Method and apparatus for filtration of lime-treated water
11286173 · 2022-03-29
Assignee
Inventors
Cpc classification
C02F2103/18
CHEMISTRY; METALLURGY
C02F2103/007
CHEMISTRY; METALLURGY
B01D21/2405
PERFORMING OPERATIONS; TRANSPORTING
B01D21/2488
PERFORMING OPERATIONS; TRANSPORTING
B01D21/2444
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A method and apparatus is provided for water filtration of a milk of lime solution that contains water, impurities, and grit particles, in which the milk of lime solution enters a vessel, and wherein turbulence is created in the vessel, by which larger grit particles settle out of the milk of lime solution, to form a bed of grit particles in the lower end of the vessel, such that grit particles and impurities are filtered from the lime-treated water that comprises a milk of lime solution, with water then being drawn off, that may be discharged out one or more dosing locations and/or recycled back for further filtration, as may be desired.
Claims
1. A water filtration apparatus for treating a milk of lime solution (MOLS) that contains water, impurities and grit particles, comprising: (a) means for delivering the MOLS to a treatment vessel having an upper end and lower end in the form of a generally funnel-shaped structure with a generally vertically disposed cylindrical-shaped enclosure; (b) means for creating a turbulence in the vessel to cause larger grit particles in the MOLS to settle out of the MOLS and form a bed of larger grit particles in the lower end of the vessel; (c) means for continuing the delivery of MOLS through the vessel and through the bed of larger grit particles of clause (b) to filter out smaller grit particles and impurities from the MOLS at the lower end of the vessel while creating turbulence in the vessel so that water from the MOLS that has smaller grit particles and impurities filtered therefrom rises to the upper end of the vessel; (d) means for drawing off the filtered water from the upper end of the vessel.
2. The apparatus of claim 1, including means for recycling the filtered water via the means of clauses (a) through (c) of claim 1 until water is filtered to remove the smaller grit particles and impurities from the water of the MOLS.
3. The apparatus of claim 1, wherein the cylindrical-shaped enclosure has an upper end and a lower end and is open at the upper and lower ends and including a MOLS-supplying conduit terminating between a pair of baffle plates for creating turbulence in the MOLS discharged from the MOLS-supplying conduit for accumulating larger grit particles in the generally cylindrical-shaped enclosure, and with the turbulence being in the generally cylindrical-shaped enclosure.
4. The apparatus of claim 3, including means for discharging grit particles from the MOLS through the lower end of the cylindrical-shaped enclosure and outwardly of the lower end of the funnel-shaped structure.
5. The apparatus of claim 3, wherein the vessel is provided with a catch basin for receiving filtered water from the upper end of the vessel.
6. The apparatus of claim 5, including at least one dosing station for discharge of filtered water and a conduit line for supplying the filtered water from any of the upper end of the vessel and the catch basin to the at least one dosing station.
7. The apparatus of claim 1, including at least one openable valve at an at least one dosing station for delivery of filtered water therefrom.
8. The apparatus of claim 2, including at least one dosing station for discharge of filtered water and means supplying filtered water from the vessel to the at least one dosing station.
9. The apparatus of claim 6, including a residence tank means for collecting filtered water from any of the upper end of the vessel and the catch basin prior to providing the filtered water to the at least one dosing station.
10. The apparatus of claim 4, wherein the means for discharging includes means for direct discharging of grit particles to a gravity operative grit classifier directly connected to the lower end of the funnel-shaped structure.
11. The apparatus of claim 4, wherein the means for discharging includes means for discharging of grit particles to a gravity operative grit classifier remotely connected to the lower end of the funnel-shaped structure.
12. The apparatus of claim 11, including a residence tank means for collecting filtered water from any of the upper end of the vessel and catch basin prior to providing the filtered water to the at least one dosing station, including means for supplying filtered water from the grit classifier to the residence tank.
13. The apparatus of claim 3, including means for maintaining a level of filtered water at the upper end of the generally funnel-shaped structure to provide a supply of filtered water to be drawn off by the means for drawing off the filtered water from the upper end of the vessel.
14. The apparatus of claim 4, further including means for recycling the filtered water via: (a) the means for delivering the MOLS to a treatment vessel having upper and lower ends; (b) the means for creating a turbulence in the vessel to cause larger grit particles in the MOLS to settle out of the MOLS and form a bed of larger grit particles in a lower end of the vessel; (c) the means for continuing the delivery of MOLS through the vessel and through the bed of larger grit particles of clause (b) to filter out smaller grit particles and impurities from the MOLS at the lower end of the vessel while creating turbulence in the vessel so that water from the MOLS that has smaller grit particles and impurities filtered therefrom rises to an upper end of the vessel; until water is filtered to remove the smaller grit particles and impurities from the water of the MOLS; wherein the vessel is provided with a catch basin for receiving filtered water from the upper end of the vessel, including at least one dosing station for discharge of filtered water and means for supplying the filtered water from any of the upper end of the vessel and the catch basin to the at least one dosing station, is operative, including means for opening at least one openable valve at the at least one dosing station for delivery of filtered water therefrom, including residence tank means for collecting filtered water from any of the upper end of the vessel and catch basin prior to providing the filtered water to the at least one dosing station, wherein the means for discharging includes means for discharging of grit particles to a gravity operative grit classifier connected to the lower end of the funnel-shaped structure, and including means for maintaining a level of filtered water at the upper end of the generally funnel-shaped structure to provide a supply of filtered water to be drawn off by the means for drawing off the filtered water from the upper end of the vessel.
