IP Library Granted Patent US 9,393,527
Granted Patent B2
US 9,393,527 · App. 14/275,980 · Granted Jul 19, 2016

Membrane separation devices and water treatment plants

Inventors: Wolfgang Neubrand (Kulmbach, DE); Juergen Johann (Nussloch, DE); Swen Beusshausen (Steinen, DE)
Assignee: P & LS Holding GmbH
B01D63/12C02F1/441C02F1/442B01D61/025B01D2311/25B01D2317/022C02F1/42C02F2103/343C02F2103/346C02F2201/003C02F2301/046
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Quick Facts
Patent No.
US 9,393,527
App. No.
14/275,980
Granted
Jul 19, 2016
Kind
B2
Abstract

A membrane separation device that treats water constructed such that at least two permeate streams of different electrical conductivity are generated therein, including at least two membrane modules arranged in a common pressure vessel such that they can be successively subjected to incoming flow of the water to be treated, wherein the pressure vessel is a tube in which the at least two membrane modules are arranged one behind the other in an axial direction and the at least two membrane modules are spirally wound modules.

Claims (2)

1. A plant that treats water comprising at least one membrane separation device constructed such that at least two permeate streams of different electrical conductivity are generated therein and at least one deionization unit having at least one concentrate chamber and at least one diluate chamber, said at least one membrane separation device comprising at least two membrane modules arranged in a common pressure vessel such that they can be successively subjected to incoming flow of the water to be treated, wherein the pressure vessel is a tube in which the at least two membrane modules are arranged one behind the other in an axial direction and the at least two membrane modules are spirally wound modules wherein, in the at least one membrane separation device, at least two membrane modules are arranged to be successively subjected to incoming flow of the water to be treated where the at least two membrane modules each have a separate permeate outflow and further wherein permeate outflow of the membrane module that receives incoming flow first is coupled to the at least one diluate chamber and the permeate outflow of the membrane module that receives incoming flow last is coupled to the at least one concentrate chamber.

2. A plant that treats water comprising at least one membrane separation device constructed such that at least two permeate streams of different electrical conductivity are generated therein and at least one deionization unit having at least one concentrate chamber and at least one diluate chamber, said at least one membrane separation device comprising at least two membrane modules arranged in a common pressure vessel such that they can be successively subjected to incoming flow of the water to be treated, wherein the pressure vessel is a tube in which the at least two membrane modules are arranged one behind the other in an axial direction and the at least two membrane modules are spirally wound modules wherein, in the at least one membrane separation device, at least two membrane modules are arranged to be successively subjected to incoming flow of the water to be treated where the at least two membrane modules each have a separate permeate outflow and further wherein permeate outflow of the membrane module that receives incoming flow first is coupled to the at least one concentrate chamber and the permeate outflow of the membrane module that receives incoming flow last is coupled to the at least one diluate chamber.

Priority Claims (1)
DE 10 2008 057 669 · Nov 11, 2008 · national
Continuity (2)
Division 13126063
Related Publication 20140246368A1 · Sep 4, 2014