Bruce R Locke, Age 663476 Welwyn Way, Tallahassee, FL 32309

Bruce Locke Phones & Addresses

3476 Welwyn Way, Tallahassee, FL 32309 (850) 562-9013

4108 Zermatt Dr, Tallahassee, FL 32303

Durham, NC

3476 Welwyn Way, Tallahassee, FL 32309

Work

Company: Florida state univ chem engrg Address: 2525 Pottsdamer St, Tallahassee, FL 32310 Phones: (850) 410-6149 Position: Manager Industries: Colleges, Universities, and Professional Schools

Mentions for Bruce R Locke

Career records & work history

Lawyers & Attorneys

Bruce Locke Photo 1

Bruce Locke - Lawyer

Office:
Moss & Locke
Specialties:
Tax Law, Criminal Law, Criminal Defense
ISLN:
905392590
Admitted:
1971
University:
Bowdoin College, B.A., 1968
Law School:
Boston University, J.D., 1971

Medicine Doctors

Bruce Locke Photo 2

Bruce Richard Locke

Specialties:
Surgery
Education:
University of Michigan Medical School (1969)

Bruce Locke resumes & CV records

Resumes

Bruce Locke Photo 36

Department Chair, Department Of Chemical And Biomedical Engineering

Location:
Tallahassee, FL
Industry:
Chemicals
Work:
Famu-Fsu College of Engineering
Department Chair, Department of Chemical and Biomedical Engineering
Florida State University Nov 2012 - Jul 2018
Associate Vice President For Academic Affairs Academic Space University Compacts
Institute of Plasma Physics As Cr, Prague Sep 2017 - Jun 2018
Fulbright Scholar
Famu-Fsu College of Engineering Aug 2015 - Jul 2016
Interim Dean
Florida State University Aug 2015 - Jul 2016
Associate Provost, Florida State University and Professor of Chemical and Biomedical Engineering
Rti International Aug 1982 - May 1986
Research Engineer
Education:
North Carolina State University 1986 - 1989
Doctorates, Doctor of Philosophy, Chemical Engineering
University of Houston 1980 - 1982
Master of Science, Masters, Chemical Engineering
Vanderbilt University 1976 - 1980
Bachelor of Engineering, Bachelors, Chemical Engineering, Engineering
Skills:
Chemical Engineering, Research, Matlab, Engineering, Mathematical Modeling, Simulations, Teaching, Data Analysis, Heat Transfer, Nanotechnology, Statistics, Reaction Engineering, Spectroscopy, R&D, Materials Science, Characterization, Science, Chemistry, Biomedical Engineering, Comsol, Monte Carlo Simulation
Interests:
Plasma Reaction Engineering
Gas Liquid Reactions
Metabolic Engineering In Muscle
Non Thermal Plasma
Generation of Hydrogen Peroxide
Bioengineering and Metabolic Control
Bruce Locke Photo 37

Bruce Locke

Bruce Locke Photo 38

Bruce Locke

Bruce Locke Photo 39

Bruce Locke

Publications & IP owners

Wikipedia

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Bruce Locke

Bruce Asato Locke is an American actor born and raised in Oregon. Locke is not a martial artist and yet is known for some of the action characters he has portrayed.

Us Patents

Methods Of Oxidizing Organic Contaminants In Aqueous Mediums Using Corona Induced Reactions

US Patent:
6491797, Dec 10, 2002
Filed:
Jun 5, 1995
Appl. No.:
08/461238
Inventors:
Bruce R. Locke - Tallahassee FL
Amit K. Sharma - Richland WA
Wright C. Finney - Tallahassee FL
Pedro G. Arce - Tallahassee FL
Assignee:
Florida State University - Tallahassee FL
International Classification:
C07B 6300
US Classification:
2041582, 20415821, 204165, 588212, 588227, 210748
Abstract:
A method for oxidizing an organic contaminant in an aqueous medium generates H O in the aqueous medium through the use of a corona discharge procedure. A quantity of hydroxyl radicals is generated from the H O. An organic contaminant is oxidized in the aqueous medium by reacting the hydroxyl radicals with the organic contaminant, the oxidation being enhanced by methods for facilitating the generation of hydroxyl radicals.