Description
BRIEF DESCRIPTIONS OF THE DRAWINGS FIGURES
(1)
(2)
(3)
(4)
DETAILED DESCRIPTIONS OF THE PREFERRED EMBODIMENTS
(5) Referring now to the drawings in detail, reference is first made to
(6) The conduit 13 has a vertical portion that terminates at 21, inside a generally cylindrical enclosure 22 disposed suspended by appropriate radial brackets inside the funnel-shaped portion 15 of the vessel 14, as a suspended bed scrubber.
(7) With reference now to
(8) This settling-out of grit forms a grit bed 30 in the funnel-shaped portion 15 of the vessel 14.
(9) Continued entry of MOLS via conduit 13 enables the grit bed to occupy a substantial portion of the funnel-shaped portion 15 of the vessel 14, especially inside the generally cylindrical enclosure 22, as shown. With continued inflow of MOLS into the cylindrical shaped enclosure 22, and against the lower and upper baffles 23, 26 causes the grit, which initially is larger grit particles, to filter out other, often smaller grit particles, and other impurities, such that water at the upper end 31 of the funnel-shaped portion 15 of the enclosure 14 is substantially free of grit particles and impurities and passes over the upper end of the cylindrical enclosure 22 as shown by the arrows 33, such that a water level 32 is maintained, with overflow passing outwardly through exit ports 34 as shown by the arrows 35 into a cylindrical or ring-like catch basin 36 disposed outside of, and around the upper end of the funnel-shaped portion 15 of the vessel 14, as shown.
(10) Accumulated water in the catch basin 36 passes out discharge conduit 37 via gravity, preferably, into residence tank 38. It will be understood that, depending upon the placement of components of the system, if desired, a pump could be used in discharge line 37, if gravity flow is not used.
(11) The residence tank 38 may be provided with a mixer 40, motor driven at 41, as shown, and may hold water discharged from the catch basin 36.
(12) The discharge from the residence tank 38 may be out discharge line 42, being pumped by a pump 43 to a dosing station 44, from which purified, filtered water may be drawn off, if desired, as will be described hereinafter, or alternatively may not be drawn off, but may be delivered via conduit 45, back into inlet conduit 13, to be recycled one or more times, as may be desired.
(13) In the event that the liquid level 32 in the vessel 11 drops below the outlet ports 34, and if it is desired to raise the level of liquid within the vessel 14 to permit water to flow into the catch basin 36, the conical plug 29 may be lowered manually by turning the operating handle 19, which is in threaded engagement at 39 with the top 20 of the vessel 14, to lower the plug 29 from its full line position illustrated in
(14) With reference to
(15) At dosing station 44, there are illustrated 5 dosing locations 45, 46, 47, 48 and 50, although it will be understood that a greater or fewer number of such locations may be provided, as may be desired.
(16) Each of the dosing locations has a conduit line 51, a valve 52, an optional grit trap 53, a magnetic flowmeter 54 and a metering pump 55, such that when one desires to discharge water at a dosing location, such as that 45, the valve 52 would be opened, allowing water flow through the grit trap 53, through the magnetic flowmeter 54, to be pumped out location 45, for example, by metering pump 55.
(17) In the illustration of
(18) It will be seen that grit and impurities may pass out the lower end 16 of the funnel-shaped portion 15 of the vessel 14, and enter into a grit classifier. In the embodiment of
(19) For cleanout purposes a normally closed liquid discharge line 66 may be provided at the lower end 16 of the vessel 14, valve-operated at 67, as shown.
(20) It will thus be understood that during the course of operating, grit may build up in the funnel-shaped vessel, as described above, and that the gravity-operative grit classifier 60 may be either continually, or periodically operated, as need be, to maintain the grit accumulation within the vessel 14 at a desired level for continued filtration of grit particles and impurities from the MOLS. If desired, a grit level sensor (not shown) may be provided in the vessel 14, which can periodically operate the drive motor 62 for the gravity-operative grit classifier 60, when grit accumulation in the vessel 14 reaches a predetermined level. Alternatively, the grit classifier can be continuously operated, as may be desired.
(21) Referring now to
(22) It will be apparent from the foregoing that various modifications may be made in the detailed description of the equipment of this invention, all within the spirit and scope of the invention as defined in the appended claims.