Abstract:
This invention concerns an apparatus and method for perforating a beam. The apparatus comprises a main longitudinal support structure to support the beam. A cutting zone is located along the main longitudinal support structure. Controllable translating means translate the beam longitudinally in the cutting zone. A detector detects a presence of the beam in the cutting zone and in response, a router is controllably moved substantially orthogonally and transversally with respect to the beam, while the beam is translated. The combined controlled movement of the router and the beam results in a perforation of the beam following a predetermined perforation pattern.
Abstract:
This invention relates to a method and a device for high-speed production of aromatic essential oils from perfume-generating plants. The device comprises at least one enclosure 1 provided with means 2 for crushing said plants into a slurry, heating means 5, means 6 for feeding said plants thereto, means 7 for drawing off said slurry, a distillation column 9 and at least a condensing apparatus 15, 20 to form at least one condensate of essential oils. This device is applicable for industrially recovering essential oils from perfume-generating plants such as jasmine, orange flower, mint, ginger, aniseed, etc.
Abstract:
A process and an apparatus for the processing of oil-producing drupes, notably olives, is described comprising at least one device (20, 24) for the processing of whole drupes which effects a physical destructuring with incipient detachment of the drupe pulp from the skins and stones, under conditions which substantially avoid the oxidation mainly of the pulp's natural antioxidants; at least one device (42, 52; 110; 120, 124, 130, 134, 160, 170) for the physical separation and recovery (at 100) of the pulp essentially devoid of stones and advantageously skins, and (at 92, 96, 110) of the stones essentially devoid of pulp, advantageously with the skins, ly under conditions which substantially avoid oxidation; and at least one device (160, 170, 172, 174) for the separation and recovery of the pulp oil essentially devoid of stone oil and containing the pulp's natural antioxidants, thereby improving the purity and oxidation resistance of the pulp oil.
Abstract:
A process and an apparatus for the processing of oil-producing drupes, notably olives, is described comprising at least one device (20, 24) for the processing of whole drupes which effects a physical destructuring with incipient detachment of the drupe pulp from the skins and stones, under conditions which substantially avoid the oxidation mainly of the pulp's natural antioxidants; at least one device (42, 52; 110; 120, 124, 130, 134, 160, 170) for the physical separation and recovery (at 100) of the pulp essentially devoid of stones and advantageously skins, and (at 92, 96, 110) of the stones essentially devoid of pulp, advantageously with the skins, ly under conditions which substantially avoid oxidation; and at least one device (160, 170, 172, 174) for the separation and recovery of the pulp oil essentially devoid of stone oil and containing the pulp's natural antioxidants, thereby improving the purity and oxidation resistance of the pulp oil.
Abstract:
This invention relates to a method and a device for high-speed production of aromatic essential oils from perfume-generating plants. The device comprises at least one enclosure 1 provided with means 2 for crushing said plants into a slurry, heating means 5, means 6 for feeding said plants thereto, means 7 for drawing off said slurry, a distillation column 9 and at least a condensing apparatus 15, 20 to form at least one condensate of essential oils. This device is applicable for industrially recovering essential oils from perfume-generating plants such as jasmine, orange flower, mint, ginger, aniseed, etc.
Abstract:
This invention concerns an apparatus and method for perforating a beam. The apparatus comprises a main longitudinal support structure to support the beam. A cutting zone is located along the main longitudinal support structure. Controllable translating means translate the beam longitudinally in the cutting zone. A detector detects a presence of the beam in the cutting zone and in response, a router is controllably moved substantially orthogonally and transversally with respect to the beam, while the beam is translated. The combined controlled movement of the router and the beam results in a perforation of the beam following a predetermined perforation pattern.