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Jared N Fern

from The Woodlands, TX
Age ~39

Jared Fern Phones & Addresses

  • 88 N Deerfoot Cir, Spring, TX 77380
  • The Woodlands, TX
  • Houston, TX
  • Riner, VA
  • Louisa, VA
  • Harrisonburg, VA
  • Chicopee, MA

Resumes

Resumes

Jared Fern Photo 1

Pilot Unit Operations Superintendent

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Location:
2634 Tranquil Oaks Ct, Kingwood, TX 77345
Industry:
Chemicals
Work:
Chevron Phillips Chemical Company
Pilot Unit Operations Superintendent

Chevon Phillips Chemical May 2014 - Oct 2017
Process Engineer

Lyondellbasell 2008 - May 2014
Senior Research Engineer

University of Tennessee Aug 2003 - Sep 2007
Research Assistant

University of Tennessee Oct 2006 - Jul 2007
Research Associate
Education:
University of Tennessee, Knoxville 2003 - 2007
Doctorates, Doctor of Philosophy, Chemical Engineering
University of Tennessee, Knoxville 1998 - 2003
Bachelors, Bachelor of Science, Chemical Engineering
Skills:
R&D
Chemical Engineering
Engineering
Design of Experiments
Chemistry
Organic Chemistry
Catalysis
Process Simulation
Distillation
Manufacturing
Polymers
Process Control
Process Optimization
Pilot Plant
Chemical Processing
Laboratory
Petrochemical
Polymer Science
Process Design
Process Engineering
Process Safety
Research
Process Improvement
Hazard Analysis
Aspen Hysys
Hazop
Heterogeneous Catalysis
Organic Synthesis
Polymer Chemistry
Reaction Engineering
Commodity Chemicals
Supervising
Teaching
Coaching
Numerical Analysis
Biofuels
Jared Fern Photo 2

Jared Fern

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Location:
307 Coventry Ln, Minneapolis, MN 55435
Industry:
Medical Devices
Work:
Millar Instruments, Inc. - Houston, Texas since Oct 2008
Mechanical Design Engineer II

Carpenter Technology - Reading, Pennsylvania May 2007 - Aug 2007
Engineering Intern
Education:
Penn State University 2004 - 2008
Bachelor of Science (BS), Mechanical Engineering, Engineering Design
Skills:
Medical Devices
Solidworks
Engineering
Product Development
Validation
Biomedical Engineering
V&V
Product Design
R&D
Mechanical Engineering
Concept Generation
Project Engineering
Project Management
Quality System
Cad
Fda
Capa
Verification
Equipment Qualification
Human Factors Engineering
Technical Documentation
Concept Development
Consumer Products
Prototype
Human Machine Interface
Usability Engineering
Sketching
Industrial Design
Mentoring
Process Qualification
Computer Aided Design
Jared Fern Photo 3

Jared Fern

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Jared Fern Photo 4

Mechanical Design Engineer

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Location:
Houston, Texas Area
Industry:
Medical Devices

Publications

Us Patents

Process Improvements In Selective Ethylene Oligomerizations

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US Patent:
20190375694, Dec 12, 2019
Filed:
Aug 21, 2019
Appl. No.:
16/546579
Inventors:
- The Woodlands TX, US
Orson L. SYDORA - Houston TX, US
Jared T. FERN - Kingwood TX, US
Uriah J. KILGORE - Kingwood TX, US
Steven Ross HUTCHISON - Spring TX, US
Ray RIOS - Cypress TX, US
Eric R. FERNANDEZ - Houston TX, US
International Classification:
C07C 2/36
B01J 31/24
Abstract:
Disclosed are processes, systems, and reaction systems for the oligomerization of ethylene to form an oligomer product in a reaction zone using a catalyst system having i) a chromium component comprising an N-phosphinyl amidine chromium compound complex, an N-phosphinyl formamidine chromium compound complex, an N-phosphinyl guanidine chromium compound complex, or any combination thereof, and ii) an aluminoxane. Ethylene can be contacted with an organic reaction medium to form an ethylene feedstock mixture prior to contact with the catalyst system. The ethylene feedstock mixture can be contacted with the catalyst system inside or outside of the reaction zone.

