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PRECISION COMBUSTION INC

Overview
  • Total Patents
    181
  • GoodIP Patent Rank
    189,930
About

PRECISION COMBUSTION INC has a total of 181 patent applications. Its first patent ever was published in 1994. It filed its patents most often in United States, WIPO (World Intellectual Property Organization) and Canada. Its main competitors in its focus markets thermal processes, environmental technology and chemical engineering are CATALYTICA ENERGY SYS INC, HYDROGENSOURCE LLC and GASTEC NV.

Patent filings per year

Chart showing PRECISION COMBUSTION INCs patent filings per year from 1900 to 2020

Top inventors

# Name Total Patents
#1 Pfefferle William C 111
#2 Roychoudhury Subir 48
#3 Etemad Shahrokh 35
#4 Smith Lance L 25
#5 Castaldi Marco J 16
#6 Strickland Theodore R 14
#7 Karim Md Hasan Ul 13
#8 Sweet E Jack 13
#9 Mastanduno Richard 11
#10 Kraemer Gilbert O 10

Latest patents

Publication Filing date Title
US2014178270A1 Sabatier process and apparatus for controlling exothermic reaction
US2010108305A1 Reducing the energy requirements for the production of heavy oil
US2009139402A1 Regenerative sulfur sorption
CA2616572A1 Method for in-situ combustion of in-place oils
CA2667692A1 Catalytic system for converting liquid fuels into syngas
US2008127553A1 Method and system for vaporization of liquid fuels
US2008078175A1 Catalytic burner apparatus for stirling engine
WO2007098101A2 Onboard reforming of fuel and production of hydrogen
CA2577680A1 Method for sagd recovery of heavy oil
US2007256833A1 Method for in-situ combustion of in-place oils
US2006260814A1 Reducing the energy requirements for the production of heavy oil
US2008098745A1 Method for obtaining ultra-low NOx emissions from gas turbines operating at high turbine inlet temperatures
US2007098604A1 Catalytic reactor for low-Btu fuels
WO2006088475A2 Regenerable adsorption system
US2005250972A1 Isobutane alkylation
US2005245782A1 Isobutane alkylation
US7476367B2 Stacked catalytic reactor
US6973968B2 Method of natural gas production
CA2527948A1 Method for obtaining ultra-low nox emissions from gas turbines operating at high turbine inlet temperatures
AU2003297883A1 Method for oxidative reforming