Javascript must be enabled to continue!
The Electrolytic Dissociation of 1,4-Cyclohexanedicarboxylic Acid
View through CrossRef
Cyclohexanedicarboxylic acids are widely used as the members of the positive resist radiation-sensitive composition, the coating resinous compositions, for production the high-solid polyurethane coatings for such demanding markets as automotive, transportation, maintenance, and aerospace. In this communication the regularities of electrolytic dissociation of trans-1,4-cyclohexanedicarboxylic acid are studied by the suggested by authors original method for calculation the parameters of dissociation of weak multibasic organic acids with the “overlapping” equilibria effect.
For weak dibasic organic acids the law of dilution for both dissociation steps may be expressed as follows:
where K1 and K2 are the thermodynamic dissociation constants of first and second steps, α1 and α2 are the usual degrees of dissociation of these steps, α′
2 is the “partial” degree of dissociation of second step, c is the total (analytical) concentration of acid, F1 and F2are the quotients of the activity coefficients for the corresponding steps:
The values of the activity coefficients were approximated by the Debye-Huckel equation:
where ai is the cation-anion distance of closest approach, A and B are constants depending on the properties of water at given temperature, ziis the charge of ion. Ionic strength .
According to equations [1] and [2] the degrees of dissociation α1, α2 and α′
2can be evaluated successively by iterative solution of following two quadratic equations:
The equilibrium concentrations of the dissociation products: hydrogen ions, mono- and dianions and undissociated acid molecules can be calculated with the aid of the following equations:
The dissociation constants of trans-1,4-cyclohexanedicarboxylic acid have the following values: K1=6.607×10ˉ5; K2=3.802×10ˉ6.
In Tables I the values of α1, α2, α′
2and pH for the dilute solutions of acid are presented.
Table I. The values of the dissociation parameters
of trans-1,4-cyclohexanedicarboxylic acid
at 16ºC
Concentration, M
α1
α2
α′
2
pH
0.00010.00020.00040.00060.00080.0010.0020.0040.0060.0080.01
0.55070.43650.33580.28490.25250.22950.16910.12330.10210.089260.08035
0.034720.018260.0094730.006427
0.004875
0.003932
0.0020140.0010300.0006954
0.0005267
0.0004246
0.063050.041830.028210.022560.019310.017130.011910.008354
0.006811
0.005901
0.005284
4.2364.0463.8663.7643.6933.6393.4743.3143.2213.1563.106
We suggest also the simple empirical equations for fast approximate calculation of the dissociation parameters of trans-1,4-cyclohexanedicarboxylic acid:
The Electrochemical Society
Title: The Electrolytic Dissociation of 1,4-Cyclohexanedicarboxylic Acid
Description:
Cyclohexanedicarboxylic acids are widely used as the members of the positive resist radiation-sensitive composition, the coating resinous compositions, for production the high-solid polyurethane coatings for such demanding markets as automotive, transportation, maintenance, and aerospace.
In this communication the regularities of electrolytic dissociation of trans-1,4-cyclohexanedicarboxylic acid are studied by the suggested by authors original method for calculation the parameters of dissociation of weak multibasic organic acids with the “overlapping” equilibria effect.
For weak dibasic organic acids the law of dilution for both dissociation steps may be expressed as follows:
where K1 and K2 are the thermodynamic dissociation constants of first and second steps, α1 and α2 are the usual degrees of dissociation of these steps, α′
2 is the “partial” degree of dissociation of second step, c is the total (analytical) concentration of acid, F1 and F2are the quotients of the activity coefficients for the corresponding steps:
The values of the activity coefficients were approximated by the Debye-Huckel equation:
where ai is the cation-anion distance of closest approach, A and B are constants depending on the properties of water at given temperature, ziis the charge of ion.
Ionic strength .
