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在 = 20.4 MPa 下,使用拉曼光谱法和钛宝石流动池测定 75 至 300°C 时 HO 和 DO 中磷酸的第三离解常数。

Third dissociation constant of phosphoric acid in HO and DO from 75 to 300 °C at = 20.4 MPa using Raman spectroscopy and a titanium-sapphire flow cell.

机构信息

Department of Chemistry, University of Guelph, Guelph, ON N1G 2W1, Canada.

出版信息

Phys Chem Chem Phys. 2021 May 5;23(17):10670-10685. doi: 10.1039/d0cp06266a.

DOI:10.1039/d0cp06266a
PMID:33908441
Abstract

A custom-built titanium-sapphire flow cell has been used with a confocal Raman microscope to collect solvent-corrected reduced isotropic spectra of sodium and potassium phosphate solutions in light and heavy water from 75 to 300 °C at 20.4 ± 0.4 MPa over a wide range of concentrations. The symmetric vibrational modes of PO43- and HPO42-/DPO42- in both solvents broadened and moved to lower wavenumbers with increasing temperature, suggesting that oxyanion-water hydrogen bond strengths increase at elevated temperatures. Raman scattering coefficients, measured relative to the trifluoromethanesulfonate ion, were used to determine thermodynamic equilibrium quotients for the reaction PO43- + H2O ⇌ HPO42- + OH- and its deuterium counterpart. Standard-state acid ionization constants were calculated using a modified Pitzer model and fitted as a function of temperature and solvent molar volume over the range of 25 to 300 °C from psat to 20 MPa. The deuterium isotope effect on the chemical equilibrium constant, ΔpK3a,m = pK3a,D,m - pK3a,H,m, was found to decrease from 1.045 ± 0.046 at 25 °C to 0.898 ± 0.073 at 250 °C. This behaviour is consistent with a model in which zero-point energy effects dominate at low temperatures and long-range solvent polarization becomes increasingly important as the temperature increases towards the critical point of D2O. These are the first experimental ionization constants to be reported in the literature for this reaction in light water above 50 °C and in heavy water at any temperature.

摘要

已使用定制的钛宝石流池和共焦拉曼显微镜,在 20.4 ± 0.4 MPa 的压力下,从 75°C 至 300°C 范围内,对轻水和重水中的钠盐和钾盐溶液进行溶剂校正后的各向同性还原光谱采集,浓度范围很宽。两种溶剂中 PO43-和 HPO42-/DPO42-的对称振动模式随着温度的升高而变宽并向低波数移动,表明在高温下,含氧阴离子-水氢键的强度增加。相对三氟甲烷磺酸根离子测量的 Raman 散射系数,用于确定 PO43- + H2O ⇌ HPO42- + OH-及其氘代反应的热力学平衡商。使用改进的 Pitzer 模型计算标准态酸离解常数,并拟合为 25 至 300°C 范围内 25 MPa 至 psat 的温度和溶剂摩尔体积的函数。氘同位素对化学平衡常数 ΔpK3a,m = pK3a,D,m - pK3a,H,m 的影响被发现从 25°C 时的 1.045 ± 0.046 减小到 250°C 时的 0.898 ± 0.073。这种行为与一种模型一致,即在低温下,零点能效应占主导地位,随着温度向 D2O 的临界点升高,长程溶剂极化变得越来越重要。这是在 50°C 以上的轻水中首次报道的该反应的实验离解常数,在任何温度下均为重水中的首次报道。

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