American Journal of Analytical Chemistry

Volume 5, Issue 1 (January 2014)

ISSN Print: 2156-8251   ISSN Online: 2156-8278

Google-based Impact Factor: 1.71  Citations  h5-index & Ranking

Determination of Critical Micel Concentration of PEG-10 Tallow Propane Amine: Effects of Salt and pH

HTML  Download Download as PDF (Size: 689KB)  PP. 22-27  
DOI: 10.4236/ajac.2014.51004    5,513 Downloads   9,071 Views  Citations
Author(s)

ABSTRACT


Most applications of surfactants depend on formation and characteristics of micelle. In this study we measured critical micelle concentration (CMC) of cationic surfactant N, N’, N’-polyethylene (10)-N tallow-1, 3-di amine propane (PEG-10 tallow) in aqua solution by using electrical conductivity and surface tension methods. The CMC value of PEG-10 tallow with two different methods was found very close to 1.40 × 10?3 M with electrical conductivity, and 1.41 × 10?3 M with surface tension. It also investigated the effect of inorganic salt (NaCl) and pH on micellization of cationic surfactant PEG-10 tallow. With increasing addition of NaCl, formation of micelle structure resulted in a higher CMC. However, at low salt concentrations smaller CMC value was observed comparing the critical micelle concentration of individual PEG-10 tallow. When it comes to the effect of changing pH in CMC of the PEG-10 tallow , it was clearly found that micelle formation or CMC of surfactant was independent on alkaline pH (between 6 and 10), but it was dependent on acidic pH (below 5).


Share and Cite:

N. Ataci and A. Sarac, "Determination of Critical Micel Concentration of PEG-10 Tallow Propane Amine: Effects of Salt and pH," American Journal of Analytical Chemistry, Vol. 5 No. 1, 2014, pp. 22-27. doi: 10.4236/ajac.2014.51004.

Cited by

[1] Experimental Study of the Influence of Inorganic Salts on Foam Stability
Langmuir, 2022
[2] Oxidation of iminodiethanol by Ce (IV) in microheterogeneous system: a comprehensive kinetic analysis
Journal of Dispersion Science and Technology, 2022
[3] Supported palladium nanoclusters: morphological modification towards enhancement of catalytic performance using surfactant-assisted metal deposition
2020
[4] Effect of micelles on hydrolysis of di-2, 3-dichloroaniline phosphate
2020
[5] Temperature dependent micellar behaviour of sodium cholate and sodium deoxycholate in the presence of ceftriaxone sodium: A physicochemical study
2020
[6] Volumetric and Compressibility Studies of Ionic Surfactants in Aqueous Solutions of Tetraalkylammonium Cation-Based Ionic Liquids
2020
[7] Novel amphiphilic chitosan micelles as carriers for hydrophobic anticancer drugs
2020
[8] Effect of additives on the aggregation phenomena of amphiphilic drug and hydrotrope mixtures
2019
[9] KATEDRA TECHNOLOGII OCZYSZCZANIA WODY I ?CIEKóWWYDZIA? IN?YNIERII ?RODOWISKAPOLITECHNIKA WROC?AWSKA
Thesis, 2019
[10] Ion-Adduct with Hydrophobic Scaffold: Synthesis, Characterization and Solution Behaviour
2019
[11] A robust method for critical micelle concentration determination using coumarin-6 as a fluorescent probe
2019
[12] Aggregation enhanced excimer emission (AEEE) of benzo [ghi] perylene and coronene: multimode probes for facile monitoring and direct visualization of micelle …
Analyst, 2018
[13] Pengaruh Variasi Konsentrasi Benzalkonium Chloride, pH Benzalkonium Chloride, dan Laju Foam Generator
2018
[14] Micellar and antimicrobial activities of ionic surfactants in aqueous solutions of synthesized tetraalkylammonium based ionic liquids
Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2017
[15] The use of micellar-enhanced ultrafiltration (MEUF) for fluoride removal from aqueous solutions
Separation and Purification Technology, 2017
[16] STUDIES ON THE BEHA SURFACTANT IN ABSENCE MONOVALENT SALTS IN MET SOLVENT MEDIA
2017
[17] Improvement in Admicellar Polymerization of Polypyrrole on Cotton Fabric Using Precationization to Achieve High Electrical Conductivity
Advances in Polymer Technology, 2015
[18] THE REMOVAL OF LINEAR ALKYL BENZENE SULPHONIC ACID (LABSA) FROM AQUEOUS SOLUTION ON BOTTOM ASH OBTAINED FROM COMBUSTION …
2015
[19] THE REMOVAL OF LINEAR ALKYL BENZENE SULPHONIC ACID (LABSA) FROM AQUEOUS SOLUTION ON BOTTOM ASH OBTAINED FROM COMBUSTION OF LOWER RANK LIGNITE COAL AS ADSORBENT
Proceedings of the 14th International Conference on Environmental Science and Technology, 2015
[20] The Removal of Linear Alkyl Benzene Sulphonic Acid Labsa From Aqueous Solution on Bottom Ash Obtained from Combustion of Lower Rank Lignite Coal As …
Proceedings of the 14th …, 2015
[21] THE REMOVAL OF LINEAR ALKYL BENZENE SULPHONIC ACID (LABSA) FROM AQUEOUS SOLUTION ON BOTTOM ASH OBTAINED FROM COMBUSTION …

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.