Malaxation apparatus for the production of virgin olive oil

20200068911 ยท 2020-03-05

    Inventors

    Cpc classification

    International classification

    Abstract

    The present invention relates to a heating apparatus, which heats a substance in a chamber. The present invention further relates to a food production line and a method to heat a substance with radio-frequency waves.

    Claims

    1. Heating apparatus that is configured to heat a substance in a chamber, wherein the heating apparatus comprises at least one solid-state radio frequency source.

    2. Heating apparatus according to claim 1, wherein the heating apparatus is an malaxing apparatus.

    3. Heating apparatus according to claim 1, wherein the chamber comprises a sidewall, a bottom, and/or a cover.

    4. Heating apparatus according to claim 3, wherein the at least one solid-state radio frequency source is provided in the sidewall, in the bottom, and/or in the cover.

    5. Heating apparatus according to claim 1, wherein the chamber comprises mixing means.

    6. Heating apparatus according to claim 1, wherein the at least one solid-state radio frequency sources comprises a multitude of solid-state radio frequency sources that are provided in an array of n columns and m rows, wherein n is an integer>1 and m is an integer1.

    7. Heating apparatus according to claim 1, wherein the at least one solid-state radio frequency source is a multitude of solid-state radio frequency sources that are provided equidistantly at a circumference of the chamber.

    8. Heating apparatus according to claim 1, wherein the heating apparatus comprises means to transport the substance through the chamber and past the at least one solid-state radio frequency source.

    9. Heating apparatus according to claim 1, wherein the heating apparatus comprises a control system to control the solid-state radio frequency sources.

    10. Heating apparatus according to claim 1, wherein the heating apparatus comprises a sensor that measures at least one property of an edible mass and/or one property of radiation reflected from the edible mass, wherein a signal of the sensor is utilized by a control system.

    11. Food production line comprising the heating apparatus according to claim 1.

    12. Food production line according to claim 11, wherein the heating apparatus is provided downstream from a mill.

    13. Food production line according to claim 11, wherein the heating apparatus is provided upstream from a separator.

    14. Method to heat a substance with radio-frequency waves, wherein the radio-frequency waves are provided with one or more solid-state radio frequency sources.

    15. Method according to claim 14, wherein the substance is transported from an inlet to an exit, which are spaced apart.

    16. Method according to claim 15, wherein the substance is transported continuously and or intermittently or is heated batch-wise.

    17. Method according to claim 14, wherein one or more sensors are provided that are configured to measure one or more properties of the substance and/or radiation reflected from the substance.

    18. Method according to claim 17, wherein a signal of the one or more sensors is utilized to control the solid-state radio frequency sources.

    Description

    [0030] The inventions are now explained according to the Figures. The explanations apply for all embodiments of the present invention likewise.

    [0031] FIGS. 1a and 1b show a first embodiment of the present invention.

    [0032] FIGS. 2a and 2b show a second embodiment of the present invention.

    [0033] FIGS. 3a and 3b show a third embodiment of the present invention.

    [0034] A first embodiment of a solid-state RF energized microwave apparatus is depicted in FIGS. 1a and 1b, which can comprise one, but preferably multiple solid-state RF sources 2 which among other things each comprises a waveguide 5 and/or an antenna 6, as can be seen from FIGS. 3a and 3b. In the present case, the inventive apparatus comprises a multitude of solid-state RF sources 2, which are provided at the circumference of a product chamber 14 and preferably, equidistantly. The number of sources 2 can depend on the efficiency, of the microwaves to heat up product 4 evenly, measured for example the temperature rise per unit of time. In this embodiment, the microwave or product chamber is provided by a vessel 16, with a sidewall 11 and a bottom and a cover 10. The solid-state RF energy source 2 are in the present example provided in the cover 10 of the vessel 16. The vessel comprises a filling and discharge means 7 through which the product to be heated enters and exits the vessel. A mixing means 3 can be provided in the vessel to mix the substance to be heated. The heating apparatus is preferably a malaxation apparatus in which an olive paste is heated. This olive pasted is stirred during heating. The inventive malaxation apparatus can be part of a line comprising a mill upstream from the malaxation apparatus and a separator downstream from the malaxation apparatus. As depicted. The solid-state RF energy source can be shielded by shielding means 12, which are preferably at least partially transparent for microwaves. The shielding means protect the solid-state RF energy sources against the substance to be heated and/or a cleaning fluid.

    [0035] In FIGS. 2a and 2b a second embodiment of the inventive apparatus 1 is shown. Essentially, reference can be made to the disclosure according to FIGS. 1a and 1b. However, in the present case, the solid-state RF energy sources 2 are provided in the sidewall 11 of the vessel 16. Some of the solid-state RF energy source may be below the filling level of the substance and hence submerged.

    [0036] The person skilled in the art, that according to a not shown example solid-state RF energy source may be in the cover, in the sidewall and/or in the bottom of the vessel.

    [0037] The above described examples are particularly suitable for a batch-heating of the substance.

    [0038] FIGS. 3a and 3b show another embodiment of the present invention. The solid-state RF energized microwave apparatus can comprise one, but preferably multiple solid-state RF sources 2 which among other things each comprises a waveguide 5 and/or an antenna 6. A microwave transparent shielding means 12, for example a tube is provided. The means 12 separates the product chamber 14 from the chamber 15, in which the solid-state RF sources 2 are located. The tube material is preferably transparent for microwaves supplied by the solid-state RF sources 2 and more preferably do not absorb microwave energy and will therefore not be heated up by the microwave energy but, if any, only heated up by the warmed-up product. To effectively convert the microwave energy into increased temperature of the substance to be heated, the material of the means 12 is not be metal, but certain plastic materials and/or a quartz-material are suitable. Product 11 is located within the product chamber 14 and will be treated, preferably heated by one preferably multiple solid-state sources 2 located in chamber 15. This embodiment is, for example, preferred in case cleaning agents used to clean product chamber 14 may not be come in contact with the solid-state sources 2. The means 12 can also be used to direct the product past the solid-state RF sources 2. In this case, the product touches the inner circumference of tube at least locally. One, but preferably multiple solid-state RF sources 2 are positioned around the means, here a tube 12 through which a substance 4, for instance olive paste flows. This embodiment can be used to heat the substance batch-wise or continuously. During continuous heating, the paste is pumped through the tube 12 past the sources 2.

    LIST OF REFERENCE SIGNS

    [0039] 1 Malaxing apparatus, heating apparatus

    [0040] 2 solid-state RF energy source

    [0041] 3 mixing means, stirrer

    [0042] 4 substance, olive paste

    [0043] 5 waveguide

    [0044] 6 antenna

    [0045] 7 filling, discharge means, discharge point

    [0046] 8 housing, vessel

    [0047] 9 inner wall housing, inner wall vessel 8

    [0048] 10 cover vessel 8

    [0049] 11 sidewall vessel 8

    [0050] 12 microwave transparent shielding means

    [0051] 13 inner wall microwave tube 12

    [0052] 14 product chamber

    [0053] 15 solid-state source chamber

    [0054] 16 Vessel