1966Transactions of the Faraday SocietyRequires access

Thermodynamic properties of urea-hydrocarbon adducts. Part 2.—Heat capacities of adducts of n-pentadecane and 2-methyl-pentadecane from 12 to 300°K

R. C. Pemberton, N. G. Parsonage

Open publisher page 23 citations

Abstract

The heat capacities of the adducts of urea with n-pentadecane and 2-methyl-pentadecane have been measured from 12 to 300°K. The n-pentadecane adduct showed a region of anomalously high heat absorption at 158.4°K; the adduct of the branched-chain paraffin, on the other hand, had no significant thermal anomaly. The entropies of both adducts at 298.15°K have been calculated. A comparison is made of the entropies of adduction of n-C15H32, n-C10H22, n-C12H26 and n-C16H34 as calculated from the heat capacity data with the corresponding values obtained from equilibrium constant measurements by Redlich. The discrepancies between the two sets of values are within the limits of error set by the equilibrium constant data for the decane compound, but for the other substances the values from the heat capacity data are up to 22 % smaller in magnitude.

About this research paper

What this paper is about

The heat capacities of the adducts of urea with n-pentadecane and 2-methyl-pentadecane have been measured from 12 to 300°K. The n-pentadecane adduct showed a region of anomalously high heat absorption at 158.4°K; the adduct of the branched-chain paraffin, on the other hand, had no significant thermal anomaly. The entropies of both adducts at 298.15°K have been calculated. A comparison is made of the entropies of adduction of n-C15H32, n-C10H22, n-C12H26 and n-C16H34 as calculated from the heat capacity data with the corresponding values obtained from equilibrium constant measurements by Redlich. The discrepancies between the two sets of values are within the limits of error set by the equilibrium constant data for the decane compound, but for the other substances the values from the heat capacity data are up to 22 % smaller in magnitude.

Why it matters

OpenAlex reports 23 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The heat capacities of the adducts of urea with n-pentadecane and 2-methyl-pentadecane have been measured from 12 to 300°K. The n-pentadecane adduct showed a region of anomalously high heat absorption at 158.4°K; the adduct of the branched-chain paraffin, on the other hand, had no significant thermal anomaly. The entropies of both adducts at 298.15°K have been calculated. A comparison is made of the entropies of adduction of n-C15H32, n-C10H22, n-C12H26 and n-C16H34 as calculated from the heat capacity data with the corresponding values obtained from equilibrium constant measurements by Redlich. The discrepancies between the two sets of values are within the limits of error set by the equilibrium constant data for the decane compound, but for the other substances the values from the heat capacity data are up to 22 % smaller in magnitude.

Key concepts: Pentadecane, Chemistry, Adduct, Heat capacity, Hydrocarbon, Thermodynamics, Enthalpy, Urea

Related papers

Back to paper searchBrowse research topicsOriginal source
Thermodynamic properties of urea-hydrocarbon adducts. Part 2.—Heat capacities of adducts of n-pentadecane and 2-methyl-pentadecane from 12 to 300°K — Research Paper | ScholarLens