Positive Displacement Energy Recovery Systems and Methods
The inventive subject matter provides apparatus, systems and methods in which a feed fluid entering a filtration system is mixed with a portion of a reject fluid. The re-introduced reject fluid is preferably pressurized using a positive displacement pump, and more preferably using a work exchange pump having a translatable piston. The re-introduced reject fluid is preferably pressurized to within 10 psi, or more preferably to within 5 psi, of the uncombined feed fluid. The filtration system can have one or more filters.
1 . A filtration system, comprising:
a pump configured to pressurize a feed fluid to produce a first pressurized feed fluid stream;
a first filter configured to receive the first pressurized feed fluid stream, and produce therefrom a permeate stream and a reject stream;
a work exchange energy recovery unit fluidly coupled to the first filter, configured to pressurize a portion of the reject stream to produce a second pressurized feed fluid stream; and
wherein the second pressurized feed fluid stream is mixed with the first pressurized feed fluid stream upstream of the first filter.
2 . The filtration system of claim 1 , wherein the energy recovery unit comprises a positive displacement pump.
3 . The filtration system of claim 1 , wherein the positive displacement pump comprises a cylinder having a translatable piston.
4 . The filtration system of claim 1 , wherein the positive displacement pump is configured to pressurize the second pressurized feed fluid stream to a pressure within 10 psi of the a pressure of the first pressurized feed fluid stream entering the first filter.
5 . The filtration system of claim 1 , wherein the positive displacement pump is configured to pressurize the second pressurized feed fluid stream to a pressure within 5 psi of the a pressure of the first pressurized feed fluid stream entering the first filter.
6 . The filtration system of claim 1 , further comprising a second filter downstream of the first filter, fluidly intermediate between the first filter and the positive displacement pump.
7 . A method of reducing an energy requirement of a filtration system, comprising:
feeding a first pressurized feed fluid stream to an upstream filter;
feeding a reject stream from the first filter to a downstream filter;
using an energy recovery unit to pressurize at least a portion of a reject stream from the downstream to produce a second pressurized feed fluid stream;
feeding the second pressurized feed fluid stream to at least one of the filters.
8 . The method system of claim 7 , wherein the energy recovery unit comprises a positive displacement pump.
9 . The method system of claim 7 , wherein the positive displacement pump comprises a cylinder having a translatable piston.
10 . The method system of claim 7 , wherein the positive displacement pump is configured to pressurize the second pressurized feed fluid stream to a pressure within 10 psi of the a pressure of the first pressurized feed fluid stream entering the first filter.
11 . The method system of claim 7 , wherein the positive displacement pump is configured to pressurize the second pressurized feed fluid stream to a pressure within 5 psi of the a pressure of the first pressurized feed fluid stream entering the first filter.
12 . The method system of claim 7 , further comprising a second filter downstream of the first filter, fluidly intermediate between the first filter and the positive displacement pump.