Fouling Protection For An Oligomerization Reactor Inlet

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US Patent:
20190160448, May 30, 2019
Filed:
Jan 30, 2019
Appl. No.:
16/262164
Inventors:
- The Woodlands TX, US
Orson L. SYDORA - Houston TX, US
Jared T. FERN - Kingwood TX, US
Uriah J. KILGORE - Kingwood TX, US
International Classification:
B01J 19/18
C07C 2/32
B01J 8/00
B01J 19/26
Abstract:
Disclosed herein are systems and processes which prevent fouling of a reactor inlet of an oligomerization reactor. The systems and processes involve placement of an inlet sleeve around at least a portion of a reactor inlet such that a curtain of inert material flows through an annular space coaxially with respect to an outer surface of the end of the reactor inlet and into the reactor.

Oligomerization Reactions Using Aluminoxanes

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US Patent:
20190092709, Mar 28, 2019
Filed:
Sep 28, 2017
Appl. No.:
15/719107
Inventors:
- The Woodlands TX, US
Jared T. FERN - Kingwood TX, US
Uriah J. KILGORE - Kingwood TX, US
Orson L. SYDORA - Houston TX, US
International Classification:
C07C 2/36
B01J 31/24
B01J 31/14
Abstract:
Disclosed are processes for oligomerizing ethylene by contacting a catalyst system, ethylene, and optionally hydrogen to form an oligomer product in a reaction zone, wherein the catalyst system comprises: a chromium component comprising an N-phosphinyl amidine chromium compound complex, an N-phosphinyl formamidine chromium compound complex, and/or an N-phosphinyl guanidine chromium compound complex, and an aluminoxane; wherein the aluminoxane is characterized by 400 MHz proton NMR in which: (a) the ratio of peaks found in the range of −0.86 ppm to −0.74 ppm to peaks found in a range of −0.03 ppm to 0.07 ppm is less than or equal to 2.8:1; (b) the ratio of peaks found in the range of −0.03 ppm to 0.025 ppm to peaks found in a range of 0.025 ppm to 0.07 ppm is less than or equal to 15:1; and/or (c) the ratio of peaks found in a range of −0.86 ppm to −0.78 ppm to peaks found in the range of −0.78 ppm to −0.74 ppm is less than or equal to 6.5:1.

Fouling Protection For An Oligomerization Reactor Inlet

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US Patent:
20180345243, Dec 6, 2018
Filed:
Jun 6, 2017
Appl. No.:
15/615113
Inventors:
- The Woodlands TX, US
Orson L. SYDORA - Houston TX, US
Jared T. FERN - Kingwood TX, US
Uriah J. KILGORE - Kingwood TX, US
International Classification:
B01J 19/18
C07C 2/08
B01J 19/26
B01J 8/00
Abstract:
Disclosed herein are systems and processes which prevent fouling of a reactor inlet of an oligomerization reactor. The systems and processes involve placement of an inlet sleeve around at least a portion of a reactor inlet such that a curtain of inert material flows through an annular space coaxially with respect to an outer surface of the end of the reactor inlet and into the reactor.

Ethylene Oligomerization Catalyst Systems Using Chemically-Treated Solid Oxides

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US Patent:
20170341068, Nov 30, 2017
Filed:
Jun 9, 2017
Appl. No.:
15/618174
Inventors:
- The Woodlands TX, US
Steven R. Hutchison - Spring TX, US
Orson L. Sydora - Houston TX, US
Steven M. Bischof - Humble TX, US
Jared T. Fern - Kingwood TX, US
Max P. McDaniel - Bartlesville OK, US
International Classification:
B01J 31/18
C08F 10/02
C07C 2/32
B01J 31/14
Abstract:
Disclosed herein are catalyst compositions containing a heteroatomic ligand transition metal compound complex, a chemically-treated solid oxide, and an organoaluminum compound. These catalyst compositions can be used in an ethylene oligomerization process to produce a liquid oligomer product containing hexene and octene, as well as a solid polymer product with a molecular weight sufficiently high to permit easy separation of the liquid oligomer product from the solid polymer product.

