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Determination of Beeswax Hydrocarbons by Gas Chromatography with a Mass Detector (GC -MS ) Technique

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Aichholz R., Lorbeer E. (1996) Use of methoxy-terminated poly (diphenyl 1H,1H,2H,2H- perfluorodecylmethyl) siloxane as stationary-phase for high-temperature capillary gas-chromatography and its application in the analysis of beeswax. Journal of Microcolumn Separation 8(8): 553-559. DOI: 10.1002/(SICI)1520-667X(1996)8:8<553::AID-MCS5>3.0.CO;2-0/pdf Aichholz R., Lorbeer E. (1999) Investigation of combwax of honeybees with high-temperature gas chromatography and high - temperature gas chromatography - chemical ionization mass spectrometry. I - High-temperature gas chromatography. Journal of Chromatography A 855: 601-615. DOI: 10.1016/S0021-9673(99)00725-610.1016/S0021-9673(99)00725-6Search in Google Scholar

Aichholz R., Lorbeer E. (2000) Investigation of combwax of honeybees with high-temperature gas chromatography and high - temperature gas chromatography - chemical ionization mass spectrometry. II - High-temperature gas chromatography - chemical ionization mass spectrometry. Journal of Chromatography A 883: 75-88. DOI: 10.1016/S0021-9673(00)00386-110.1016/S0021-9673(00)00386-1Search in Google Scholar

Bernal J. L., Jimenez J. J., del Nozal M. J., Toribio L., Martin M. T. (2005) Physico-chemical parameters for the characterization of pure beeswax and detection of adulterations. European Journal of Lipid Science and Technology 107(3): 158-166. DOI: 10.1002/ejlt.20040110510.1002/ejlt.200401105Search in Google Scholar

Bogdanov S. (2004) Beeswax: quality issues today. Bee World 85(3): 46-50.10.1080/0005772X.2004.11099623Search in Google Scholar

Curyło J., Ignaszewska T. (1969) Porównanie dwu metod oznaczania węglowodorów w wosku pszczelim. Pszczelnicze Zeszyty Naukowe 13(1-2-3): 137-141.Search in Google Scholar

Curyło J., Zalewski W. (1957a) Charakterystyka krajowego wosku pszczelego z naturalnych nieczerwionych plastrów oraz charakterystyka węglowodorów wydzielonych z niego przy pomocy chromatografii. Pszczelnicze Zeszyty Naukowe 1(3): 105-117.Search in Google Scholar

Curyło J., Zalewski W. (1957b) Ilościowa metoda oznaczania parafiną i cerezyną. Pszczelnicze Zeszyty Naukowe 1(3): 118-128.Search in Google Scholar

DGF-M-V-6 (1957) DGF - Einheitsmethoden - Abteilung M - Wachse. German Standard -Beeswax. 29 pp. Available at: http://www.dgfett.de/methods/inhaltsverzeichnis.pdf Search in Google Scholar

Downing T. D., Kranz Z. H., Lamberton J. A., Murray K. E., Redcliffe A. H. (1961) Studies in waxes. XVIII. Beeswax: A spectroscopic and gas chromatographic examination. Australian Journal of Chemistry 14: 253-263.10.1071/CH9610253Search in Google Scholar

EFSA (2007) Beeswax (E 901) as a glazing agent and as carrier for flavours. The EFSA Journal 615: 1-28.Search in Google Scholar

Fuschs W., de Jong A. (1954) Chromatographische Zerlegung von Bienenwachs. Fette-Seifen-Anstrichmittel 56(4): 218-220.Search in Google Scholar

Giumanini A. G., Verardo G., Strazzolini P., Hepburn H. R. (1995) Rapid detection of high-molecular-mass dienes in beeswax. Journal of Chromatography A 704: 224-227. DOI: 10.1016/0021-9673(95)00145-D 10.1016/0021-9673(95)00145-DSearch in Google Scholar

Jimenez J. J., Bernal J. L., Aumente S., Toribio L., Bernal Jr. J. (2003) Quality assurance of commercial beeswax II.10.1016/S0021-9673(03)00962-2Search in Google Scholar

Gas chromatography - electron impact ionization mass spectrometry of alcohols and acids. Journal of Chromatography A 1007: 101-116. DOI: 10.1016/S0021-9673(03)00962-210.1016/S0021-9673(03)00962-2Search in Google Scholar

Jimenez J. J., Bernal J. L., del Nozal M. J., Martin M. T., Bernal J. (2006) Sample preparation methods for beeswax characterization by gas chromatography with flame ionization. Journal of Chromatography A 1129: 262-272. DOI: 10.1016/j.chroma.2006.06.09810.1016/j.chroma.2006.06.09816854423Search in Google Scholar

