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Effect of tannic acid on the zeta potential, sorption, and surface free energy in the process of dyeing of Leacril with a cationic dye

机译:单宁酸对Leacril阳离子染料染色过程中ζ电位,吸附和表面自由能的影响

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The behavior of the surface free energy in the process of dyeing Leacril pretreated with tannic acid and subsequently dyeing with the cationic dye Rhodamine B has been studied. Also the electrokinetic behavior of these systems has been analyzed by studying the zeta potential, which has been obtained by means of the streaming potential technique. Values more significative of the zeta potential of these systems have been obtained using the three models of capillaries existing in the literature. The qualitative behavior of the zeta potential is the same for the three models of capillaries tested in this paper. These models are those of Goring and Mason, Biefer and Mason, and Chang and Robertson. The zeta potential of the systems analyzed is negative in the range of concentration of the dye in the liquid phase from 10(-6) to ca. 10(-4) M of dye. In the range of low concentrations (from 10(-6) to ca. 10(-5) hi of dye) the zeta potential of the system untreated Leacril/Rhodamine B increases in absolute value due to increasing hydrophobic attractions between both the hydrophobic chains of the dye and the Leacril fibers in aqueous media. In the system Leacril treated with tannic acid/Rhodamine B, this increase is also due to the presence of hydrogen bonding between the phenolic hydroxyl groups of the tannic acid and the sulfonate and sulfate end groups of Leacril fibers. For concentrations of dye between 10(-5) and 10(-4) M of dye in solution, the zeta potential decreases in absolute value due to the electrostatic attractions between the groups negatively charged in the fiber and the cation of the dye. The zeta potential changes its sign at the highest concentrations of dye used in this work. The adsorption of Rhodamine B onto both untreated Leacril and Leacril treated with tannic acid is favored by the increasing temperature of adsorption. The behavior of the components of the surface free energy obtained by the thin-layer wicking technique led us to consider that the cationic dye Rhodamine B is adsorbed on the surface of both untreated Leacril and Leacril treated with tannic acid by Lewis acid-base interactions. (C) 1998 Academic Press. [References: 36]
机译:已经研究了在用鞣酸进行预处理的Leacril染色以及随后用阳离子染料若丹明B进行染色的过程中表面自由能的行为。此外,还通过研究zeta电位分析了这些系统的电动行为,该电位是通过流动电位技术获得的。使用文献中存在的三种毛细管模型已经获得了这些系统的ζ电势更有意义的值。本文测试的三种毛细管模型的zeta电位的定性行为相同。这些模型是Goring和Mason,Biefer和Mason以及Chang和Robertson的模型。在从10(-6)到ca的液相染料浓度范围内,所分析系统的zeta电位为负。 10(-4)M的染料。在低浓度范围(染料的10(-6)至约10(-5)hi)范围内,未处理的Leacril / Rhodamine B的zeta电位绝对值会增加,这是由于两条疏水链之间的疏水吸引力增加染料和Leacril纤维在水性介质中的含量在单宁酸/若丹明B处理的Leacril体系中,这种增加也是由于单宁酸的酚羟基与Leacril纤维的磺酸根和硫酸根端基之间存在氢键。对于溶液中10(-5)和10(-4)M染料之间的染料浓度,由于纤维中带负电荷的基团与染料阳离子之间的静电吸引,ζ电位的绝对值降低。在这项工作中使用的最高染料浓度时,ζ电位会改变其符号。吸附温度的升高有利于若丹明B在未经处理的Leacril和单宁酸处理的Leacril上的吸附。通过薄层芯吸技术获得的表面自由能的组分行为使我们考虑到,阳离子染料若丹明B通过Lewis酸碱相互作用吸附在未经处理的Leacril和单宁酸处理的Leacril的表面上。 (C)1998年学术出版社。 [参考:36]

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