FRACTION COLLECTOR DIVERTER VALVE
A diverter valve assembly includes a standard three-way valve and an upstream two-way valve and a further upstream eluant accumulator. When a new container is required for collection, the two-way valve stops the flow from the source. Since the source flow is continuous, the flow is directed into the accumulator pushing a spring loaded piston. When the new container is in position, the two-way valve opens and eluant flow from the source and the accumulator are directed to the new container. There is no flow to waste during the stoppage of flow.
1 . A diverter apparatus in an eluant flow path to a container, the diverter apparatus comprising:
a two-way valve located in the eluant flow path, the two-way valve having one state where the flow path is blocked and another state where the flow path is open; and
an accumulator accessing the eluant flow path upstream from the two-way vale; wherein when the two-way valve blocks the eluant flow, the eluant flow is directed into the accumulator, and when the two-way valve opens, the eluant flows from the source and from the accumulator to a container.
2 . The diverter valve of claim 1 wherein the accumulator comprises:
a spring loaded piston, wherein the piston is flush with the flow path and presents no added volume to the flow path when the accumulator contains no eluant.
3 . The diverter valve of claim 1 further comprising a three-way valve placed down stream from the two-way valve, the three-way valve having two selected outputs one directed to waste and the other to one of a multi-container array of collection vessels or to a multi-port liquid switching valve to direct flow to a specific collection tubing connection.
4 . The diverter valve of claim 2 wherein the accumulator piston has a center axis that is co-axial with the center axis of the flow path.
5 . A process for diverting an inflowing eluant flow, the process comprising the steps of:
blocking the eluant flow path so that no eluant is flowing to a first container, wherein the eluant is diverted to an accumulator;
accumulating the eluant;
re-placing the first container with a second container.
opening the eluant flow path to the second container; and
delivering eluant flow to the second container partially from the accumulated eluant and partially from the inflowing eluant flow.
6 . The process of claim 5 wherein the accumulating of the eluant comprises the steps of:
driving a piston against a spring, wherein a volume is opened by the moving piston;
diverting the eluant flow into this volume, and
returning the piston to its initial location with a spring, wherein there is no unswept volume in the eluant flow path
7 . The process of claim 5 wherein the accumulator piston has a center axis that is co-axial with a center axis of the flow path.
8 . A process for diverting an eluant flow path to a container, the process comprising the steps of:
stopping the eluant flow to a first container;
replacing the container with a second container;
accumulating the eluant flow, while the flow to the first container is stopped, and, when the second container is in place;
directing flow to the second container; and
releasing volume accumulated during the time the eluant flow is stopped to the first container.