SO2 – Am (KOH) – TROPEOLIN OOO – H2O (Am – ETHANOLAMINES, MORPHOLINE) SYSTEMS ACID-BASE PROPERTIES

R. Khoma, T. Bienkovska, E. Y. Bugova, L. T. Osadchiy, S. Vodzinskii, S. Toporov
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引用次数: 1

Abstract

The study of data on acid-base properties of model systems SO2 – KOH – TrOOO – H2O and SO2 – Am – TrOOO – H2O (TrOOO – tropeoline OOO; Am – diethanolamine (DEA), triethanolamine (TEA), N‑methylmonoethanolamine (MMEA) and morpholine (Mf) at 293 K using pH-, spectrophotometry and colorimetry methods are presented. There is a pronounced isosbestic point at 415 nm in the electronic absorption spectra of the systems SO2– Am –TrOOO– H2O (Am = MMEA, MEA and TEA; pH ≤ 7.5; T = 293 K), which indicates the presence of a dynamic equilibrium between ion-molecular forms. According to the width of the absorption spectra, the bases in the region of 2.0 ≤ pH ≤ 8.0 can be arranged in the following row: MEA > Mf > KOH > DEA > TEA > MMEA. The bases can be arranged in the following rows for the effect on optical density at 490 nm: KOH > Mf ≥ MEA > DEA ≥ TEA (at 5.5 ≤ pH < 9.0); KOH = MEA = Mf > DEA = TEA (at pH < 6.0). According to the values of optical density at 360 nm in the region of 2.0 ≤ pH < 8.5, the bases can be arranged in the following row: Mf > KOH ≥ MEA ≥ DEA > MMEA > TEA. The total color difference (ΔE76) and specific color difference (SCD) values were calculated by colorimetric method as a function of pH. The acid–base dissociation constants in the SO2 – Am (KOH) – TrOOO – H2O systems significantly depend on the structure and physicochemical properties of the organic base and differ significantly from those in the HCl (HClO4, H2SO4) – MEA – TrOOO – H2O systems. The interrelation of colorimetric functions was established (total color difference and specific color difference) of SO2 – Am – TrOOO – H2O systems with molar refraction Am, empirical function pKa – lgPow, which combines the basicity and hydrophilicity of Am, formation constants of ammonium sulfites and hydrosulfites, pH- (dpH/dpQSO2), redox- (dЕ/dpQSO2) and conductometric (Dk) titration curves of Am aqueous solutions with gaseous sulfur dioxide.
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SO2 -氨基(KOH) - TROPEOLIN OOO - H2O(氨基-乙醇胺,MORPHOLINE)体系酸碱性质
SO2 - KOH - TrOOO - H2O和SO2 - Am - TrOOO - H2O (TrOOO - TrOOO - tropeoline OOO)模型体系酸碱性质数据研究分别用pH-、分光光度法和比色法测定了293 K下的氨基二乙醇胺(DEA)、三乙醇胺(TEA)、N -甲基单乙醇胺(MMEA)和啉(Mf)。SO2 - Am - trooo - H2O体系的电子吸收光谱在415 nm处存在明显的等吸点(Am = MMEA, MEA和TEA;pH≤7.5;T = 293 K),这表明离子-分子形态之间存在动态平衡。根据吸收光谱宽度,2.0≤pH≤8.0区域的碱基排列顺序为:MEA > Mf > KOH > DEA > TEA > MMEA。碱基对490 nm光密度的影响顺序为:KOH > Mf≥MEA > DEA≥TEA(5.5≤pH < 9.0);KOH = MEA = Mf > DEA = TEA (pH < 6.0)。根据2.0≤pH < 8.5区域360 nm处光密度值,碱基排列顺序为:Mf > KOH≥MEA≥DEA > MMEA > TEA。用比色法计算了总色差(ΔE76)和比色差(SCD)值作为ph的函数。SO2 - Am (KOH) - TrOOO - H2O体系的酸碱解离常数与HCl (HClO4, H2SO4) - MEA - TrOOO - H2O体系的酸碱解离常数显著依赖于有机碱的结构和理化性质,与HCl (HClO4, H2SO4) - MEA - TrOOO - H2O体系的酸碱解离常数差异显著。建立了SO2 - Am - TrOOO - H2O体系与摩尔折射Am的比色函数(总色差和比色差)、结合Am的碱度和亲水性的经验函数pKa - lgPow、亚硫酸铵和亚硫酸铵的形成常数、Am水溶液与二氧化硫的pH- (dpH/dpQSO2)、氧化还原- (dЕ/dpQSO2)和电导滴定(Dk)曲线的相互关系。
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