Accelerated Methods Of Oxidizing Organic Contaminants In Aqueous Mediums Using Corona Induced Reactions And Particles Therewith

US Patent:
6695953, Feb 24, 2004
Filed:
Apr 6, 1995
Appl. No.:
08/416393
Inventors:
Bruce R. Locke - Tallahassee FL
Wright C. Finney - Tallahassee FL
David R. Grymonpre - Indianapolis IN
Assignee:
Florida State University - Tallahassee FL
International Classification:
C07C 100
US Classification:
20415715, 2041582, 20415821, 588212, 588227, 110346, 210748
Abstract:
Novel accelerated methods involving corona discharge, and preferably pulsed streamer high voltage corona discharge, in combination with an effective amount of suitable particles to break down organic contaminants, such as phenol and phenol red, in aqueous mediums are disclosed. More particularly, it has been discovered that the addition of an effective amount of suitable particles to the aqueous phase of a corona reactor greatly affects the properties of the corona discharge, i. e. , streamer length, intensity, number of streamers and sparkover voltage, thereby significantly increasing the breakdown voltage (i. e. , the maximum voltage prior to sparkover), so that the removal of organic contaminants may be accelerated, since the production of hydroxyl radicals, aqueous electrons and hydrogen peroxide increases with increases in the applied discharge voltage. As a result, it has been discovered that the addition of such particles to the fluid in the corona reactor leads to a decrease in exposure time and increase in efficiency. The methods may be practiced in a corona reactor containing a grounded plane electrode suspended above a hollow needle point electrode connected to a high voltage rotating spark gap pulsed power supply.

Pulsed Gliding Arc Electrical Discharge Reactors

US Patent:
7919053, Apr 5, 2011
Filed:
May 17, 2007
Appl. No.:
11/749945
Inventors:
Radu Burlica - Iasi, RO
Bruce R. Locke - Tallahassee FL, US
International Classification:
B01J 19/08
US Classification:
42218621, 588301, 204178
Abstract:
A pulsed gliding arc discharge (PGD) reactor includes an ignition coil driven by a pulse generator which is connected to a pair of divergent electrodes fixed by a reactor housing with a fluid inlet and outlet. Hydrogen peroxide and dye degradation can be carried out with a PGD reactor according to the invention with efficiencies that are more than two orders of magnitude greater than a conventional ACG reactor based on the calculated specific energy yield.

Gliding Arc Electrical Discharge Reactors With Improved Nozzle Configuration

US Patent:
8444924, May 21, 2013
Filed:
Jun 3, 2009
Appl. No.:
12/477386
Inventors:
Radu Burlica - Iasi, RO
Bruce Locke - Tallahassee FL, US
Assignee:
Florida State University Research Foundation, Inc. - Tallahassee FL
International Classification:
B01J 19/08
US Classification:
42218623
Abstract:
A plasma gliding arc discharge reactor is described. The reactor may include a housing having a plurality of divergent electrodes, a power supply connected to the electrodes, which delivers pulsed power to the reactor, and a nozzle that directs a mixture of a carrier gas and a liquid to a region between the divergent electrodes, thereby generating plasma in the region. The nozzle can include a first inlet for receiving the carrier gas, a second inlet for receiving the liquid and a mixing chamber that is configured to mix the carrier gas and the liquid prior to being directed to the region.

Hybrid Electrical Discharge Reactors And The Use Of Zeolites To Enhance The Degradation Of Contaminants

US Patent:
2005001, Jan 20, 2005
Filed:
Jul 15, 2003
Appl. No.:
10/620007
Inventors:
Bruce Locke - Tallahassee FL, US
Austin Appleton - West Point NY, US
Pavel Sunka - Prague, CZ
Natalija Koprivanac - Zagreb, HR
Hrvoje Kusic - Samobor, HR
International Classification:
H05F003/00
B01J019/08
US Classification:
204164000, 422186040
Abstract:
A multi-phase hybrid reactor provides simultaneous gas and liquid phase high voltage electrical discharges that provide highly reactive species that destroy contaminants as in both gas and liquid phase. Catalytic particles, including various types of zeolites, can further enhance the rate of contaminant degradation.

Plasma Activated Water Production With Membrane Concentration

US Patent:
2022033, Oct 20, 2022
Filed:
Apr 1, 2022
Appl. No.:
17/711798
Inventors:
- Tallahassee FL, US
Bruce R. Locke - Tallahassee FL, US
International Classification:
C02F 1/44
B01D 71/30
B01D 69/12
B01D 71/02
C02F 1/469
Abstract:
A plasma activated water production system includes a plasma reactor and a membrane concentrator. The plasma reactor includes an internal cavity, at least one electrically-conductive inlet capillary and outlet capillary. A mixing chamber has a feed gas inlet, a liquid inlet, and a mixed gas and liquid outlet. A power source is provided. The plasma reactor propagates a plasma discharge between the inlet capillary and the outlet capillary. A membrane concentrator includes a water flow channel with a water inlet and a water outlet, a dry gas inlet and a humidified gas outlet. An ion selective membrane is provided, and water will pass through the membrane into the dry gas, and the water leaving the membrane concentrator will have increased concentrations of nitrates, nitrites and hydrogen peroxide. An electrodialysis embodiment and a method of generating plasma activated with increased concentration of nitrates, nitrites and hydrogen peroxide are also disclosed.

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