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The effect of ethyl xanthogenate on both the electrokinetic properties and sorption of a cationic dye onto polyester fibers

机译:黄原酸乙酯对电动性能和阳离子染料在聚酯纤维上的吸附的影响

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An experimental investigation of the streaming potential and sorption of porous plugs of polyester fibers treated with different amounts, of potassium ethyl xanthogenate, at constant temperature, and later dyed with the cationic dye Brilliant Green, is described. The negative zeta potential of polyester fibers pretreated with ethyl xanthogenate/Brilliant Green increases when increasing the amount of ethyl xanthogenate previously taken up by the fiber, in the range of dye concentrations in solution between 10~(-6) and 2 x 10~(-5) M, the reverse trend being observed between 2 x 10~(-5) and about 10~(-3)-M. The sign of the zeta potential changes at high concentrations of cationic dye in the liquid phase. When the amount of ethyl xanthogenate taken up by the fiber increases, a shift of this inversion of sign towards lower concentrations is observed. The sorption of cationic dye increases on increasing the amount of ethyl xanthogenate previously taken up by the fiber. The surface conductance, κ_s, predominates in the total electrical conductance of the system, κ at low concentrations of dye in the solution, while it is the bulk component, κ_b, that predominates in the higher concentration range. From the experimental results and on the basis of the molecular structures of Brilliant Green and ethyl xanthogenate, it is suggested that the sorption of Brilliant Green on polyester fibers previously treated with ethyl xanthogenate probably takes-place by means of electrostatic attraction between the dye cation and the negatively charged -S~- groups of the ethyl xanthogenate previously taken up by the fibers during their treatment. Given the hydrophobic character of the polyester and the amphiphilic nature of the dye molecules, hydrophobic attractions between the fiber and the hydrophobic part of the dye might account for the interaction explaining the adsorption of Brilliant Green even when it is hindered by electrostatic repulsion.
机译:描述了在恒定温度下用不同数量的乙基黄原酸钾处理过的聚酯纤维的多孔树脂的流动电位和吸附的实验研究,该聚酯纤维在恒定温度下被阳离子染料艳绿染色。在溶液中染料浓度在10〜(-6)和2 x 10〜(之间)范围内时,黄原酸乙酯/亮绿色预处理的聚酯纤维的负zeta电位随着纤维先前吸收的黄原酸乙酯的量增加而增加。 -5)M,在2 x 10〜(-5)和大约10〜(-3)-M之间观察到相反的趋势。在液相中高浓度的阳离子染料时,ζ电位的符号会发生变化。当纤维吸收的黄原酸乙酯的量增加时,观察到该符号反转向较低浓度的偏移。随着纤维预先吸收的黄原酸乙酯的量增加,阳离子染料的吸附也会增加。在溶液中低浓度染料时,表面电导κ_s在系统的总电导率κ中占主导地位,而在较高浓度范围中,主体成分κ_b占主导地位。从实验结果以及基于灿烂绿和黄原酸乙酯的分子结构,表明灿烂绿在预先用黄原酸乙酯处理过的聚酯纤维上的吸附可能是通过染料阳离子和阳离子之间的静电吸引而发生的。黄原酸乙酯带负电荷的-S〜-基团先前在纤维处理过程中被纤维吸收。考虑到聚酯的疏水特性和染料分子的两亲性质,即使在静电排斥的情况下,纤维与染料的疏水部分之间的疏水吸引力也可能解释了相互作用,从而解释了亮绿色的吸附。

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