Jimenez J. J., Bernal J. L., del Nozal M. J., Martin M. T., Toribio L. (2009) Identification of adulterants added to beeswax: Estimation of detectable minimum percentages. European Journal of Lipid Science and Technology 111: 902-911. DOI: 10.1002/ejlt.20080026310.1002/ejlt.200800263Search in Google Scholar

Jimenez J. J., Bernal J. L., del Nozal M. J., Toribio L., Bernal J. (2007) Detection of beeswax adulterations using concentration guide-values. European Journal of Lipid Science and Technology 109: 682-690. DOI: 10.1002/ ejlt.20060030810.1002/ejlt.200600308Search in Google Scholar

Jimenez J. J., Bernal J. L., Aumente S., del Nozal., Martin M. T., Bernal Jr. J. (2004) Quality assurance of commercial beeswax - Part I. Gas chromatography - electron impact ionization mass spectrometry of hydrocarbons and monoesters. Journal of Chromatography A 1024: 147-154.DOI: 10.1016/j.chroma.2003.10.06310.1016/j.chroma.2003.10.06314753717Search in Google Scholar

Maia M., Nunes F. M. (2013) Authentication of beeswax (Apis mellifera) by high-temperature gas chromatography and chemometric analysis. Food Chemistry 136: 961-968. DOI: 10.1016/j.foodchem.2012.09.003 PN-R-78890 (1996) Wosk Pszczeli. Polski Komitet Normalizacyjny. Wydawnictwo Normalizacyjne “Alfa”. Warszawa Poncini L., Poncini A., Prakash D. (1993) The effects of washing on the fluorescent impurities and chemical properties of Fijian beeswax from Apis mellifera L. Apiacta 2: 42-51.Search in Google Scholar

Serra Bonvehi J. (1988) Estudio de la composición de la cera de abejas (Apis mellifera L.) española. Grasas y Aceites 39 Fasc. 6: 334-342.Search in Google Scholar

Serra Bonvehi J. (1990) Estudio de la adulteracion de la cera de abejas. Grasas y Aceites 41: 69-72.Search in Google Scholar

Serra Bonvehi J., Ornantes Bermejo F. J. (2012) Detection of adulterated commercial Spanish beeswax. Food Chemistry 132: 642-648. DOI: 10.1016/j.foodchem. 2011.10.104 Search in Google Scholar

Serra Bonvehi J., Cañas Lloria S., Gomez Pajuelo (1989) Caracteristicas fisico-quimicas de la cera de abejas producida en Espana. Alimentacion, equipos y tecnologia 5-6: 213-216.Search in Google Scholar

Skowronek W. (1973) Rozwój gruczołów woskowych u różnych ras pszczoły miodnej. Pszczelnicze Zeszyty Naukowe 17: 1-9.Search in Google Scholar

Sprengler G., Wöllner E. (1953) Eine neue Paraffin - Bestimmungsmethode von Wachsen und Wachs - Verschnitten. Fette-Seifen-Anstrichmittel 57(1): 5-8.Search in Google Scholar

Sprengler G., Wöllner E. (1954) Adsorptive Trennung von Wachsen und Wachskomponenten. Fette-Seifen-Anstrichmittel 56(10): 775-784.10.1002/lipi.19540561002Search in Google Scholar

Streibl M., Stransky K., Sorm F. (1966) Über einige neue Kohlenwasserstoffe in Wachs der Honigbiene (Apis mellifera L.). Fette Seifen Anstrichmittel 68: 799-805.Search in Google Scholar

Tulloch A. P. (1973) Factors Affecting Analytical Values of Beeswax and Detection of Adulteration. Journal of the American Oil Chemists’ Society 50: 269-272.10.1007/BF02641800Search in Google Scholar

Tulloch A. P. (1980) Beeswax - composition and analysis. Bee World 61: 47-62.10.1080/0005772X.1980.11097776Search in Google Scholar

Vit P., Roldan S., Tamer E., Olivo de Acosta E., Bianchi M. (1992) Deteccion de adulteraciones en cera de abejas comercializadas en Venezuela. Revista del Instituto Nacional de Higiene Rafael Rangel 23: 23-27.Search in Google Scholar

White J. W. Jr., Reader M. K., Riethof M. L.( 1960) Chromatographic Determination of Hydrocarbons in Beeswax. Journal of the Association of Official Agricultural Chemists 43: 778-780. 10.1093/jaoac/43.4.778Search in Google Scholar

eISSN:
2299-4831
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Inglese
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2 volte all'anno
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Life Sciences, Zoology, other