Systems and Methods for Reducing Fouling in a Filtration System
A filtration system include a vessel and a filter element, a first port through which a feed stream can enter the vessel, a second port through which a reject stream can exit the vessel, and a third port through which a permeate can exit the vessel, and a valve system that can be configured to alternately pass the feed stream into the vessel through the first and second ports.
1 . An improved filtration system having a vessel and a filter element, a first port through which a feed stream can enter the vessel, a second port through which a reject stream can exit the vessel, and a third port through which a permeate can exit the vessel, the improvement comprises a valve system that can be configured to alternately pass the feed stream into the vessel through the first and second ports.
2 . The filtration system of claim 1 , wherein the filter element comprises a nanofiltration membrane.
3 . The filtration system of claim 1 , wherein the filter element comprises a spiral wound membrane.
4 . The filtration system of claim 1 , wherein the vessel is formed about the filter element.
5 . The filtration system of claim 1 , further comprising a pump configured to direct a backflush fluid in a reverse direction through the filter element.
6 . The filtration system of claim 5 , wherein the backflush fluid comprises an amount of the permeate.
7 . The filtration system of claim 1 , wherein the valve system comprises at least one motorized L-diverter valve.
8 . The filtration system of claim 1 , further comprising an energy recovery system that reduces a cost of operating the filtration system.
9 . The filtration system of claim 8 , wherein the energy recovery system comprises a positive displacement pump.
10 . A method of modulating fouling of a filter disposed within a pressure vessel, the filter having an upstream side and a downstream side, comprising:
providing a valve system that can run a first feed fluid past the upstream side of the filter in a first direction, and alternately run a second feed fluid past the upstream side of the filter in a second direction; and
providing a control system configured to operate the valve system to run the first and second feed streams past the upstream side of the filter in the first and second directions, respectively.
11 . The method of claim 10 , wherein the first and second feed streams derive at least in part from a common feed stream source.
12 . The method of claim 10 , further comprising a sensor that provides information to the controller to assist in the controller in automatically operating the valve system.
13 . The method of claim 10 , further comprising the controller operating the valve system to backflush the filter.
14 . The method of claim 10 , further comprising the controller operating the valve system to backflush the filter using a portion of the permeate as a backflush fluid.
15 . The method of claim 10 , further comprising operating an energy recovery system that reduces a cost of operating the filter.
16 . The method of claim 15 , wherein the energy recovery system comprises a positive displacement pump.