Page 26 - 81Sulfonation-Sulfation Processing Technology for Anionic Surfactant Manufacture_opt
P. 26

Sulfonation/Sulfation Processing Technology for Anionic Surfactant Manufacture   293

                   presence of mono-, di- and triglycerides. Ing. Investig., Vol. 57, No. 1, pp.58-62, ISSN
                   0120-5609
            Reid, R. C., Prausnitz,J. M., & Poling,B. E. (1987). The properties of gases and liquids (4th ed.)
                   McGraw-Hill Book Company. ISBN 0-07-051799-1, NY, USA
            Resnik, G. O., Vishwanath, P., Pynn, M. A., Sitnik, J. M., Todd, J. J., Wu, J., . . . Jarrell, K. A.
                   (2010). Use of sustainable chemistry to produce an acyl amino acid surfactant. Appl.
                   Microbiol. Biot., Vol.85, No. 5, pp.1387-1397, ISSN 0175-7598
            Riazi, M. R., &  Faghri, A. (1986). Effect  of  the interfacial drag  on gas  absorption with
                   chemical reaction in a vertical tube. AIChE J., Vol.32, No. 4, pp.696-699, ISSN 0001-
                   1541
            Roberts, D. W. (1998). Sulfonation technology for anionic surfactant manufacture. Org. Proc.
                   Res. Dev., Vol. 2, No.3, pp. 194–202, ISSN 1520-586X
            Roberts, D. W.  (2001). Manufacture of anionic  surfactants. Oleochemical  Manufacture  and
                   Applications. In: Gustone F.  D., &  R.  J. Hamilton  (Eds.), pp. 55-73,  Sheffield
                   Academic Press, ISBN 9780849397851, UK
            Roberts, D. W. (2003). Optimization of  linear alkyl benzene sulfonation process  for
                   surfactant manufacture. Org. Process Res. Dev., Vol.7, No. 2, pp.172-184, ISSN 1520-
                   586X
            Roberts, D. W. (2007). The origin of colour  formation in methyl ester sulfonation.
                   Communication  Journal Com. Esp. Det., Vol.37, pp.153-159, ISSN 0017-3495
            Roberts, D. W., Giusti, L., &  Forcella, A. (2008). Chemistry  of methyl ester sulfonates.
                   INFORM, Vol.19, No. Suppl. 5, pp.2-9, ISSN 0897-8026
            Roberts, D. W., & Garrett, P. R. (2000). Ester sulphonates derived from non-methyl esters. In:
                   Proceedings  of  the  1999 PORIM  International  Palm  Oil  Congress, "Emerging
                   Technologies and Opportunities in the Next Millenium", pp. 209-215, ISBN 978-967-961-
                   075-8, Kuala Lumpur, Malaysia, 1999
            Rosen, M. R. (2005). Delivery System  Handbook  for  Personal  Care  and Cosmetic  Products:
                   Technology,  Applications,  and Formulations. William  Andrew Publishing, ISBN: 0-
                   8155-1504-9, Norwich, N.Y., USA
            Satsuki, T.  (1998). Methyl ester sulfonates, new products  and  applications  in surfactant
                   technology.  In: Annual  surfactants  review, Karsa D. R.  (Ed.),  pp. 123-155, Sheffield
                   Academic Press, ISBN 978-084-939-738-7, UK
            Schambil, F., &  Schwuger, M. J. (1990). Physico-chemical properties  of alpha-sulpho  fatty
                   acid methyl esters and alpha-sulpho fatty acid di salts. Tenside Surfact. Det., Vol.37,
                   No. 6, pp.380-385, ISSN 0932-3414
            Stein,W., & Baumann, H. (1975). a–sulfonated fatty acids and esters: manufacturing process,
                   properties, and applications. JAOCS, Vol.52, No. 9, pp.323-329, ISSN 1558-9331
            Talens, F. I., &  Gutiérrez, J. M. (1995). Estimation of the viscosity  and  density  of lauryl
                   alcohol/laurylsulphuric  acid  mixtures  as  a function of  the temperature and
                   laurylsulphuric and molar fraction. Chem. Eng. Res. Des., Vol.73A, pp.206-207, ISSN
                   0263-8762
            Talens, F. I. (1999). The modelling  of falling  film  chemical  reactor.  Chem. Eng. Sci., Vol.54,
                   No. 12, pp.1871-1881, ISSN 0009-2509
            Talens, F. I. (2000). The effect  of supercritical gas  velocity  on wavy  films  and  its  use in
                   enhancing  the performance of falling  film  reactors.  Chem. Eng. Technol., Vol.23,
                   No.7, pp.629-632, ISSN 0930-7516







             www.intechopen.com
   21   22   23   24   25   26   27   28