Abstract:
A fluid mixing system includes a container bounding a compartment and extending between a first end and an opposing second end. An elongated first drive line and second drive line are disposed within the compartment of the container and are rotatable therein. At least one tie extends between the first drive line and the second drive line so as to maintain at least a portion of the first drive line and the second drive line at lateral spaced apart positions within the compartment. An impeller or other mixing element can be coupled to the drive lines.
Abstract:
A container system includes a bag comprised of one or more sheets of flexible polymeric material, the bag having an interior surface at least partially bounding a chamber, the chamber being adapted to hold a fluid. A flexible sparging sheet is secured to the interior surface of the bag so that a compartment is formed between the interior surface of the bag and the sparging sheet, at least a portion of the sparging sheet allowing gas to pass therethrough. A tubular port or tube is secured to the bag so that a passage bounded by the tubular port or tube communicates with the compartment. A mixing element is disposed within the chamber of the bag, the mixing element being spaced apart from the flexible sparging sheet.
Abstract:
A container system includes a bag comprised of one or more sheets of flexible polymeric material, the bag having an interior surface at least partially bounding a chamber, the chamber being adapted to hold a fluid. A flexible sparging sheet is secured to the interior surface of the bag so that a compartment is formed between the interior surface of the bag and the sparging sheet, at least a portion of the sparging sheet allowing gas to pass therethrough. A tubular port or tube is secured to the bag so that a passage bounded by the tubular port or tube communicates with the compartment. A mixing element is disposed within the chamber of the bag, the mixing element being spaced apart from the flexible sparging sheet.
Abstract:
A method for filtering a gas includes delivering a gas into a compartment of a gas filter, the compartment being at least partially bounded by a casing comprised of a flexible sheet of polymeric film. A partial vacuum is applied to the gas filter so that the partial vacuum assists in drawing the gas through a porous filter body of the gas filter that is at least partially disposed within the compartment of the gas filter.
Abstract:
A container assembly includes a container at least partially bounding a chamber and having a wall with an opening extending therethrough. A tubular stem bounds a passageway and outwardly projects from the wall of the container so that the passageway communicates with the opening. A sparger includes a tubular member having a first end and an opposing second end and an interior surface bounding a passage extending therebetween. A gas permeable sparging member is secured to the first end of the tubular member so that gas passing through the tubular member from the second end passes out through the sparging sheet. A second flange encircles and radially outwardly projects from the tubular member, the second flange being secured to the stem so that at least a portion of the tubular member is disposed within the passageway of the tubular stem.
Abstract:
A heat exchanger system includes a heat exchanger having a body with a first side face and an opposing second side face, the body bounding a fluid channel disposed between the opposing side faces and extending between an inlet port and an outlet port. A flexible first bag has of one or more sheet of polymeric material and bounds a fluid pathway that extends between a fluid inlet and a fluid outlet. The first bag is removably retained against the first side face of the body of the heat exchanger, the fluid channel of the body of the heat exchanger being sealed from fluid communication with the fluid pathway of the first bag.
Abstract:
A container system includes a bag having of one or more sheets of flexible polymeric material, the bag having an interior surface at least partially bounding a chamber, the chamber being adapted to hold a fluid. A flexible sparging sheet is secured to the interior surface of the bag so that a compartment is formed between the interior surface of the bag and the sparging sheet, at least a portion of the sparging sheet allowing gas to pass therethrough. A tubular port or tube is secured with the bag or the sparging sheet so that a passage bounded by the tubular port or tube communicates with the compartment.
Abstract:
A system for sterilizing a fluid includes a fluid source and a sterilization container bounding a fluid flow path that is in fluid communication with the fluid source. The sterilization container is comprised of one or more polymeric walls. An electron beam generator is configured to direct an electron beam through at least a portion of the fluid flow path of the sterilization container, the electron beam being sufficient to sterilize a fluid within the fluid flow path.