Working fluid treatment device for mass transfer between a working fluid and two fluid exchange media
An extracorporeal blood treatment device comprises a single housing defining an internal blood flow cavity. The housing accommodates an oxygenator, a heat exchanger and an additional mass transfer assembly, each having an array of fluid conduits. The arrays are co-located within the internal blood flow cavity such that blood flowing through the internal blood flow cavity flows substantially homogeneously around all the conduits. The arrays are arranged relative to one another within the internal blood flow cavity such that they together define a continuous blood flow path through the internal blood flow cavity along which blood can flow. The continuous blood flow path has a blood entry surface at one end and a blood exit surface at the opposite end. The overall blood flow direction from the blood entry surface along the blood flow path to the blood exit surface follows substantially a straight line.
1 . A working fluid treatment device for mass transfer between a working fluid and a first fluid exchange medium, and for mass transfer between the same working fluid and a second fluid exchange medium different from the first fluid exchange medium, wherein the working fluid treatment device comprises:
a collective first fluid exchange medium inlet that admits the first fluid exchange medium into the working fluid treatment device;
a collective second fluid exchange medium inlet that is fluidly separate from the first fluid exchange medium inlet, and that admits the second fluid exchange medium into the working fluid treatment device; and
an integrated working fluid treatment chamber, wherein the chamber includes
a working fluid inlet;
a working fluid outlet;
a first conduit group of first mass transfer conduits disposed between the working fluid inlet and the working fluid outlet, the first conduit group having an entry end that receives the first fluid exchange medium into the first conduit group; and an exit end that discharges spent first fluid exchange medium from the first conduit group, wherein the first conduit group performs mass transfer of a first substance with the working fluid when the first fluid exchange medium flows through the first conduit group; and
a second conduit group of second mass transfer conduits disposed between the working fluid inlet and the working fluid outlet, the second conduit group having an entry end that receives the second fluid exchange medium into the second conduit group; and an exit end for discharging spent second fluid exchange medium from the second conduit group, wherein the second conduit group performs mass transfer of a second substance with the working fluid when the second fluid exchange medium flows through the second conduit group;
wherein the first fluid exchange medium inlet is connected to the entry end of the first conduit group in order to collectively convey the first fluid exchange medium into all of the first mass transfer conduits of the first conduit group;
the second fluid exchange medium inlet is connected to the entry end of the second conduit group in order to collectively convey the second fluid exchange medium into all of the second mass transfer conduits of the second conduit group;
the first conduit group and the second conduit group are arranged in the chamber in-between the working fluid inlet and the working fluid outlet so that the working fluid, when travelling from the working fluid inlet into the chamber and then through the chamber and then out of the chamber via the working fluid outlet, flows around the first conduit group of first mass transfer conduits and the second conduit group of second mass transfer conduits;
there is a homogeneous conduit distribution throughout the entire volume of the chamber so that the working fluid flow cross section remains constant throughout the chamber;
the first fluid exchange medium and the first mass transfer conduits of the first conduit group are adapted to oxygenate, decarbonate, or oxygenate and decarbonate the working fluid;
the second fluid exchange medium and the second mass transfer conduits of the second conduit group are adapted to add to or remove from the working fluid one or more further substances other than oxygen, carbon dioxide, or oxygen and carbon dioxide; and
the working fluid treatment device is configured to operate with the first fluid exchange medium as a liquid or as a gas, and the working fluid treatment device is configured to operate with the second fluid exchange medium as a liquid or as a gas; and
wherein the working fluid comprises blood; and
wherein the first fluid exchange medium contains oxygen or is for oxygenation of the blood.
2 . The working fluid treatment device of claim 1 , wherein the first mass transfer conduits and the second mass transfer conduits are hollow semipermeable membrane fibers.
3 . The working fluid treatment device of claim 2 , wherein semipermeable membranes making up the semipermeable membrane fibers are liquid impermeable and either traversing-pore membranes traversed by open micropores for increased mass transfer across the membranes or-diffusion membranes comprising a nonporous layer preventing long-term membrane wetting.
4 . The working fluid treatment device of claim 3 , wherein the semipermeable membranes making up the first mass transfer conduits are traversing-pore membranes, and wherein the semipermeable membranes making up the second mass transfer conduits are diffusion membranes.
5 . The working fluid treatment device of claim 4 , further comprising a single shared fluid exchange medium outlet connected to the exit ends of the first group and the second conduit group in order to receive the spent first fluid exchange media and the spent second fluid exchange media.
