Home Molecular, Surface, Thermodynamic Properties and Biodegradability of Nonionic Surfactants Based on Castor Oil
Article
Licensed
Unlicensed Requires Authentication

Molecular, Surface, Thermodynamic Properties and Biodegradability of Nonionic Surfactants Based on Castor Oil

  • E. A. M. Gad , E. M. S. Azzam , I. Aiad and W. I. M. El-azab
Published/Copyright: April 2, 2013
Become an author with De Gruyter Brill

Abstract

A series of nonionic surfactants containing different chains of polyethylene oxide monomethyl ether [–O(CH2CH2O)xCH3, x = 7, 12, 16, 44 and 112] based on castor oil were synthesized. Their structures were confirmed using FTIR, 1H-NMR and 13C-NMR spectra. Structural effects of the synthesized surfactants on surface tension (γ), critical micelle concentration (cmc) and hydrophile lipophile balance (HLB) were investigated. The effect of structural features on their surface behavior is analyzed through changes in surface properties, including effectiveness (πcmc) and efficiency (PC20) of adsorption, the surface excess concentration (Γmax) and the area per surfactant molecule at the air/water interface at surface saturation (Amin). Thermodynamic properties, adsorption and micellezation of the prepared surfactant in addition to their biodegradability were investigated.

Kurzfassung

Eine Reihe auf Castoröl basierender nichtionischer Tenside wurde synthetisiert, die verschiedene Ketten aus Polyethylenoxidmonomethylether [–O(CH2CH2O)xCH3, x = 7, 12, 16, 44 and 112] enthalten. Ihr Aufbau wurde durch FTIR-, 1H-NMR- und 13C-NMR-Spektren bestätigt. Die konstruktiven Einflüsse der synthetisierten Tenside auf die Oberflächenspannung (γ), kritische Mizellbildungskonzentration (cmc) und Hydrophil-Lipophil-Balance (HLB) wurden untersucht. Der Einfluss der konstruktiven Eigenschaften auf das Oberflächenverhalten ist durch die Änderungen der Oberflächeneigenschaften analysiert, einschließlich Effektivität (πcmc) und Adsorptionswirkung (PC20), Oberflächenüberschusskonzentration (Γmax) und Fläche pro Tensidmolekül an der Luft-/Wasser-Grenzfläche bei Oberflächensättigung (Amin). Die thermodynamischen Eigenschaften, Adsorption und Mizellierung der dargestellten Tenside sowie deren biologische Abbaubarkeit wurden untersucht.


Elshafie A. M. Gad, Applied Surfactants Lab., Egyptian Petroleum Research Institute, Nasr City 11727, Cairo, Egypt, E-Mail:

Elshafie A. M. Gad, Ph.D., Prof. Dr. of Petroleum & Petrochemicals. Petrochemicals Dept. Applied surface active agent lab., Egyptian Petroleum Research Institute. Fields of interests are Surfactances & Computational Chemistry.

Eid Mahmoud Sayed Azzam, Ph.D., Prof. Dr. of Surfactants. Petrochemicals Dept. Applied surface active agent lab., Egyptian Petroleum Research Institute. Fields of interests are Surfactances & Nanoparticles.

I. Aiad, Ph.D., Prof. Dr. of Surfactants. Petrochemicals Dept. Applied surface active agent lab., Egyptian Petroleum Research Institute. Fields of Surfactances & Admixtures for cements.

W. I. M. El-Azab, M.Sc. Researcher in Analytical & Evaluation Dept. of the Egyptian Petroleum Research Institute. Fields of interests are Surfactances & Analytical Techniques.


