Abstract:
Water distillation device (1), comprising: - a body having a lateral wall (2) and defining a cavity (2c, 2d) suitable for allowing the distillation of an amount of water (201 ) to distill, wherein in said cavity (2c, 2d) are defined a distillation chamber (2d) and a condensation chamber (2c), wherein the condensation chamber (2c) comprises a collection portion (109) designed to collect at least temporarily distilled water (300), - at least a heater (15c), configured to heat the amount of water (201) to distill present, in use, in the distillation chamber (2d), - a cooler (15e), configured to determine a condensation of a distillation steam, - a pre-heater (20) for the water (201 ) to distill, positioned outside of said cavity (2c, 2d), said pre-heater (20) being configured to pre-heat the water (201) to distill before an its inflow in the distillation chamber (2d) and comprising: - a containment vase (21, 22, 23) for the water to pre-heat, - an inlet duct (24) configured to allow the introduction of the water to pre-heat within said containment vase (21, 22, 23), - an outlet duct (25), connected with the cavity (2c, 2d), in particular with the distillation chamber (2d) and configured to make a pre-heated water flow from the containment vase (21, 22, 23) toward the cavity, in particular toward the distillation chamber (2d), - a pre-heating element (18p), at least partially introduced within said containment vase (21, 22, 23), configured to supply heat to the water to pre-heat contained, in use, in said containment vase (21, 22, 23).
Abstract:
Water distillation device (1), comprising: - a body having a lateral wall (2) and defining a cavity (2c, 2d) suitable for allowing the distillation of an amount of water (201 ) to distill, wherein in the cavity (2c, 2d) are defined a distillation chamber (2d) and a condensation chamber (2c), - at least a heater (15c), configured to heat the amount of water (201 ) to distill, - an intermediate or separating element (100), positioned in an intermediate position of the cavity (2c, 2d) of the body, and having at least a portion of junction (103) with the lateral wall (2), said intermediate or separating element (100) being configured to divide said cavity (2c, 2d) realizing the distillation chamber (2d) and the condensation chamber (2c), - said intermediate or separating element (100) comprising at least a through hole (105) configured to allow the passage of at least a distillation steam from the distillation chamber to the condensation chamber, - said intermediate or separating element (100) comprising at least a collection portion (109) of distilled water (300).
Abstract:
An example boiler apparatus (501) for continuously processing water containing dissolved matter is disclosed. The boiler apparatus (501) including: a boiler vessel (515) with an inlet (523), a first outlet (517) and a second outlet (529). A third outlet (511) may also be provided. The boiler vessel (515) includes a heating element (522) located within the boiler vessel (515) arranged to provide a wet steam product at the first outlet (517) and/or third outlet (511) and create convection within the boiler vessel (515) such that a concentrated product is provided at the second outlet (529) which is relatively lower than the first outlet (517). A system including a boiler apparatus and related methods are also disclosed.
Abstract:
Der Erfindung, die ein Verfahren und eine Vorrichtung zur Reinigung von verschmutzten Altöl betrifft, bei dem Ausgangsmaterial bis zur Gasphase erwärmt und der dabei entstehende Dampf rektifiziert wird, wobei gereinigtes Öl als Kondensat aus einem Abzug in einer Rektifikationskolonne entnommen wird, liegt die Aufgabe zugrunde, ein Verfahren und Vorrichtung zur Reinigung von verschmutztem Altöl anzugeben, welches auch in Kleinstanlagen eine effiziente Arbeit ermöglicht, so dass eine kompakte Anlagenkonfiguration und damit insbesondere ein mobiler Einsatz durch einen Containeraufbau ermöglicht wird. Der Erfindung liegt auch die Aufgabe zugrunde, den Aufwand für die Wartung zu verringern. Die erfindungsgemäße Aufgabenstellung wird dadurch gelöst, dass Altöl einer Verdampfung durch eine zumindest mittelbare Kontaktierung des Ausgangsmaterials mit einem Schmelzbad, dessen Schmelztemperatur über der Verdampfungstemperatur jedoch unter der Zündtemperatur des Altöls liegt, unterzogen wird und der Dampf in der Rektifikationskolonne rektifiziert wird.
Abstract:
A waler vending apparatus is disclosed. The water vending system includes a water vapor distillation apparatus and a dispensing device. The dispensing device is in fluid communication with the fluid vapor distillation apparatus and the product water from the fluid vapor distillation apparatus is dispensed by the dispensing device.
Abstract:
A fluid vapor distillation apparatus. The apparatus includes a source fluid input, and an evaporator condenser apparatus (104). The evaporator condenser apparatus (104) includes a substantially cylindrical housing and a plurality of tubes in the housing. The source fluid input is fluidly connected to the evaporator condenser (104) and the evaporator condenser transforms source fluid into steam and transforms compressed steam into product fluid. Also included in the fluid vapor distillation apparatus is a heat exchanger (102) fluidly connected to the source fluid input and a product fluid output. The heat exchanger (102) includes an outer tube and at least one inner tube. Also included in the fluid vapor distillation apparatus is a regenerative blower (106) fluidly connected to the evaporator condenser (104). The regenerative blower (106) compresses steam, and the compressed steam flows to the evaporative condenser (104) where compressed steam is transformed into product fluid.
Abstract:
The invention concerns a method for concentrating solutions such as grape must, characterised in that it consists of the following steps: bringing the solution to be concentrated, taken at storage temperature, above a tank to diffuse it in sheet, by gravity and at atmospheric pressure; force the resulting diffused solution to trickle down around heating elements; maintain the temperature of said heating elements at about 80 DEG C to produce partial evaporation of the solution without allowing the temperature of the final concentrate to exceed 50 DEG C; mechanically extracting the resulting vapours by generating inside the tank an current from an intake of cold and dry air according to an adjusted flow rate to avoid re-condensation while limiting their velocity; recuperating the concentrate at the bottom of the tank and sending it back to generate a continuous concentration cycle.
Abstract:
A system and method for producing gaseous iodine is disclosed. The system includes a reservoir for the gaseous iodine, an iodine source connected to the reservoir, a dispersal device for dispersing the iodine from the reservoir and an electronic controller for controlling the iodine source and the dispersal device. The iodine source includes a cooled iodine dispenser, a hot plate, a valve connecting the dispenser and the hot plate, and a hot plate fan for transporting the gaseous iodine from the hot plate to the reservoir. The method includes passing solid iodine from a cooled iodine dispenser through a valve to a hot plate to produce gaseous iodine, transporting the gaseous iodine from the hot plate to the reservoir with a hot plate fan, and dispersing the iodine from the reservoir, wherein providing and dispersing the iodine is controlled by an electronic controller.