6 . The working fluid treatment device of claim 1 , further comprising a first fluid exchange medium outlet connected to the exit end of the first conduit group that receives the spent first fluid exchange medium, and a second fluid exchange medium outlet connected to the exit end of the second conduit group that receives the spent second fluid exchange medium, wherein the second fluid exchange medium outlet is fluidly separate from the first fluid exchange medium outlet.
7 . The working fluid treatment device of claim 1 , wherein the working fluid, when travelling through the device, sequentially flows through the first conduit group and the second conduit group.
8 . The working fluid treatment device of claim 1 , wherein, in operation, a first part of the working fluid flows through the first conduit group, and, in parallel, a second part of the working fluid, different from the first part, flows through the second conduit group.
9 . The working fluid treatment device of claim 1 , wherein the first conduit group and the second conduit group together constitute interleaved first mass transfer conduits and second mass transfer conduits that form a working fluid flow volume.
10 . The working fluid treatment device of claim 1 , wherein the first conduit group and the second conduit group are stacked one on top of the other.
11 . The working fluid treatment device of claim 1 , wherein each of the first conduit group and the second conduit group constitutes a bundle of hollow semipermeable membrane fibers.
12 . The working fluid treatment device of claim 11 , wherein each fiber bundle is an assembly of one or more layered fiber mats.
13 . The working fluid treatment device of claim 12 , wherein the first conduit group and the second conduit group form one or more cuboid stacked fiber mats.
14 . The working fluid treatment device of claim 13 , wherein the first conduit group defines a first fluid exchange medium flow direction, and the second conduit group defines a second fluid exchange medium flow direction, and wherein the first flow direction and the second flow direction are set at an angle of 90° with respect to each other.
15 . The working fluid treatment device of claim 12 , wherein the device is a cylindrical wound fiber mat device.
16 . The working fluid treatment device of claim 15 , wherein each fiber bundle has a ring shaped or ring section shaped cross-section, and the fiber bundles are nested around a common central longitudinal axis.
17 . The working fluid treatment device of claim 11 , wherein the fibers in each fiber bundle have an open-loop shape.
18 . The working fluid treatment device of claim 17 , wherein the fibers of all the fiber bundles are looped around a common central longitudinal axis of the working fluid treatment device.
19 . The working fluid treatment device of claim 1 , wherein the integrated working fluid treatment chamber further includes a third conduit group of heat exchange conduits for heat exchange between the working fluid and a heat exchange fluid.
20 . The working fluid treatment device of claim 1 , wherein the second conduit group is adapted to deliver nitric oxide or a narcotic agent into the blood.
21 . A method of treating a patient during cardiopulmonary bypass surgery using the working fluid treatment device of claim 20 .
22 . The working fluid treatment device of claim 1 , further comprising a single shared fluid exchange medium outlet connected to the exit ends of the first conduit group and the second conduit group in order to receive the spent first fluid exchange media and the spent second fluid exchange media.
23 . The working fluid treatment device of claim 2 , further comprising a single shared fluid exchange medium outlet connected to the exit ends of the first conduit group and the second conduit group in order to receive the spent first fluid exchange media and the spent second fluid exchange media.
24 . The working fluid treatment device of claim 3 , further comprising a single shared fluid exchange medium outlet connected to the exit ends of the first conduit group and the second conduit group in order to receive the spent first fluid exchange media and the spent second fluid exchange media.
25 . The working fluid treatment device of claim 1 , wherein the collective second fluid exchange medium inlet is isolated from the first fluid exchange medium inlet.
