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Dive into the research topics where John E. Kirwan is active.

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Featured researches published by John E. Kirwan.


SAE transactions | 2003

Engine Performance and Emissions near the Dilute Limit with Hydrogen Enrichment using an On-Board Reforming Strategy

Ather A. Quader; John E. Kirwan; M. James Grieve

This paper describes engine research - which supports our program to develop a gasoline engine management system (EMS) with an on-board reformer to provide near-zero tailpipe emissions. With this approach, the reformer converts gasoline (or another hydrocarbon-containing fuel) into reformate, containing hydrogen and CO. Reformate has very wide combustion limits to enable SI engine operation under very dilute conditions (either ultra-lean or with heavy EGR concentrations). In previous publications, we have presented engine dynamometer results showing very low emissions with bottled reformate. This paper shows the sensitivity of engine emissions and performance to operating near the dilute limit with H 2 enrichment using both bottled reformate and an actual reformer prototype. It discusses the additional advantages of the system for supplemental heating to the passenger compartment and the vision of substantially increasing powertrain efficiency - by using a solid oxide fuel cell (SOFC) APU as the source of reformate.


Archive | 2004

System and method of nox abatement

Joachim Kupe; James Zizelman; Jean J. Botti; Haskell Simpkins; Mark David Hemingway; William J. Labarge; Thomas W. Silvis; John E. Kirwan; Joseph V. Bonadies; Kenneth Price


Archive | 2000

System and controls for near zero cold start tailpipe emissions in internal combustion engines

John E. Kirwan; Malcolm James Grieve; Ather A. Quader


Archive | 2004

Reformer system, a method of producing hydrogen in the reformer system, and a method of using the reformer system

Cher-dip Tan; Jeffrey G. Weissman; Joseph V. Bonadies; John E. Kirwan


Archive | 2002

Method and apparatus for fuel/air preparation in a fuel cell

Kenneth J. Dauer; Michael R. Salemi; Richard F. Nashburn; John E. Kirwan


Archive | 2002

Method for starting a fast light-off catalytic fuel reformer

Michael R. Salemi; Jonathon R. Bennett; Richard F. Nashburn; John E. Kirwan; Ather A. Quader; James Michael Haller


SAE International journal of engines | 2010

3-Cylinder Turbocharged Gasoline Direct Injection: A High Value Solution for Low CO2 and NOx Emissions

John E. Kirwan; Mark A. Shost; Gregory T. Roth; James Zizelman


Archive | 2003

Method of operating a reformer and a vehicle

Jeffrey G. Weissman; John E. Kirwan; Michael James Seino; Michael R. Salemi


SAE 2002 World Congress & Exhibition | 2002

Fast Start-Up On-Board Gasoline Reformer for Near Zero Emissions in Spark-Ignition Engines

John E. Kirwan; Ather A. Quader; M. James Grieve


SAE transactions | 1999

Advanced Engine Management Using On-Board Gasoline Partial Oxidation Reforming for Meeting Super-ULEV (SULEV) Emissions Standards

John E. Kirwan; Ather A. Quader; M. James Grieve

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