Abstract:
A power supply for supplying electric power to a device includes a power generation module. The module includes a power generation portion for generating power by using supplied power generation fuel, a fuel pack accommodating section which can accommodate a plurality of fuel packs capable of storing the power generation fuel, and from which the plurality of fuel packs can be independently removed, and a control portion which performs control such that, while the power generation fuel is supplied from one of the plurality of fuel packs accommodated in the fuel pack accommodating section, the power generation fuel is not supplied from another fuel pack of the plurality of fuel packs.
Abstract:
The present invention concerns the sector of equipment and components for the production of waste treatment plants. More specifically it concerns a membrane gas holder dome (10) with reduced heat loss, adapted to be installed on a heated digester adapted to produce combustible gas, comprising: - a first membrane (1), impermeable to gases, adapted to delimit, at least partially, a storage chamber (C1) of the combustible gas; - a second membrane (2), impermeable to gases, adapted to delimit, at least partially, a pressurization chamber (C2) superimposed on said storage chamber (C1); - inflation means (15, 16, 17, 18) of said pressurization chamber (C2) by means of an auxiliary gas, preferably air; - a layer of composite material, with heat insulating function, interposed between said first membrane (1) and said second membrane (2).
Abstract:
The present invention provides a Type 3 pressure vessel comprising a polar boss that is attached to a metallic liner and provides reinforced static strength, fatigue strength, endurance, chemical resistance and/or corrosion resistance of the liner orifice or neck region. In particular, the material of the polar boss has higher static strength, fatigue strength, endurance, chemical resistance and/or corrosion resistance relative to that of the liner material.
Abstract:
The invention relates to a storage device (1) for storing a gas (20), in particular for storing gaseous hydrogen, comprising a first chamber (30) for receiving the gas (20) and a locking device (32) for closing and opening a flow path (33) connected to the first chamber (30). The storage device (1) according to the invention comprises an adjustment unit (40) for volume change of the first chamber (30). The invention further relates to a gas storage unit (100) comprising the storage device (1) according to the invention and to a method for the at least partial filling or emptying of the gas storage unit (100).
Abstract:
The present invention concerns a security system (1) for a pneumatic accumulator (20), said high pressure gas pneumatic accumulator (20) being connectable with a pump and with a pneumatic apparatus by means of, respectively, a first (51) and second (52) connecting duct, said system (1) being characterized in that it comprises a pneumatic bladder (40) for containing high pressure gas, flow distribution means (30) connected with said first (51) and second (52) connecting duct to said pneumatic accumulator (20) and said pneumatic bladder (40), said flow distribution means (30) being able to pass, through a command, from a first operating position, in which said flow distribution means (30) connect said first (51) and second (52) connecting duct with said pneumatic accumulator (20), to a second operating position, in which said flow distribution means (30) connect first (51) and second (52) connecting duct with said pneumatic bladder (40), so as to inflate said pneumatic bladder (40) with gas and to functionally replace said pneumatic accumulator (20). The present invention concerns even a pneumatic plant.
Abstract:
A method of forming an inner can of a gas cartridge including securing inner can material and pre-stressing the material such that flexion thereof during gas cartridge use is distributed.