Invention Grant
US07306709B2 Spiral electrodeionization device with flow distribution profiling
有权
具有流量分布曲线的螺旋电去离子装置
- Patent Title: Spiral electrodeionization device with flow distribution profiling
- Patent Title (中): 具有流量分布曲线的螺旋电去离子装置
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Application No.: US11292319Application Date: 2005-12-01
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Publication No.: US07306709B2Publication Date: 2007-12-11
- Inventor: Vladimir Grebenyuk , Oleg Grebenyuk , Keith J. Sims , William W. Carson , Russell J. MacDonald , Li Zhang
- Applicant: Vladimir Grebenyuk , Oleg Grebenyuk , Keith J. Sims , William W. Carson , Russell J. MacDonald , Li Zhang
- Applicant Address: US MN Minnetonka
- Assignee: GE Osmonics, Inc.
- Current Assignee: GE Osmonics, Inc.
- Current Assignee Address: US MN Minnetonka
- Agency: Schwegman, Lundberg & Woessner, P.A.
- Main IPC: B01D61/48
- IPC: B01D61/48

Abstract:
EDI apparatus for demineralizing a liquid flow is assembled in a housing having a cylindrical shape, and includes two metal electrodes, and one or more leafs, each leaf comprising a pair of selectively ion-permeable membranes arranged parallel to each other and spaced apart by spacing elements that allow liquid to flow in the interstitial space between membranes, thus forming an arrangement of dilute and concentrate cells in a desired flow configuration. Spacing elements between membranes, as well as between leaves, can be formed of inert polymer material, ion exchange beads, ion exchange fibers, a combination of two or more these elements, or a porous media incorporating one or more of such elements as an intrinsic part. An inner or central electrode and an outer or perimeter electrode establish a generally uniform and radially-oriented electrical or ionic current between the inner and the outer electrodes, across the helical flow spaces defined by the membrane/spacer windings. One or both electrodes may include a pocket, and the adjacent flow cells lie parallel to the electrode and free of shadowing and field inhomogeneity around a full circumference of the electrode. Flow paths within the helical cells are defined by barrier seals, which may form a path-lengthening maze, while unfilled cell regions may disperse or collect flow within a cell and define pressure gradients promote directional flows. Impermeable barriers between membranes further prevent the feed and concentrate flows from mixing. In various embodiments, seals along or between portions of the flow path may define a multi-stage device, may define separate feed and/or concentrate flows for different stages, and/or may direct the feed and concentrate flows along preferred directions which may be co-current, counter-current or cross-current with respect to each other within the apparatus.
Public/Granted literature
- US20060169581A1 Spiral electrodeionization device with flow distribution profiling Public/Granted day:2006-08-03
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