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大气重要电解质溶液的密度和表观摩尔体积。1. 从 0 到 50°C 的溶质 H2SO4、HNO3、HCl、Na2SO4、NaNO3、NaCl、(NH4)2SO4、NH4NO3 和 NH4Cl,包括非常低温和纯液态的外推,以及 25°C 时的 NaHSO4、NaOH 和 NH3。

Densities and apparent molar volumes of atmospherically important electrolyte solutions. 1. The solutes H2SO4, HNO3, HCl, Na2SO4, NaNO3, NaCl, (NH4)2SO4, NH4NO3, and NH4Cl from 0 to 50 °C, including extrapolations to very low temperature and to the pure liquid state, and NaHSO4, NaOH, and NH3 at 25 °C.

机构信息

School of Environmental Sciences, University of East Anglia, Norwich, UK.

出版信息

J Phys Chem A. 2011 Apr 21;115(15):3393-460. doi: 10.1021/jp108992a. Epub 2011 Mar 25.

Abstract

Calculations of the size and density of atmospheric aerosols are complicated by the fact that they can exist at concentrations highly supersaturated with respect to dissolved salts and supercooled with respect to ice. Densities and apparent molar volumes of solutes in aqueous solutions containing the solutes H(2)SO(4), HNO(3), HCl, Na(2)SO(4), NaNO(3), NaCl, (NH(4))(2)SO(4), NH(4)NO(3), and NH(4)Cl have been critically evaluated and represented using fitted equations from 0 to 50 °C or greater and from infinite dilution to concentrations saturated or supersaturated with respect to the dissolved salts. Using extrapolated densities of high-temperature solutions and melts, the relationship between density and concentration is extended to the hypothetical pure liquid solutes. Above a given reference concentration of a few mol kg(-1), it is observed that density increases almost linearly with decreasing temperature, and comparisons with available data below 0 °C suggest that the fitted equations for density can be extrapolated to very low temperatures. As concentration is decreased below the reference concentration, the variation of density with temperature tends to that of water (which decreases as temperature is reduced below 3.98 °C). In this region below the reference concentration, and below 0 °C, densities are calculated using extrapolated apparent molar volumes which are constrained to agree at the reference concentrations with an equation for the directly fitted density. Calculated volume properties agree well with available data at low temperatures, for both concentrated and dilute solutions. Comparisons are made with literature data for temperatures of maximum density. Apparent molar volumes at infinite dilution are consistent, on a single ion basis, to better than ±0.1 cm(3) mol(-1) from 0 to 50 °C. Volume properties of aqueous NaHSO(4), NaOH, and NH(3) have also been evaluated, at 25 °C only. In part 2 of this work (ref 1 ) an ion interaction (Pitzer) model has been used to calculate apparent molar volumes of H(2)SO(4) in 0-3 mol kg(-1) aqueous solutions of the pure acid and to represent directly the effect of the HSO(4)(-) ↔ H(+) + SO(4)(2-) reaction. The results are incorporated into the treatment of aqueous H(2)SO(4) density described here. Densities and apparent molar volumes from -20 to 50 °C, and from 0 to 100 wt % of solute, are tabulated for the electrolytes listed in the title and have also been incorporated into the extended aerosol inorganics model (E-AIM, http://www.aim.env.uea.ac.uk/aim/aim.php) together with densities of the solid salts and hydrates.

摘要

气溶胶的大小和密度的计算很复杂,因为它们可以在溶解盐高度过饱和和冰过冷的情况下存在。在 0 到 50°C 或更高温度以及从无限稀释到溶解盐饱和或过饱和的浓度范围内,对含有溶质 H(2)SO(4)、HNO(3)、HCl、Na(2)SO(4)、NaNO(3)、NaCl、(NH(4))(2)SO(4)、NH(4)NO(3)和 NH(4)Cl 的水溶液中溶质的密度和表观摩尔体积进行了严格评估,并使用拟合方程表示。利用高温溶液和熔体的外推密度,将密度与浓度的关系扩展到假想的纯液体溶质。在给定的参考浓度(几摩尔每千克)以上,观察到密度随温度的降低几乎呈线性增加,并且与低于 0°C 的可用数据的比较表明,密度拟合方程可以外推到非常低的温度。当浓度低于参考浓度时,密度随温度的变化趋势与水的密度变化趋势(当温度低于 3.98°C 时,水的密度降低)相似。在参考浓度以下的这个区域,以及低于 0°C 的区域,使用外推的表观摩尔体积来计算密度,这些体积受限于在参考浓度处与密度拟合方程一致。在低温下,无论是浓溶液还是稀溶液,计算出的体积性质与可用数据吻合良好。还比较了最大密度温度下的文献数据。在 0 到 50°C 的范围内,基于单个离子的基础上,无限稀释的表观摩尔体积的一致性优于 ±0.1 cm(3) mol(-1)。仅在 25°C 下评估了 NaHSO(4)、NaOH 和 NH(3)的水合体积性质。在这项工作的第 2 部分(参考文献 1)中,使用离子相互作用(Pitzer)模型来计算纯酸中 0-3 mol kg(-1) 水溶液中 H(2)SO(4)的表观摩尔体积,并直接表示 HSO(4)(-)↔H(+) + SO(4)(2-)反应的影响。结果已纳入本文中对 H(2)SO(4)密度的处理。列出的电解质在-20 至 50°C 和 0 至 100wt%的溶质温度下的密度和表观摩尔体积均以表格形式列出,并已纳入扩展的气溶胶无机物模型(E-AIM,http://www.aim.env.uea.ac.uk/aim/aim.php),以及固体盐和水合物的密度。

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