ESR Spectrometer as a Possible Tool for Rapid Analysis of Cane Sugar Purity

  • Received Date: June 24, 2007
  • Published Date: November 30, 2007
  • A method for quantitative/qualitative determination of cane sugar purity by ESR is devised. Refined sugar, plantation white sugar, soft brown sugar and raw sugar are used as samples in this work. The sucrose radical is produced by pulverization of sugar and it increases as the particle size decreases. Based on pulverization-induced sucrose radical, ESR study demonstrates the effects of sugar purity on characteristic of ESR spectrum. The relationship between the sucrose contents and peak area under the ESR spectrum is manifested. It is found that the peak area or sucrose radical concentration increases linearly with the increase of sucrose content. Using the linear
    regression method, the sucrose amount can be revealed. This approach is a promising fast and accurate method for sugar purity analysis.
  • Article Text

  • [1] Worsfold P, Townshend A and Poole C 1995 Encycopedia ofAnalytical Science (London: Academic)
    [2] Pennington N L and Baker C W 1990 Sugar: A User's Guide toSucrose (New York: VNR)
    [3] Chen C P and Chou C C 1993 Sugar Handbook: A Manual for CaneSugar Manufacturers and Their Chemists (New York: Wiley)
    [4] Honig P 1963 Principle of Sugar Technology (Amsterdam:Elsevier)
    [5] Thamaphat K, Limsuwan P and Meejoo S 2006 Proceeding of theKMITL International Conference on Science and Applied Science(Thailand, 8--10 March 2007) p 124
    [6] Thamaphat K, Limsuwan P and Meejoo S 2006 Proceeding of theKMITL International Conference on Science and Applied Science p 125
    [7] Horwitz W 2000 Official Methods of Analysis of AOACInternational (Gaithersburg: AOAC International)
    [8] Fattibene P, Duckworth T L and Desrosiers M F 1996 Appl.Radiat. Isotopes 1375-1379 47
    [9] Costa D Z M, Pontuschka W M and Campos L L 2005 Appl. Radiat.Isotopes 331-336 62
    [10] Yordanov N D, Gancheva V and Georgieva E 2002 Radiat. Phys.Chem. 269-276 65
    [11] Nakagawa K and Sato Y 2004 Spectrochim. Acta A: Mol. Biomol.Spectrosc. 1315-1318 60
    [12] D'errico F, Fattibene P, Onori S and Pantaloni M 1996 Appl.Radiat. Isotopes 1335-1339 47
    [13] Gutierrez A and Azorin J 1993 Nucl. Sci. J. 137 30
    [14] Vanhaelewyn J, Sadlo J, Callens F, Mondelaers W, De Frenne D andMatthys P 2000 Appl. Radiat. Isotopes 1221-1227 52
  • Related Articles

    [1]Abbagari Souleymanou, Victor K. Kuetche, Thomas B. Bouetou, Timoleon C. Kofane. Scattering Behavior of Waveguide Channels of a New Coupled Integrable Dispersionless System [J]. Chin. Phys. Lett., 2011, 28(12): 120501. doi: 10.1088/0256-307X/28/12/120501
    [2]XIA Li-Li. Poisson Theory and Inverse Problem in a Controllable Mechanical System [J]. Chin. Phys. Lett., 2011, 28(12): 120202. doi: 10.1088/0256-307X/28/12/120202
    [3]Souleymanou Abbagari, Bouetou Bouetou Thomas, Kuetche Kamgang Victor, Mouna Ferdinand, Timoleon Crepin Kofane. Prolongation Structure Analysis of a Coupled Dispersionless System [J]. Chin. Phys. Lett., 2011, 28(2): 020204. doi: 10.1088/0256-307X/28/2/020204
    [4]YANG Fan, ZHU Ke-Qin. Can We Obtain a Fractional Lorenz System from a Physical Problem? [J]. Chin. Phys. Lett., 2010, 27(12): 124701. doi: 10.1088/0256-307X/27/12/124701
    [5]ZHANG Gang, ZHANG Wei, LIU Zeng-Rong. Synchronization of Coupled Nonidentical Dynamical Systems [J]. Chin. Phys. Lett., 2010, 27(3): 030504. doi: 10.1088/0256-307X/27/3/030504
    [6]Kuetche Kamgang Victor, Gambo Betchewe, Bouetou Bouetou Thomas, Timoleon Crepin Kofane. Miscellaneous Rotating Solitary Waves to a Coupled Dispersionless System [J]. Chin. Phys. Lett., 2009, 26(9): 090505. doi: 10.1088/0256-307X/26/9/090505
    [7]Gambo Betchewe, Kuetche Kamgang Victor, Bouetou Bouetou Thomas, Timoleon Crepin Kofane. Dynamical System Approach to a Coupled Dispersionless System: Localized and Periodic Traveling Waves [J]. Chin. Phys. Lett., 2009, 26(6): 060503. doi: 10.1088/0256-307X/26/6/060503
    [8]LI Jing, CHEN Zhi-De. Squeezing Effect of a Nanomechanical Resonator Coupled to a Two-Level System: an Equilibrium Approach [J]. Chin. Phys. Lett., 2009, 26(3): 038501. doi: 10.1088/0256-307X/26/3/038501
    [9]SUN Hui-Ying, HUANG Xiao-Li, YI Xue Xi. Dynamical Evolution and Entanglement in a Nonlinear Interacting System [J]. Chin. Phys. Lett., 2009, 26(2): 020305. doi: 10.1088/0256-307X/26/2/020305
    [10]HUANG Ling. Rational Solutions in a Coupled Burgers System [J]. Chin. Phys. Lett., 2006, 23(1): 4-6.

Catalog

    Article views (1) PDF downloads (1817) Cited by()

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return