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John C Palazzolo2 Channing Pl APT 1R, Yonkers, NY 10709

John Palazzolo Phones & Addresses

2 Channing Pl APT 1R, Eastchester, NY 10709   

141 Highview Ave, Eastchester, NY 10709   

144 Highview Ave, Eastchester, NY 10709   

Yonkers, NY   

Allentown, PA   

Mentions for John C Palazzolo

John Palazzolo resumes & CV records

Resumes

John Palazzolo Photo 39

Sales Representative

Work:

Sales Representative
Education:
University of Michigan - Dearborn
John Palazzolo Photo 40

John Palazzolo

John Palazzolo Photo 41

John Palazzolo

John Palazzolo Photo 42

John Palazzolo

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John Palazzolo

John Palazzolo Photo 44

John Palazzolo

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John Palazzolo

John Palazzolo Photo 46

Computer Networking Professional

Location:
Greater New York City Area
Industry:
Computer Networking
Education:
Briarcliffe 2001 - 2008

Publications & IP owners

Us Patents

Selective Oxy-Fuel Boost Burner System And Method For A Regenerative Furnace

US Patent:
2016034, Dec 1, 2016
Filed:
May 26, 2015
Appl. No.:
14/721297
Inventors:
- Allentown PA, US
Russell James Hewertson - Wescosville PA, US
Anup Vasant Sane - Allentown PA, US
John C. Palazzolo - Eastchester NY, US
Xiaoyi He - Orefield PA, US
Assignee:
AIR PRODUCTS AND CHEMICALS, INC. - Allentown PA
International Classification:
F23L 7/00
F23D 14/32
C21B 9/14
F27D 17/00
Abstract:
An oxy-fuel boost burner for a regenerative furnace having a pair of regenerator ports configured to alternately fire into and exhaust from the furnace, including at least one burner element corresponding to each of the regenerator ports by being positioned to fire into a complimentary region of the furnace, each burner element including a selective distribution nozzle configured to flow a first reactant and a proportional distribution nozzle configured to flow a second reactant, and a controller programmed to identify which regenerator port is currently firing and which is currently exhausting and to independently control the first reactant flow to each selective distribution nozzle such that the at least one burner element corresponding to the currently firing regenerator port has a greater than average first reactant flow and the at least one burner element corresponding to the currently exhausting regenerator port as a less than average first reactant flow.

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