Apparatus and method for exposing product to a controlled environment. The apparatus includes a distribution chamber with an inlet for receiving controlled environment or combination of gases, and a region of flow resistance. A plurality of jet nozzles are surrounded by the flow resistance region and provide high velocity streams of controlled environment which are surrounded by the low velocity streams from the resistance region. For some applications, a section of chamber immediately preceding entry into a sealer, the controlled environment supply to the jet nozzles may be shut off.
A head space inerting system is used in a packaging machine for forming, filling and sealing packages. The inerting system directly introduces an inerting gas into the head space of the formed package subsequent to filling and prior to sealing. The inerting system includes an inerting gas source, an inerting gas heater to heat the inerting gas and an inerting gas nozzle. The inerting gas nozzle is disposed within the form, fill and seal packaging machine to introduce the inerting gas directly into the head space of the packages. The nozzle is further disposed between the top heating station and the sealing station. A method for inerting an atmosphere in the package head space is also disclosed.
A head space inserting system is used in a packaging machine for forming, filling and sealing packages. The inerting system directly introduces an inerting gas into the head space of the formed package subsequent to filling and prior to sealing. The inerting system includes an inerting gas source, an inerting gas heater to heat the inerting gas and an inerting gas nozzle. The inerting gas nozzle is disposed within the form, fill and seal packaging machine to introduce the inerting gas directly into the head space of the packages. The nozzle is further disposed between the top heating station and the sealing station. A method for inerting an atmosphere in the package head space is also disclosed.
A container for holding various articles and which contains a moisture control system for reducing humidity within the container. The moisture control system prevents moisture from penetrating in the interior of the container and reduces humidity that enters the interior when the lid of the container has been opened. The moisture control system comprises a moisture cup that is received within an opening in the container, a desiccant holder that is carried by the cup, a mesh screen that is dimensioned to receive a desiccant and a top. The moisture cup performs three functions: (1) it prevents moisture from penetrating the interior of the container through the opening; (2) it directs moisture from within the interior of the container to the desiccant; and (3) it holds the desiccant. In order to more conveniently transport the detergent, a strap is attached on each side of the container.
A multiflow gassing system for providing controlled environment gas to a lid and container, the system including a lid carrier; and a gas rail assembly adjacent the lid carrier, the gas rail assembly having a top portion including a top portion gas outlet, an end portion including a end portion gas outlet, and a plate adjacent the end portion. The top portion gas outlet is oriented to direct the controlled environment gas into the lid and the end portion gas outlet is oriented to direct the controlled environment gas into a lid-container engagement region.
A compact gassing lance including tubing having a tubing plenum and a distribution opening; a supply line operably connected to supply gas to the tubing plenum; and a screen attached to the tubing over the distribution opening and forming a screen plenum; wherein the screen plenum receives directional gas flow from the distribution opening and laminarizes the directional gas flow.