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Richard C Reisig, 503314 Tennyson St NW, Washington, DC 20015

Richard Reisig Phones & Addresses

3314 Tennyson St NW, Washington, DC 20015    202-2440142   

Annapolis, MD   

Jarrettsville, MD   

615 Henry St, Alexandria, VA 22314    703-6830111   

4 W Oak St, Alexandria, VA 22301    703-6830111   

Indialantic, FL   

Milwaukee, WI   

Mentions for Richard C Reisig

Career records & work history

License Records

Richard Reisig

Licenses:
License #: 131 - Expired
Category: Nursing Home Administrator
Issued Date: Apr 4, 1980
Expiration Date: Jan 31, 1983

Richard Craig Reisig

Licenses:
License #: 39 - Expired
Category: Nursing Home Administration
Issued Date: Jul 15, 1992
Expiration Date: Jul 15, 1998
Type: NHA Preceptor

Richard Craig Reisig

Licenses:
License #: 1290 - Expired
Category: Nursing Home Administration
Issued Date: Jun 3, 1980
Effective Date: Feb 18, 1993
Type: Nursing Home Administrator

Richard Reisig resumes & CV records

Resumes

Richard Reisig Photo 18

Delivery Driver

Location:
Wixom, MI
Industry:
Political Organization
Work:
Doordash
Delivery Driver
Uber
Driver
Kmart Corporation
Retired
Richard Reisig Photo 19

Managing Director

Location:
Washington, DC
Work:
Siemens
Managing Director
Richard Reisig Photo 20

Richard C Reisig

Location:
Washington, DC
Industry:
Government Relations
Skills:
Government Relations
Richard Reisig Photo 21

Richard Reisig

Location:
United States

Publications & IP owners

Us Patents

Sugar Beet Membrane Filtration Process

US Patent:
6440222, Aug 27, 2002
Filed:
Jul 18, 2000
Appl. No.:
09/618831
Inventors:
Michael Donovan - Great Dunmow, GB
Robert P. Jansen - Chevy Chase MD
Richard C. Reisig - Scottsbluff NE
Marc Hlavacek - London, GB
Gordon Walker - Reading, GB
John C. Williams - Wokingham, GB
Assignee:
Tate Lyle Industries, Limited - London
Tate Lyle, Inc. - Decatur IL
International Classification:
C13D 108
US Classification:
127 55, 127 43, 127 462, 127 48, 127 52, 127 54, 127 56
Abstract:
A process for producing sugar from beets includes the step of filtering a sucrose-containing feed juice, which has been obtained from macerated sugar beets, through a first ultrafiltration membrane that has a first molecular weight cutoff. This ultrafiltration step produces a first ultrafiltration permeate and a first ultrafiltration retentate. The first ultrafiltration permeate is filtered through a second ultrafiltration membrane that has a second molecular weight cutoff that is lower than the first molecular weight cutoff. This second ultrafiltration step produces a second ultrafiltration permeate and a second ultrafiltration retentate. The second ultrafiltration permeate is nanofiltered through a nanofiltration membrane, thereby producing a nanofiltration permeate and a nanofiltration retentate. The nanofiltration retentate has a higher concentration of sucrose on a dry solids basis than the feed juice in step (a), and can be used in evaporation and crystallization operations to produce crystals of white sugar. The process can optionally include ion exchange and/or electrodialysis purification steps, prior to or after the nanofiltration step.

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