Abstract:
A waste treatment apparatus having an autoclave that includes a pressure vessel (11) having a first mouth part (20) to receive waste material and a second mouth part (19) to discharge treated material, with the autoclave being rotatable at a longitudinal axis to agitate the waste material during treatment and to discharge waste material from the autoclave.
Abstract:
A closure assembly 10 contains positive and/or vacuum pressure within a pressure vessel 16 having a neck 12. A circumferential locking member 22 supported on a door 20 locks the door to the neck, and is radially moveable between an open position and a closed position. A seal 26 between the neck and the door maintains fluid-tight integrity. A lever or other hand powered operator may be used for moving the locking member between the open position and the closed position. The locking member may include locking segments interconnected to form the circumferential locking member.
Abstract:
The Chemical-agent Access and Neutralization System (CANS) of the present invention is a small, portable, single-use, disposable chemical treatment apparatus that is used to access and treat Chemical Agent Identification Set (CAIS) ampoules, bottles and/or containers that contain vesicant agents, or chemical warfare agents such as mustard or Lewisite. The apparatus and method of use of the present invention provides a resultant treatment residue that remains totally contained in the CANS treatment container and is safe for disposal. The CANS treatment container can be over packed into a Department of Transportation (DOT) certified shipping container, and shipped to permitted hazardous waste management facilities for ultimate disposal.
Abstract:
A platelet composition suitable for direct transfusion into a patient is provided. The platelet composition includes a preservation medium comprising plasma and a gel-forming material in a concentration relative to the plasma such that the medium is in a sufficiently fluent state at about 37° C. to allow platelets to move within the medium and is in a sufficiently gelatinous state at about 5° C. to substantially prevent platelets from moving freely within the medium; and platelets.
Abstract:
An activating device activates a cover for the opening face of a container. Pivot arms are fixed to a pivot unit equipped with an electric motor through a reduction gear at one ends, and fixed to plate springs at the other ends. One end portions of the plate springs are fixed to the respective front and rear portions of the cover, the other end portions thereof are fixed to the other ends of the pivot arms. The resiliency of the plate spring is set lower in the vertical direction of the container. The plate spring is bent from its other end portion toward its one end portion at substantially 90° or larger of bending angle. The plate spring is formed so that it bends toward the inside of the center of the cover between the pivot arm and the cover.
Abstract:
A closure assembly 10 contains positive and/or vacuum pressure within a pressure vessel 16 having a neck 12. A circumferential locking member 22 supported on a door 20 locks the door to the neck, and is radially moveable between an open position and a closed position. A seal 26 between the neck and the door maintains fluid-tight integrity. A lever or other hand powered operator may be used for moving the locking member between the open position and the closed position. The locking member may include locking segments interconnected to form the circumferential locking member.
Abstract:
A vacuum lock on a vacuum chamber has a lockable gate opening with a substantially vertical gate and the following characteristics: the gate is a sliding plate displaceable parallel to the opening; the gate is connected via a driving rod on a side oppose the opening and is supported at a distance in the sliding direction; this connection is via a guidance mechanism such that in the presence of a blockage of the closing process, the gate is laterally pressed on a seal encompassing the opening; and a spring element is provided to narrowly compensates the weight of the gate. This ensures that in the event of a operator error or unintentional reaching into the opening during a closing process, injuries cannot occur and a high degree of safety is ensured.
Abstract:
A closure assembly 10 contains positive and/or vacuum pressure within a pressure vessel 16 having a neck 12. A circumferential locking member 22 supported on a door 20 locks the door to the neck, and is radially moveable between an open position and a closed position. A seal 26 between the neck and the door maintains fluid-tight integrity. A lever or other hand powered operator may be used for moving the locking member between the open position and the closed position. The locking member may include locking segments interconnected to form the circumferential locking member.
Abstract:
An apparatus for carrying out chemical reactions simultaneously on a number of samples under identical pressure conditions comprises a plurality of upwardly open pressure vessels 1 mounted on a lower plate 2 and a plurality of vessel closure means 10 mounted on an upper plate 15 such that the plurality of vessel closure means 10 can be applied to the plurality of pressure vessels 1 simultaneously in order to hermetically seal said vessels 1, each vessel closure means 10 having a passage 19 communicating the interior of an associated pressure vessel 1 with a common manifold 22. A plurality of retaining posts 6 extend upwardly from the lower plate 2 and pass through apertures 27 in the upper plate 15. A locking ring 34 has a plurality of keyhole apertures therein having a wider portion allowing each retaining post 6 to pass through the locking ring 34 when the locking ring 34 is in an unlocked position and a narrower portion that engages a peripheral groove 7 adjacent the upper end of each retaining post 6 when the locking ring 34 is in a locked position.
Abstract:
A multi-channel fluid dispenser includes a reservoir with multiple internal chambers, a multi-channel liquid dispensing head, a plurality of fluid-delivery conduits, and support and positioning elements. The fluid-delivery conduits receive liquid from the chambers in the reservoir and deliver it to the dispensing head. The support and positioning elements are operable to support and position the dispensing head so that it can deliver the liquid from the reservoir to an underlying receiver. The fluid-delivery conduits include one or more optional flow control features that improve the accuracy of the dispensing operation. The multi-channel liquid dispensing head, which includes a valve-support member, a plurality of valves and a plurality of nozzles, is advantageously movable in three directions to facilitate alignment with an underlying receiver. Movement of the dispensing head along two axes is provided by the simple expedient of elongate holes having their long axes aligned in mutually orthogonal directions. In some embodiments, the valves are tiltable away from the vertical so that liquid dispensed from such tilted valves is directed at a non-normal angle into a receiver.