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首页> 外文期刊>The Journal of Chemical Thermodynamics >A new tool for an old job: Using fixed cell scanning calorimetry to investigate dilute aqueous solutions
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A new tool for an old job: Using fixed cell scanning calorimetry to investigate dilute aqueous solutions

机译:一项旧工作的新工具:使用固定细胞扫描量热法研究稀水溶液

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The development of fixed twin cell temperature scanning calorimeters has enabled the more efficient determination of heat capacities of dilute aqueous solutions with a precision comparable to that of the Picker flow heat capacity calorimeters developed nearly 40 years ago. Experiments require less than 0.5 cm(3) of solution, and results can be obtained routinely over the temperature range (278 to 395) K at pressures up to a few bars. Multiple scanning of samples by both increasing and decreasing temperature allows assessment of instrument drift, solute stability, and reproducibility of results. Chemical calibration is essential to take full advantage of the precision and sensitivity of the calorimeters. The calorimetric output is a direct measure of the difference in heat capacity per unit volume of a solution and of a reference liquid, usually water. Thus, densities of the solution and reference liquid are needed to transform the results into heat capacities per unit mass of solution. Examples of solutes that have been investigated include a variety of inorganic and organic compounds that dissolve to give simple ionic or neutral species, or that produce complexes or species that exist in equilibrium distributions that can change as the temperature is scanned. Appropriate selection of the results from experiments on combinations of solutes allows calculation of standard state (zero concentration) thermodynamic quantities for chemical processes and reactions over the ranges of temperature scanned at the solution compositions investigated. Results for a few specific systems are presented and discussed for some representative classes of solutes that have been investigated in our laboratory since 1998. (c) 2007 Elsevier Ltd. All rights reserved.
机译:固定双室温度扫描量热仪的发展使得可以更精确地测定稀水溶液的热容量,其精度可与近40年前开发的Picker流动热容量量热仪相媲美。实验需要的溶液少于0.5 cm(3),并且可以在高达几巴的压力下,在温度范围(278至395)K上常规获得结果。通过升高和降低温度的方式对样品进行多次扫描,可以评估仪器的漂移,溶质稳定性和结果的再现性。化学校准对于充分利用量热仪的精度和灵敏度至关重要。量热输出是溶液和参考液体(通常是水)每单位体积的热容量差异的直接量度。因此,需要溶液和参考液体的密度以将结果转换成每单位质量溶液的热容量。已研究的溶质示例包括多种无机和有机化合物,它们溶解后可生成简单的离子或中性物质,或生成络合物或物种,它们的平衡分布会随温度的变化而变化。从溶质组合的实验中适当选择结果,可以计算在所研究的溶液组成范围内扫描的温度范围内化学过程和反应的标准状态(零浓度)热力学量。介绍和讨论了一些特定系统的结果,讨论了自1998年以来在我们实验室中研究过的某些代表性溶质。(c)2007 Elsevier Ltd.保留所有权利。

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