Claims
- 1. Apparatus for the treatment of liquids comprising:(a) a housing having a liquid inlet and a liquid outlet that are separated from each other by porous web material; (b) a tangential feed channel in said housing formed between said inlet and said porous web material and closed on one end; (c) a tangential discharge channel formed between said outlet and said porous web material and closed on one end; (d) said feed and discharge channels each containing a permeable support structure, and each having a channel length L, a width bk and a height hk; (e) said porous web material having a channel length L, a width bk and a predetermined height hm; and further characterized in that said channel length L has a value such that the dimensionless resistance parameter A=L(Rk/2Rm)½ lies in a range from 0.08 to 0.8 wherein Rk is the hydraulic channel resistance of said permeable support structure of width bk, length s and height hk and is defined as Rk=ΔPkbk/QkS; ΔPk is the pressure differential applied between the upstream and downstream sides of said permeable support structure; Qk represents the amount of flowing liquid with a viscosity of 1 cP that flows per minute through the sample of said permeable support structure in its longitudinal direction; Rm is the hydraulic channel resistance of said porous web material of width bk length s and height hm and is defined as Rm=ΔPmbks/Qm; and wherein ΔPm is the pressure differential applied between the upstream and downstream sides of said porous web material; and Qm is the amount of flowing liquid with a viscosity of 1 cP that flows per minute through the sample of said porous web material in a direction perpendicular thereto.
- 2. The apparatus of claim 1 wherein L has a value such that said dimensionless resistance parameter A is from 0.1 to 0.2.
- 3. The apparatus of claim 1 wherein said feed and discharge channels have the same volume.
- 4. The apparatus of claim 1 wherein said porous web material comprises at least one layer of a flat web material.
- 5. A method for dimensioning an apparatus for the treatment of liquids wherein said apparatus comprises:(a) a housing having a liquid inlet and a liquid outlet that are separated from each other by a porous web material; (b) a tangential feed channel in said housing formed between said inlet and said porous web material and closed on one end; (c) a tangential discharge channel formed between said outlet and said porous web material and closed on one end; (d) said feed and discharge channels each containing a permeable support structure, and each having a channel length L, a width bk and a height hk; (e) said porous web material having a channel length L, a width bk and a predetermined height hm; and further characterized in that said channel length L has a value such that the dimensionless resistance parameter A=L(Rk/2Rm)½ lies in a range from 0.08 to 0.8 wherein Rk is the hydraulic channel resistance of said permeable support structure of width bk, length s and height hk and is defined as Rk=ΔPkbk/Qks wherein ΔPk is the pressure differential applied between the upstream and downstream sides of said permeable support structure; Qk represents the amount of flowing liquid with a viscosity of 1 cP that flows per minute through the sample of said permeable support structure in its longitudinal direction; Rm is the hydraulic channel resistance of said porous web material of width bk, length s and height hm and is defined as Rm=ΔPmbks/Qm; and wherein ΔPm is the pressure differential applied between the upstream and downstream sides of said porous web material; and Qm is the amount of flowing liquid with a viscosity of 1 cP that flows per minute through the sample of said porous web material in a direction perpendicular thereto; said method comprising the following steps: (1) preparing a three-dimensional sample of said permeable support structure having a width bk, a length s and a height hk; (2) measuring the amount of liquid Qk with a viscosity of 1 cP that flows per minute through said sample of said permeable support structure in its longitudinal direction when a pressure differential ΔPk is applied between its downstream sides; (3) calculating a hydraulic channel resistance Rk of said support structure with the equation Rk=ΔPkbk/Qks; (4) preparing a three-dimensional sample of said porous web material having a width bk, a length s and a height hm; (5) measuring the amount of liquid Qm with a viscosity of 1 cP that flows per minute through said sample of porous web material perpendicular thereto when a pressure differential ΔPm is applied between its upstream and downstream sides; (6) calculating a hydraulic channel resistance Rm of said porous web material with the equation Rm=ΔPmbks/Qm; and (7) selecting the channel length L of said feed and discharge channels and of said porous web material, such that the dimensionless resistance parameter defined by A=L(Rk/2Rm)½ lies in a range from 0.08 to 0.8.
- 6. The method of claim 5 wherein L is selected such that said dimensionless resistance parameter A is from 0.1 to 0.2.
Parent Case Info
The priority of application Ser. No. PCT/EP 98/01426 filed Mar. 12, 1998 is claimed pursuant to 35 USC §120, as well as that of application Ser. No. DE 19711186.6 Mar. 18, 1997 pursuant to 35 USC §§119(a) and 365(b) is claimed.
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