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Adsorption of Tiron onto Alumina

机译:Tiron在氧化铝上的吸附

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摘要

It has been shown recently that small organic molecules, used as dispersants in the colloidal processing of ceramic powders to adjust the forces between the particles, are quite efficient in preparing aqueous suspensions of high solid loadings and low viscosity. One of them is 4,5-dihydroxy-1,3-benzenedisulfonic acid, disodium salt monohydrate, ((OH)_2C_6H_2(SO_3Na)_2.H_2O), commercially known as Tiron. The adsorption of Tiron, as a function of its concentration and solution pH, onto alumina was investigated by the solution depletion method, applying UV spectrophotometry. KNO_3 (10~(-2) mol/l) was used as the background electrolyte. The obtained results indicate an increase in the amount of adsorbed Tiron with its increasing concentration. The maximum adsorption was recorded at pH≈7 when the Tiron molecule was uncharged, i.e. undissociated (pKa_1=7.6). The experimental data were fitted with different adsorption isotherm models. The maximum amount of Tiron adsorbed, as well as the constants of adsorption process were calculated.
机译:最近已经表明,在陶瓷粉末的胶体加工中用作分散剂以调节颗粒之间的力的小有机分子在制备高固体载体和低粘度的水性悬浮液中具有相当有效的。其中一个是4,5-二羟基-1,3-苯并异硫酸,二钠盐一水合物,((OH)_2C_6H_2(SO_3NA)_2.H_2O),商业称为TIRON。通过溶液耗尽法研究了Tiron,作为其浓度和溶液pH的函数的函数,施加紫外分光光度法研究了氧化铝。 KNO_3(10〜(-2)mol / l)用作背景电解质。所得结果表明吸附性Tiron的浓度增加的增加。当Tiron分子没有收点时,在pH≈7时,在pH≈7时记录最大吸附,即未分配(PKA_1 = 7.6)。实验数据配有不同的吸附等温线模型。计算吸附的Tiron的最大量,以及吸附过程的常数。

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