Process Improvements For Chromium Based Ethylene Oligomerizations

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US Patent:
20170341998, Nov 30, 2017
Filed:
May 27, 2016
Appl. No.:
15/167017
Inventors:
- The Woodlands TX, US
Orson L. SYDORA - Houston TX, US
Jared T. FERN - Kingwood TX, US
Uriah J. KILGORE - Kingwood TX, US
Steven Ross HUTCHISON - Spring TX, US
Ray RIOS - Cypress TX, US
Eric R. FERNANDEZ - Houston TX, US
International Classification:
C07C 2/32
B01J 19/18
B01J 19/24
Abstract:
Disclosed herein are processes, systems, and reaction systems for the oligomerization of ethylene to form an oligomer product in a reaction zone using a catalyst system having i) a chromium component comprising a heteroatomic ligand chromium compound complex of the type disclosed herein, and ii) an aluminoxane. Ethylene can be contacted with an organic reaction medium to form an ethylene feedstock mixture prior to contact with the catalyst system. The ethylene feedstock mixture can be contacted with the catalyst system inside or outside of the reaction zone.

Process Improvements In Selective Ethylene Oligomerizations

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US Patent:
20170342000, Nov 30, 2017
Filed:
May 27, 2016
Appl. No.:
15/166991
Inventors:
- The Woodlands TX, US
Orson L. SYDORA - Houston TX, US
Jared T. FERN - Kingwood TX, US
Uriah J. KILGORE - Kingwood TX, US
Steven Ross HUTCHISON - Spring TX, US
Ray RIOS - Cypress TX, US
Eric R. FERNANDEZ - Houston TX, US
International Classification:
C07C 2/36
B01J 31/24
Abstract:
Disclosed are processes, systems, and reaction systems for the oligomerization of ethylene to form an oligomer product in a reaction zone using a catalyst system having i) a chromium component comprising an N-phosphinyl amidine chromium compound complex, an N-phosphinyl formamidine chromium compound complex, an N-phosphinyl guanidine chromium compound complex, or any combination thereof, and ii) an aluminoxane. Ethylene can be contacted with an organic reaction medium to form an ethylene feedstock mixture prior to contact with the catalyst system. The ethylene feedstock mixture can be contacted with the catalyst system inside or outside of the reaction zone.

Catalyst Stability And Corrosion Prevention In Acetic Acid Production Process

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US Patent:
20170008827, Jan 12, 2017
Filed:
Sep 22, 2016
Appl. No.:
15/272683
Inventors:
- Houston TX, US
Brian A. Salisbury - Houston TX, US
Daniel F. White - Houston TX, US
David L. Ramage - Houston TX, US
Jared T. Fern - Houston TX, US
Assignee:
LyondellBasell Acetyls, LLC - Houston TX
International Classification:
C07C 51/12
B01J 27/20
Abstract:
Processes for producing acetic acid herein generally include contacting methanol and carbon monoxide in the presence of a reaction medium under carbonylation conditions sufficient to form acetic acid, the reaction medium including a carbonylation catalyst selected from rhodium catalysts, iridium catalysts and palladium catalysts; from 1 wt. % to 14 wt. % water; and a plurality of additives, in-situ generated derivatives of the plurality of additives or combinations thereof; the plurality of additives including a first additive including one or more phosphine oxides and a second additive selected from heteropolyacids, metal salts and combinations thereof, the heteropolyacids represented by the formula HMXO, wherein H is hydrogen, M is selected from tungsten and molybdenum, X is selected from phosphorous and silicon and O is oxygen and n is 3 or 4, the metal salts are selected from transition metal salts, lanthanide metal salts and combinations thereof; and recovering acetic acid from the process.
Jared N Fern from The Woodlands, TX, age ~39 Get Report