26 . A working fluid treatment device for mass transfer between a working fluid and a first fluid exchange medium, and for mass transfer between the same working fluid and a second fluid exchange medium different from the first fluid exchange medium, wherein the working fluid treatment device comprises:
a collective first fluid exchange medium inlet that admits the first fluid exchange medium into the working fluid treatment device;
a collective second fluid exchange medium inlet that is fluidly separate from the first fluid exchange medium inlet, and that admits the second fluid exchange medium into the working fluid treatment device; and
an integrated working fluid treatment chamber, wherein the chamber includes
a working fluid inlet;
a working fluid outlet;
a first conduit group of first mass transfer conduits disposed between the working fluid inlet and the working fluid outlet, the first conduit group having an entry end that receives the first fluid exchange medium into the first conduit group; and an exit end that discharges spent first fluid exchange medium from the first conduit group, wherein the first conduit group performs mass transfer of a first substance with the working fluid when the first fluid exchange medium flows through the first conduit group; and
a second conduit group of second mass transfer conduits disposed between the working fluid inlet and the working fluid outlet, the second conduit group having an entry end that receives the second fluid exchange medium into the second conduit group; and an exit end for discharging spent second fluid exchange medium from the second conduit group, wherein the second conduit group performs mass transfer of a second substance with the working fluid when the second fluid exchange medium flows through the second conduit group;
wherein the first fluid exchange medium inlet is connected to the entry end of the first conduit group in order to collectively convey the first fluid exchange medium into all of the first mass transfer conduits of the first conduit group;
the second fluid exchange medium inlet is connected to the entry end of the second conduit group in order to collectively convey the second fluid exchange medium into all of the second mass transfer conduits of the second conduit group;
the first conduit group and the second conduit group are arranged in the chamber in-between the working fluid inlet and the working fluid outlet so that the working fluid, when travelling from the working fluid inlet into the chamber and then through the chamber and then out of the chamber via the working fluid outlet, flows around the first conduit group of first mass transfer conduits and the second conduit group of second mass transfer conduits;
the working fluid being subjected to mass transfer by both the first conduit group and the second conduit group during a single pass of the working fluid through the chamber;
there is a homogeneous conduit distribution throughout the entire volume of the chamber so that the working fluid flow cross section remains constant throughout the chamber;
the first fluid exchange medium and the first mass transfer conduits of the first conduit group are adapted to oxygenate, decarbonate, or oxygenate and decarbonate the working fluid;
the second fluid exchange medium and the second mass transfer conduits of the second conduit group are adapted to add to or remove from the working fluid one or more further substances other than oxygen, carbon dioxide, or oxygen and carbon dioxide; and
the working fluid treatment device is configured to operate with the first fluid exchange medium as a liquid or as a gas, and the working fluid treatment device is configured to operate with the second fluid exchange medium as a liquid or as a gas.
27 . A working fluid treatment device for mass transfer between a working fluid and a first fluid exchange medium, and for mass transfer between the same working fluid and a second fluid exchange medium different from the first fluid exchange medium, wherein the working fluid treatment device comprises:
a collective first fluid exchange medium inlet that admits the first fluid exchange medium into the working fluid treatment device;
a collective second fluid exchange medium inlet that is fluidly separate from the first fluid exchange medium inlet, and that admits the second fluid exchange medium into the working fluid treatment device; and
an integrated working fluid treatment chamber, wherein the chamber includes
a working fluid inlet;
a working fluid outlet;
a first conduit group of first mass transfer conduits disposed between the working fluid inlet and the working fluid outlet, the first conduit group having an entry end that receives the first fluid exchange medium into the first conduit group; and an exit end that discharges spent first fluid exchange medium from the first conduit group, wherein the first conduit group performs mass transfer of a first substance with the working fluid when the first fluid exchange medium flows through the first conduit group; and
a second conduit group of second mass transfer conduits disposed between the working fluid inlet and the working fluid outlet, the second conduit group having an entry end that receives the second fluid exchange medium into the second conduit group; and an exit end for discharging spent second fluid exchange medium from the second conduit group, wherein the second conduit group performs mass transfer of a second substance with the working fluid when the second fluid exchange medium flows through the second conduit group;
wherein the first fluid exchange medium inlet is connected to the entry end of the first conduit group in order to collectively convey the first fluid exchange medium into all of the first mass transfer conduits of the first conduit group;
the second fluid exchange medium inlet is connected to the entry end of the second conduit group in order to collectively convey the second fluid exchange medium into all of the second mass transfer conduits of the second conduit group;
the first conduit group and the second conduit group are arranged in the chamber in-between the working fluid inlet and the working fluid outlet so that the working fluid, when travelling from the working fluid inlet into the chamber and then through the chamber and then out of the chamber via the working fluid outlet, flows around the first conduit group of first mass transfer conduits and the second conduit group of second mass transfer conduits;
there is a homogeneous conduit distribution throughout the entire volume of the chamber so that the working fluid flow cross section remains constant throughout the chamber;
the first fluid exchange medium and the first mass transfer conduits of the first conduit group are adapted to oxygenate, decarbonate, or oxygenate and decarbonate the working fluid;
the second fluid exchange medium and the second mass transfer conduits of the second conduit group are adapted to add to or remove from the working fluid one or more further substances other than oxygen, carbon dioxide, or oxygen and carbon dioxide;
the working fluid treatment device being configured for extracorporeal blood circulation; and
the working fluid treatment device is configured to operate with the first fluid exchange medium as a liquid or as a gas, and the working fluid treatment device is configured to operate with the second fluid exchange medium as a liquid or as a gas.