01 M alcohol in water, and in some cases additionally at 1-3 M. The four lignosulfonate samples responded distinctly to the alcohol additives. Little difference was found for varying lignosulfonate concentration or the alcohol type, that is, methanol, ethanol, or 2-propanol. Adding ethanol at high salinity (720 mM NaCl) showed a destabilizing effect. A decrease in interfacial tension was noted when adding 1 M ethanol or more, but the surface pressure of lignosulfonates decreased progressively at 0.3 M ethanol and above. These effects are counteracting, which could explain why increasing alcohol concentration would either enhance or impair stability. Overall, emulsion stability was affected by concentration effects and not cosurfactant action of the alcohols. Composition changes can influence the dielectric properties of the bulk solvent, further affecting the anionic functional groups, which was evidenced by alcohol addition affecting the lignosulfonates with lower hydrophobicity more strongly and by ethanol exhibiting the destabilizing effect at high salinity. In conclusion, adding low-molecular-weight alcohols may hence influence the behavior of lignosulfonates and render them more accessible for interactions with hydrophobic interfaces.

摘要

木质素磺酸盐是生物基表面活性剂和特种化学品,被描述为在木质纤维素生物质的亚硫酸盐制浆过程中产生的水溶性聚电解质大分子。由于其两亲性,木质素磺酸盐已进入各种应用领域,如增塑剂、分散剂以及悬浮或乳液稳定剂。水包油乳液的稳定效率在其他方面受到醇类存在的影响。低分子量醇可以改善木质素磺酸盐的性能;然而,这种添加剂的影响尚未得到充分研究。因此,在本文中,我们研究了乳液稳定性与醇浓度以及其他参数(如盐度)的关系。发现了一个或两个稳定性提高的区域,分别出现在水中醇浓度约为0.001 - 0.01 M时,在某些情况下还出现在1 - 3 M时。四个木质素磺酸盐样品对醇添加剂的反应明显不同。对于不同的木质素磺酸盐浓度或醇类型(即甲醇、乙醇或2 - 丙醇),差异不大。在高盐度(720 mM NaCl)下添加乙醇显示出不稳定作用。当添加1 M或更多乙醇时,界面张力降低,但在0.3 M及以上乙醇浓度时,木质素磺酸盐的表面压力逐渐降低。这些影响相互抵消,这可以解释为什么增加醇浓度会增强或损害稳定性。总体而言,乳液稳定性受浓度效应影响,而非醇类的助表面活性剂作用。组成变化会影响本体溶剂的介电性能,进而影响阴离子官能团,这一点通过醇添加对疏水性较低的木质素磺酸盐影响更强以及乙醇在高盐度下表现出不稳定作用得到证明。总之,添加低分子量醇可能会影响木质素磺酸盐的行为,使其更易于与疏水界面相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2e2/7689891/8357437108ac/ao0c04650_0002.jpg

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