According to equations [1] and [2] the degrees of dissociation α1, α2 and α′
2can be evaluated successively by iterative solution of following two quadratic equations:
The equilibrium concentrations of the dissociation products: hydrogen ions, mono- and dianions and undissociated acid molecules can be calculated with the aid of the following equations:
The dissociation constants of trans-1,4-cyclohexanedicarboxylic acid have the following values: K1=6.
607×10ˉ5; K2=3.
802×10ˉ6.
In Tables I the values of α1, α2, α′
2and pH for the dilute solutions of acid are presented.
Table I.
The values of the dissociation parameters
of trans-1,4-cyclohexanedicarboxylic acid
at 16ºC
Concentration, M
α1
α2
α′
2
pH
0.
00010.
00020.
00040.
00060.
00080.
0010.
0020.
0040.
0060.
0080.
01
0.
55070.
43650.
33580.
28490.
25250.
22950.
16910.
12330.
10210.
089260.
08035
0.
034720.
018260.
0094730.
006427
0.
004875
0.
003932
0.
0020140.
0010300.
0006954
0.
0005267
0.
0004246
0.
063050.
041830.
028210.
022560.
019310.
017130.
011910.
008354
0.
006811
0.
005901
0.
005284
4.
2364.
0463.
8663.
7643.
6933.
6393.
4743.
3143.
2213.
1563.
106
We suggest also the simple empirical equations for fast approximate calculation of the dissociation parameters of trans-1,4-cyclohexanedicarboxylic acid:.
Related Results
Methods to Induce Dissociation and Their Effects on Intrusions and Memory: A Randomized Controlled Trauma-Film Study
Methods to Induce Dissociation and Their Effects on Intrusions and Memory: A Randomized Controlled Trauma-Film Study
Background: Peritraumatic dissociation is thought to contribute to posttraumatic symptoms like intrusions and memory disturbances. However, trauma-analogue studies that examined ef...
British Food Journal Volume 46 Issue 11 1944
British Food Journal Volume 46 Issue 11 1944
1. From the information given to the Committee by members of the trade the following conclusions were drawn : (i) Four main types of product are sold under a name commonly includin...
Experimental Induction of Peritraumatic Dissociation: The Role of Negative Affect and Pain and Their Psychophysiological and Neural Correlates
Experimental Induction of Peritraumatic Dissociation: The Role of Negative Affect and Pain and Their Psychophysiological and Neural Correlates
While research has elucidated processes underlying dissociative symptoms in patients with posttraumatic stress disorder, little is known about the circumstances under which trauma-...
THE BIOLOGICAL SIGNIFICANCE OF CHEMICAL DIFFERENCES IN BILE SALTS
THE BIOLOGICAL SIGNIFICANCE OF CHEMICAL DIFFERENCES IN BILE SALTS
Summary1. The chemical nature of the bile salts is a character that must be under the control of several genes and is also affected by intestinal micro‐organisms and perhaps again ...
Dissociation - a preliminary contextual model
Dissociation - a preliminary contextual model
<p><strong>Background.</strong> The Diagnostic and Statistical Manual of Mental Disorders (DSM) system has certain limitations when applied to two South African e...
Acid Fracturing Technique for Carbonate Reservoirs Using Nitric Acid Powder
Acid Fracturing Technique for Carbonate Reservoirs Using Nitric Acid Powder
Abstract
The length of the etched fracture is rather limited utilizing traditional acid fracturing techniques, especially in a high-temperature carbonate reservoi...
Recent Advances in Foamed Acid Fracturing
Recent Advances in Foamed Acid Fracturing
Abstract
Foamed acid fracturing is gaining importance in maximizing flowback recovery and is particularly applicable when reservoir energy is not sufficient to effec...
New Experimental Equipment for Hydrate Dissociation Studies
New Experimental Equipment for Hydrate Dissociation Studies
Abstract
A new experimental set up dedicated to the hydrate dissociation studies is presented. In this new equipment, hydrate dissociation can be achieved by depr...

