摘要:
A shoe care apparatus according to an embodiment of the present invention comprises an inner cabinet, a door, a connecting flow path, a blower unit, a dehumidifying unit, a steam generator, and a steam inlet. The steam inlet forms an entrance through which the steam flows into an accommodation space of the inner cabinet. The door is located at the front portion of the inner cabinet, and the steam inlet is located at the center of the rear side of the accommodation space. According to the embodiment of the present invention, when a pair of shoes are placed on the bottom of the accommodation space, the shoes do not block the steam inlet and the steam can be evenly supplied to each of the shoes.
摘要:
A shoe care apparatus according to an embodiment of the present invention is composed of an inner cabinet, a door, a nozzle duct, a nozzle, and a nozzle handle. The inner cabinet forms an accommodation space in which shoes are accommodated. The inner cabinet has a main opening that is open in a first direction which is a horizontal direction. The door opens and closes the main opening. The nozzle duct is hinge-coupled to the inner cabinet. The nozzle duct forms a passage for air that is being forcibly blown. The nozzle is coupled to an end portion of the nozzle duct. The nozzle handle is formed on the nozzle so as to adjust the angle of the nozzle duct. The inner cabinet includes an inner upper plate that constitutes the ceiling of the accommodation space. The inner upper plate includes a first region and a second region. The second region extends from in front of the first region with respect to a first direction. The second region forms an upwardly inclined surface. Therefore, at least a portion of the nozzle handle is positioned forward, in the first direction, of a virtual plane that is an extension of the inclined surface of the second region.
摘要:
A dryer for drying a liquid feed (11, 11') into a powder (35) comprises a drying chamber (3) defined by a chamber wall (5) including a bottom wall portion (7), a feed inlet for receiving the liquid feed (11) and dispersing particulate feed (13) into the drying chamber (3), at least one air inlet (15) for entering drying air into the drying chamber (3) and at least one drying chamber outlet (17) for dried powder and/or spend drying air from the drying chamber (3). The feed inlet comprises a decanter centrifuge (9) having an axis of rotation (19), a first axial end (21), a second axial end (23) and a solid phase outlet at the first axial end (21). The drying chamber has a common drying chamber outlet (17) for dried powder and spend drying air. A product conduit (25) is connected to the common drying chamber outlet for pneumatic conveyance of the dried powder through the product conduit. The air inlet (15) is configured to provide a swirl of drying air inside the drying chamber (3). The drying chamber (3) generally has a disk-shape with a circumferential wall (31), a part of which constitutes the bottom wall portion (7). The drying chamber (3) has a tangential drying chamber outlet (17) and preferably a tangential air inlet (15) for entering at least part of the drying air.
摘要:
The present disclosure provides for a portable drying mechanism. The mechanism may comprise a grip, shaft, neck, drying panels, and a tip. The shaft may comprise a button to modify the configuration of the portable drying mechanism. The button may release interchangeable components of the portable drying mechanism. The button may allow the shaft to extend. The button may activate an electrical or manual drying response such as, but not limited to, a water vacuum or rotating drying material. The shaft may comprise a hollow cavity for material retention. The shaft may comprise a telescoping aspect that allows for extension and retraction. The neck may comprise a flexible portion to dry containers with complex shapes. The tip may comprise a sensor to verify dryness within a container. The drying panels may comprise a predetermined shape and material that allow the drying panels to dry containers and hard-to-reach areas.
摘要:
An apparatus for treating waste sludge includes an outer container casing, internally hollow, an inner body coaxial with the outer casing, a compacting and dehydrating chamber, inside the outer container casing and along which sludge to be treated runs, an inlet zone for supplying sludge to the chamber, an outlet zone for unloading treated sludge, movement elements for the sludge, cooperating with the inner body, which promote compaction and advancement of the sludge from the inlet zone to the outlet zone; a container net connected to a negative pole of a control unit to form a cathode, and the inner body connected to a positive pole to form an anode. A method of treating sludge includes the promoting the continuous advancement and compaction of sludge inside a compression chamber between the anode and cathode, and establishing a difference in potential in order to subject the sludge to an electrical field.
摘要:
The invention relates to a device for processing wet biomass by frying, comprising a first tank (1) containing a first oil bath (108) that is kept at a temperature for frying the biomass, a means for feeding the biomass into said first tank, a second tank (2) containing a second oil bath (211) at a temperature lower than said frying temperature, the first and second tank being communicating spaces, a means (3) for transferring fried solid material from the first tank into the second tank, and a means (210) for discharging the fried solid material out of the second tank. A means for keeping the oil in the first bath at a temperature for frying the biomass comprises a means (401) for collecting oil from the second tank, a means for heating the collected oil, and a means (412) for injecting the heated oil into the first tank.
摘要:
The method involves heating a product to be dehydrated at temperature lower than the temperature of evaporation of a liquid e.g. water, to be extracted, within a duration ranging between 5 minutes and hours when pressure is lower than 7 bars. The product is heated by conduction from a heated portion of a wall in a compression and/or filtration device. The heated portion of the wall is set to temperature ranging between 40 and 90 degree Celsius.