Grantee Research Project Results
NOx Stripping from Spark Ignition Automotive Engine Exhaust
EPA Contract Number: 68D30131Title: NOx Stripping from Spark Ignition Automotive Engine Exhaust
Investigators: Cole, Jerald A.
Small Business: Energy and Environmental Research Corporation (CA)
EPA Contact: Richards, April
Phase: I
Project Period: September 1, 1993 through March 1, 1994
Project Amount: $49,970
RFA: Small Business Innovation Research (SBIR) - Phase I (1993) RFA Text | Recipients Lists
Research Category: SBIR - Air Pollution , Small Business Innovation Research (SBIR) , Air Quality and Air Toxics
Description:
Approximately half of automotive NOx is released in the initial minutes after startup, when the catalytic converter is cold, and is a significant source of acid rain. This project will determine the feasibility of reversibly adsorbing this "cold-Start NOx in a sorbent bed and subsequently releasing the NOx into a three-way catalytic converter to be reduced. This could reduce the environmental NOx burden in many urban areas by as much as 25%. It could also permit the use of "lean-start" engines, which have the added advantage of reducing CO and hydrocarbon emissions. This device would be similar in design to existing catalytic converters.Phase I will address the technical questions needed to determine feasibility. These include determining the capacity of the sorbent, the temperature/partial pressure relationship (adsorption isotherms), the kinetics of NOx adsorption, thermal or chemical deactivation of the adsorbent, and any negative environmental effects. The experiments will be carried out in an isothermal packed bed reactor with on-line instrumental gas analysis. In demonstrating feasibility the Phase I effort will produce a model of sorbent behavior to allow design of a pilot-scale unit for development and evaluation in subsequent Phase II research.
Supplemental Keywords:
Sustainable Industry/Business, RFA, Air, Scientific Discipline, Toxics, Technology for Sustainable Environment, Engineering, Chemistry, HAPS, mobile sources, Engineering, Chemistry, & Physics, tropospheric ozone, VOCs, cleaner production/pollution prevention, air toxics, New/Innovative technologies, vehicle emissions, vehicular exhaust, catalysts, hydrocarbons, catalytic combustion, novel catalyst systems, pollution prevention, auto emissions, emissions, nitrogren oxides (NOx), hydrocarbon, NOx stripping, automotive emission controls, automotive emissions, air emissions, Nitrogen Oxides, Nox, pollutants, adsorbents, catalyst formulations, carbon monoxide, catalyst composition, catalytic oxidative adsorption, sorbents, acid deposition, motor vehicles, vehicular, nitrogen oxides (Nox), automotive, air pollutants, pollution control technologies, Volatile Organic Compounds (VOCs), automotive three way catalysts, air pollution, automobiles, automotive exhaust, air pollution control, carbon monoxide (CO), acid rainProgress and Final Reports:
The perspectives, information and conclusions conveyed in research project abstracts, progress reports, final reports, journal abstracts and journal publications convey the viewpoints of the principal investigator and may not represent the views and policies of ORD and EPA. Conclusions drawn by the principal investigators have not been reviewed by the Agency.