FWHM Dimentional Analysis from Scattered Light Intensity Profile for Dry Rubber Content Determination in Natural Rubber
DOI:
https://doi.org/10.21771/jrtppi.2018.v9.no1.p9-14Keywords:
natural latex, light scattering, dry rubber content, full width at half maximumAbstract
Dry Rubber Content (DRC) describes a rubber particle percentage in natural rubber latex. In this paper, the relation between forward light scattering profiles of natural latex and rubber contents is reported for dry rubber content latex. The profile, characterized by Full Width at Half Maximum (FWHM), is increasing linearly with respect to rubber content. The measurement was performed immediately after latex being tapped with necessary addition of acetic acid. This addition was meant to prevent latex coagulation. There is a high linear correlation between DRC and FWHM of both domain: one and two dimension. This is indicated by correlation factor which are higher than 0.9 for both of domains and sufficient in DRC determination.References
Aiyarak, P., & Sunheem, P. (2015). Design and implementation of microwave attenuation measurements to estimate the dry rubber content of natural rubber latex, 37(6), 713–718.
Berthelot, K., Lecomte, S., Estevez, Y., & Peruch, F. (2014). Hevea brasiliensis REF (Hev b 1) and SRPP (Hev b 3): An overview on rubber particle proteins. Biochimie, 106, 1–9. https://doi.org/10.1016/j.biochi.2014.07.002
Fizik, J., Sains, F., Pengajian, D., & Sekitar, A. (1982). Determination of Dry Rubber Content of Hevea Latex by Microwave Technique KAIDA BIN KHALID. Pertanika, 5(2), 192–195.
George, N. A., Peethan, A., & Vijayan, M. (2013). A simple optical sensor for the measurement of dry rubber content in natural rubber latex. Nondestructive Testing and Evaluation. Taylor & Francis. https://doi.org/10.1080/10589759.2013.785545
Ho, C. C. (2014). The Production of Natural Rubber from Hevea brasiliensis Latex : Colloidal Properties , Preservation , Purification and Processing. Natural Rubber Materials, 1(7), 73–106. https://doi.org/10.1039/9781849737647
Julrat, S., Chongcheawchamnan, M., Khaorapapong, T., Patarapiboolchai, O., Kririksh, M., & Robertson, I. D. (2012). Single-frequency-based dry rubber content determination technique for in-field measurement application. IEEE Sensors Journal, 12(10), 3019–3030. https://doi.org/10.1109/JSEN.2012.2208454
MATLAB. (2017).
Mischenko, M. I. (2004). Scattering, Absorption, and Emission of Light by Small Particles. New York: NASA Goddard Institute for Space Studies.
Moitzi, C., Vavrin, R., Kumar Bhat, S., Stradner, A., & Schurtenberger, P. (2009). A new instrument for time-resolved static and dynamic light-scattering experiments in turbid media. Journal of Colloid and Interface Science, 336(2), 565–574. https://doi.org/10.1016/j.jcis.2009.04.043
Persson, P., & Strang, G. (2003). Smoothing by Savitzky-Golay and Legendre Filters. Mathematical Systems Theory in Biology, Communications, Computation, and Finance, 134, 301–315. https://doi.org/10.1007/978-0-387-21696-6_11
Standardization, I. O. for. (2005). ISO 126:2005 Natural rubber latex concentrate -- Determination of dry rubber content.
Sunheem, P., & Aiyarak, P. (2016). A Microwave Transmission Instrument for Rapid Dry Rubber Content Determination in Natural Rubber Latex. Mapan, 31(2), 129–136. https://doi.org/10.1007/s12647-015-0165-x
Tillekeratne, L. M. K., Karunanayake, L., Sarath Kumara, P. H., & Weeraman, S. (1988). A rapid and accurate method for determining the dry rubber content and total solid content of NR latex. Polymer Testing, 8(5), 353–358. https://doi.org/10.1016/0142-9418(88)90052-9
Zhao, Z. M., Jin, X., Zhang, L., & Yu, X. (2010). A Novel Measurement System for Dry Rubber Content in Concentrated natural Latex Based on annular photoelectric sensor. International Journal of Physical Sciences, 5(3). https://doi.org/10.1520/JTE102778
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Copyright (c) 2020 Ikha Rasti Julia Sari, Januar Arif Fatkhurrahman, Farida Crisnaningtyas, Moch. Syarif Romadhon
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