Nova Patents
EP0447350A2

Comprehensive water treatment process.

Abstract

A method is disclosed for the cyclic regeneration of a water softening system comprising an exchange medium in a tank which is in fluid communication with a brine storage tank. This method comprises the steps of filing the brine storage tank with refill No. 2 of softened water in a quantity sufficient to create sufficient brine for said exchange medium, said brine storage tank already containing refill No. 1 of softened water from a later step of the method. The exchange medium is subjected to backwashing No. 1 with water flowing counter the direction of water flowing therethrough during water softening operations. Next, brine from the brine storage tank is passed through the exchange medium. Water then is passed through the brine exchange tank. The exchange medium thereafter is subjected to backwashing No. 2 with water flowing counter to the direction of water flowing therethrough during the water softening operation. Finally, the brine tank is refilled with refill No. 1 of softened water to create brine in a quantity insufficient for completely brining the exchange medium.

EP0447350A2, drawing sheet 1
Sheet 1 of 13

Term

Term ended

Projected expiry passed 14 March 2011, 15.5 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

25 claims: 4 independent, 21 dependent

  1. 1
    In a method for the cyclic regeneration of a water softening system comprising an exchange medium in an exchange medium tank which is in fluid communication with a brine storage tank, which comprises the steps of:(a) filling said brine storage tank with refill No. 2 of softened water in a quantity sufficient to create enough brine for said exchange medium, said brine storage tank already containing refill No. 1 of softened water from a later step of the method;(b) backwashing No. 1 of said exchange medium with water flowing counter to the direction of water flowing therethrough during water softening;(c) passing brine from said brine storage tank through said exchange medium;(d) passing water through said brine exchange medium;(e) backwashing No. 2 of said exchange medium with water flowing counter to the direction of water flowing therethrough during water softening;and(f) refilling said brine tank with refill No. 1 of softened water to create brine in a quantity insufficient to brine said exchange medium.
  2. 12
    In a water softening system of an exchange medium tank, a brine storage tank in fluid communication therewith, and a valve assembly for controlling fluid flow of said system, the improvement wherein said valve assembly comprises:(a) a valve body having a drain port, an inlet water port, a softened water outlet port, an injector port, first and second exchange medium tank ports, and first and second injector pports;(b) a piston valve assembly comprising a piston bearing a first and a second valve, and being disposed within said valve body;a drive assembly connected with said piston for reciprocatingly moving said piston within said valve body for said valves to determine the flow of fluid within said valve body;(c) a flow meter for measuring water passed through said exchange medium tank;(d) an injector assembly having a first port in fluid communication with said valve body first port which provides fluid communication with said valve body softened water outlet port, a second port in fluid communication with said valve body second port which provides fluid communication with said valve body inlet water port, and a brine storage tank port;said injector second port being in fluid communication with said injector second port through a nozzle whereby water flowing from said injector second port to said injector first port through said nozzle creates a pressure reduction in the injector assembly between said injector second port and said brine storage tank port for drawing brine from said brine storage tank to within said injector assembly and out said injector second port;said piston movable from a first position wherein water flows from said valve body inlet port to said second exchange medium tank port, and from said exchange medium tank through said first exchange medium tank port and out said softened water outlet port;to a second position wherein said valves close fluid communication between said valve body inlet water port and said valve body second exchange medium tank port, opens fluid communication between valve body second exchange medium tank port and said valve body drain port, and opens fluid communication between said valve body inlet water port and said first exchange medium tank port and said injector second port for water to backwash said exchange medium tank;to a third position wherein said valves only permit fluid communication between said valve body inlet port and said injector second port for water and brine from said brine storage tank to flow from said injector first port to said valve body first exchange tank port, and from said valve body exchange medium tank second port to the valve body drain port;and reciprocatingly movable back.
  3. 22
    A helix drive for a piston which comprises:(a) a stationary drive axle bearing a longitudinally slotted sleeve;(b) a piston having an apertured end and being disposed within said drive axle sleeve;(c) a transverse pin, having ends fitted with guide shoes, disposed through said piston aperture and located within said axle slot;and(d) a drive gear having a pair of helix paths within which said pin guide shoes are disposed, whereby rotation of said drive gear result in reciprocating longitudinal movement of said pin within said axle slot and, thus, said drive axle.
  4. 23
    A method for operating a system comprising a plurality of water treatment units, N, for the treatment of water flowing therethrough, each unit containing a treatment bed which requires periodic regeneration in order to re-establish its treatment capacity, which comprises the steps of:(a) calculating the volume of water to be treated per cycle, Vs, by dividing the capacity of the smallest capacity unit by N;(b) treating water flowing through all of said units connected in parallel until Vs water has been treated by any of said units;(c) subjecting a unit to regeneration while treating additional water with all remaining units until regeneration is complete;and(d) repeating steps (b) and (c) of the method by sequentially regenerating each unit.