In this paper, a method for the extraction of high purity lycopene from tomato wastes is presented. The method is based on a pressurized extraction that uses the Extractor Naviglio, and it is performed in the 0.7-0.9 MPa range. Tomato skin, the byproduct deriving from manufacturing of tomato, in a water dispersion, are used as starting material. Lycopene is transferred, for the effect of the high pressure used, in the form of molecular aggregates into the water as a dispersion, while apolar compounds remain in the matrix. The aggregates are easily purified in a single subsequent step by using methanol, thus, obtaining lycopene at 98% chromatographic purity or higher. A new stationary phase, phenyl-hexyl silicone, and a simple water/acetonitrile gradient were used for HPLC analysis of lycopene. The extract was characterized by UV-Vis spectrophotometry, H-1 NMR, C-13 NMR, and electrospray ionization mass spectrometry. An average recovery of 2.8 mg lycopene/kg tomato waste can be obtained after 4 hours of extraction and using tap water as the extracting liquid. The recovery percentage was of about 10%. The exhausted tomato byproduct can be easily dried and used in agriculture or as feeding for animals.

Characterization of high purity lycopene from tomato wastes using a new pressurized extraction approach / Naviglio, Daniele; Caruso, T.; Iannece, P.; Aragòn, A.; Santini, Antonello. - In: JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY. - ISSN 0021-8561. - STAMPA. - 56:15(2008), pp. 6227-6231. [10.1021/jf703788c]

Characterization of high purity lycopene from tomato wastes using a new pressurized extraction approach

NAVIGLIO, DANIELE;SANTINI, ANTONELLO
2008

Abstract

In this paper, a method for the extraction of high purity lycopene from tomato wastes is presented. The method is based on a pressurized extraction that uses the Extractor Naviglio, and it is performed in the 0.7-0.9 MPa range. Tomato skin, the byproduct deriving from manufacturing of tomato, in a water dispersion, are used as starting material. Lycopene is transferred, for the effect of the high pressure used, in the form of molecular aggregates into the water as a dispersion, while apolar compounds remain in the matrix. The aggregates are easily purified in a single subsequent step by using methanol, thus, obtaining lycopene at 98% chromatographic purity or higher. A new stationary phase, phenyl-hexyl silicone, and a simple water/acetonitrile gradient were used for HPLC analysis of lycopene. The extract was characterized by UV-Vis spectrophotometry, H-1 NMR, C-13 NMR, and electrospray ionization mass spectrometry. An average recovery of 2.8 mg lycopene/kg tomato waste can be obtained after 4 hours of extraction and using tap water as the extracting liquid. The recovery percentage was of about 10%. The exhausted tomato byproduct can be easily dried and used in agriculture or as feeding for animals.
2008
Characterization of high purity lycopene from tomato wastes using a new pressurized extraction approach / Naviglio, Daniele; Caruso, T.; Iannece, P.; Aragòn, A.; Santini, Antonello. - In: JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY. - ISSN 0021-8561. - STAMPA. - 56:15(2008), pp. 6227-6231. [10.1021/jf703788c]
Characterization of high purity lycopene from tomato wastes using a new pressurized extraction approach / Naviglio, Daniele; Caruso, T.; Iannece, P.; Aragòn, A.; Santini, Antonello. - In: JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY. - ISSN 0021-8561. - STAMPA. - 56:15(2008), pp. 6227-6231. [10.1021/jf703788c]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/345332
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