References

1. U.S. Pat. 2,542,550 (Feb. 20, 1951).Search in Google Scholar

2. Fr. Pat. 1,554,539 (Jan. 17, 1969).10.1016/0001-6160(69)90035-2Search in Google Scholar

3.Muller, K.: Tenside3 (2) (1966) 37.10.1515/tsd-1966-030201Search in Google Scholar

4. U.S. Pat. 3,661,782 (May 9, 1972).10.1136/bmj.3.5830.782Search in Google Scholar

5. U.S. Pat. 3,475,898 (Nov. 4, 1969).10.1136/bmj.3.5668.475-aSearch in Google Scholar

6. U.S. Pat. 2,542,550 (Feb. 20, 1951).Search in Google Scholar

7.Kropp, P. J., Daus, K. A., Tubergen, M. W., Kepler, K. D., Wilson, V. P., Craig, S. L., Baillargeon, M. M. and Breton, G. W.: Surface–Mediated Reactions. 3. Hydrohalogenation of Alkenes. J. Am. Chem. Soc. Vol.115 (1993) pp. 30713079.10.1021/ja00061a005Search in Google Scholar

8.Kropp, P. J., Kimberlee, A. D., Scott, D. C., Mark, W. T., Keith, D. K., Stephen, L. C. and VincentP.W.: Surface-Mediated Reactions. 1. Hydrohalogenation of Alkenes and Alkynes. J. Am. Chem. Soc. Vol.112 (1990) pp. 74337434.10.1021/ja00176a075Search in Google Scholar

9.Chandran, K., NithyaR., Sankaran, K., Gopalan, A. and Ganesan, V.: Synthesis and characterization of sodium alkoxides. Bull. Matter. Sci. Vol. 29 (2) (2006) pp. 173179.Search in Google Scholar

10. ASTM D1331-89: Standard Test Method for Surface and Interfacial Tension of Solutions of Surface Active Agents (2001).Search in Google Scholar

11. Standard Methods for the Examination of Water and Wastewater, method 5210). 20th Ed, American Public Health Association (1999).Search in Google Scholar

12.Huh, C. and Mason, S. G.: A rigorous theory of ring tensiometry. Colloid & Polymer Sci.253 (1975) pp. 566580.Search in Google Scholar

13.Rosen, M. J.: Surfactants and Interfacial Phenomena, 3nd Ed., Wiley, New York (2004).10.1002/0471670561Search in Google Scholar

14.Zhigang, Xu, Pengfei,Li, Weihong,Qiao, Zongshi,Li and Lubo,Cheng: Effect of aromatic ring in the alkyl chain on surface properties of arylalkyl surfactant solutions. J. of Surf. Det. Vol. 9 QTR. 3 (2006) pp. 245248.10.1007/s11743-006-5004-1Search in Google Scholar

15.Karakashev, S. I., Nguyen, A. V. and Miller, J. D.: Equilibrium adsorption of surfactants at the gas-liquid interface. Advances of Polymer Science Vol. 218 (1) (2008) pp. 2555.Search in Google Scholar

16.Karakashev, S. I. and Manev, E. D.: Effect of interactions between the adsorbed species on the properties of single and mixed surfactant monolayers at Air/Water interface. J. of Colloid & Interface Sci. Vol. 248 (2002) p. 477486.Search in Google Scholar

17.Matsuoka, K. and Moroi, Y.: Micellization of Fluorinated Amphiphiles): Curr. Opin. Colloids Interface Sci.8 (2003) 227.10.1016/S1359-0294(03)00056-6Search in Google Scholar

18.Zhao, G. X. and Zhu, B. Y.: Principles of Surface Action, China Light Industry Press, Beijing, (2003) p. 54.Search in Google Scholar

19.Lu, J. R., Lee, E. M., Thomas, R. K., Penfold, J. and Flitsch, S. L.: Direct Determination by Neutron Reflection of the Structure of Triethylene Oxide Monododecyl Ether Layers at the Air/Water Interface. Langmuir9 (1993) 1352.Search in Google Scholar

20.Marcomini, A., Pojana, G., Carrer, C., Cavalli, L., Cassani, G. and Lazzarinm, M.: Aerobic biodegradation of monobranched aliphatic alcohol polyethoxylates. Environ. Toxicol. Chem.19 (2000) pp. 555560.Search in Google Scholar

Received: 2008-12-08
Revised: 2009-05-12
Published Online: 2013-04-02
Published in Print: 2009-09-01

© 2009, Carl Hanser Publisher, Munich

Downloaded on 9.10.2025 from https://www.degruyterbrill.com/document/doi/10.3139/113.110031/html
Scroll to top button