FlexEnergy Inc - Portsmouth, NH since Apr 2013
President
FlexEnergy Inc - Portsmouth, NH Sep 2012 - Apr 2013
Vice President of Operations
FlexEnergy Inc - Portsmouth, NH Feb 2012 - Sep 2012
Group Director, Operations
FlexEnergy Inc - Portsmouth, NH Jan 2011 - Feb 2012
Director of Manufacturing
Ingersoll Rand Energy Systems Dec 2007 - Dec 2010
Operations Manager
Education:
HBS 2013 - 2013
Union College 1993 - 1997
BS, Mechanical Engineering
Interests:
Alternative Energy
Turbomachinery
Research and Development
Mountain Biking
Road Cycling
Mountain Climbing
Indoor Rock Climbing
Fitness
Family
Honor & Awards:
Ingersoll Rand Presidents Award 2009, Safety Innovation Award, Sector Winner
Ingersoll Rand Presidents Award 2008, 2nd Quarter, Dual Citizenship
Name / Title
Company / Classification
Phones & Addresses
Mark Schnepel
AVSC Incorporated Video Production
8521 Hanover Industrial, Columbia, IL 62236 (618)9395533
Mark Schnepel Manager
Rand Ingersoll Energy Systems Business Services Mgmt Consulting Svcs Mfg Aircraft Engine/Part Mfg Fabricated Plate Wrk Coml Physical Research
30 Nh Ave, Portsmouth, NH 03801 (603)4307000
Mark Schnepel President
FlexEnergy Oil & Energy · Electric Services · Mfg Turbines/Generator Sets
30 New Hampshire Ave, Portsmouth, NH 03801 30 Nh Ave, Portsmouth, NH 03801 3003 N Central Ave, Phoenix, AZ 85012 9400 Toledo Way, Irvine, CA 92618 (603)4307000
Described herein are embodiments of systems and methods for oxidizing gases. In some embodiments, a reaction chamber is configured to receive a fuel gas and maintain the gas at a temperature within the reaction chamber that is above an autoignition temperature of the gas. The reaction chamber may also be configured to maintain a reaction temperature within the reaction chamber below a flameout temperature. In some embodiments, heat and product gases from the oxidation process can be used, for example, to drive a turbine, reciprocating engine, and injected back into the reaction chamber.
Described herein are embodiments of systems and methods for oxidizing gases. In some embodiments, a reaction chamber is configured to receive a fuel gas and maintain the gas at a temperature within the reaction chamber that is above an autoignition temperature of the gas. The reaction chamber may also be configured to maintain a reaction temperature within the reaction chamber below a flameout temperature. In some embodiments, heat and product gases from the oxidation process can be used, for example, to drive a turbine, reciprocating engine, and injected back into the reaction chamber.
Youtube
Mt Snow 2017
Event: ESC Mt Snow DH Finals Rider: Mark Schnepel Song: Kill Your Hero...
Duration:
2m 59s
2022 ESC Diamond Hill Enduro - Stage 6 Race Run
Duration:
2m 25s
2022 Highland Friday Night Race Series, Race ...
Trail: Upper Happy Hour to Shillelagh to Jack Rabbit Run to Lower Maid...
Mark Schnepel 1986 graduate of Red Bud High School in Red bud, IL is on Classmates.com. Get caught up with Mark and other high school alumni from Red Bud ...