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Honda Develops Next-Generation Clean Diesel Engine Capable of Meeting Stringent Tier II Bin 5 Emissions Requirements in the U.S.


Tokyo, Japan, Sept 25, 2006 - (JCN JCN Japan Corporate News
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JCN joint communications network (US DoD) 
 Newswire) - Honda Motor Co., Ltd., announced it has developed a next-generation diesel engine that reduces exhaust gas Exhaust gas is flue gas which occurs as a result of the combustion of fuels such as natural gas, gasoline/petrol, diesel, fuel oil or coal. It is discharged into the atmosphere through an exhaust pipe or flue gas stack.  emissions to a level equal to a gasoline engine gasoline engine: see internal-combustion engine.
gasoline engine

Most widely used form of internal-combustion engine, found in most automobiles and many other vehicles.
. Honda's next-generation diesel engine employs a revolutionary NOx catalytic converter that enables a great reduction in NOx emissions sufficient to meet stringent U.S. Environmental Protection Agency Environmental Protection Agency (EPA), independent agency of the U.S. government, with headquarters in Washington, D.C. It was established in 1970 to reduce and control air and water pollution, noise pollution, and radiation and to ensure the safe handling and  (EPA EPA eicosapentaenoic acid.

EPA
abbr.
eicosapentaenoic acid


EPA,
n.pr See acid, eicosapentaenoic.

EPA,
n.
) Tier II Bin 5 emissions requirements (based on Honda's internal calculations). This catalytic converter features the world's first innovative system using the reductive re·duc·tive  
adj.
1. Of or relating to reduction.

2. Relating to, being an instance of, or exhibiting reductionism.

3. Relating to or being an instance of reductivism.
 reaction of ammonia generated within the catalytic converter to "detoxify de·tox·i·fy
v.
1. To counteract or destroy the toxic properties of a substance.

2. To remove the effects of poison from something, such as the blood.

3.
" nitrogen oxide (NOx) by turning it into harmless nitrogen (N2).

The new catalytic converter utilizes a two-layer structure: one layer adsorbs NOx from the exhaust gas and converts a portion of it into ammonia, while the other layer adsorbs the resulting ammonia, and uses it later in a reaction that converts the remaining NOx in the exhaust into nitrogen (N2). Ammonia is a highly effective reagent for reducing NOx into N2 in an oxygen-rich, lean-burn atmosphere. This ability to generate and store ammonia within the catalytic converter has enabled Honda to create a compact, lightweight NOx reduction system for diesel engines. The system also features enhanced NOx reduction performance at 200 - 300C, the main temperature range of diesel engines.

Honda designed the catalytic converter for use with its 2.2 i-CTDi diesel engine, which has earned widespread praise for quiet, clean operation and dynamic performance since its introduction in 2003 on the European Accord model. By further advancing combustion control, the 2.2 i-CTDi delivers cleaner exhaust to the NOx catalytic converter. Honda achieved this by optimizing the combustion chamber configuration, reducing fuel injection time with a 2,000-bar common rail injection system and boosting the efficiency of the EGR EGR Engineering
EGR Exhaust Gas Recirculation
EGR Engineer
EGR Early Growth Response
EGR Extra Grace Required
EGR Enhanced Gas Recovery
EGR Embedded GPS Receiver
EGR Emergency Generator Room
 (exhaust gas recirculation “EGR” redirects here. For other uses, see EGR (disambiguation).
Exhaust gas recirculation (EGR) is a NOx (nitrogen oxide and nitrogen dioxide) reduction technique used in most gasoline and diesel engines.
) system. Thanks to these improvements, Honda has reduced the amount of NOx and soot normally found in engine exhaust, while increasing power output.

Along with developing superior technology for cleaning exhaust gas, Honda plans to address other technical challenges in developing clean diesel engines, such as handling diesel fuels with different cetane numbers and meeting U.S. On-Board Diagnostic System requirements. Honda plans to introduce its next-generation diesel engine in the U.S. within three years.

Gasoline engines presently employ three-way catalytic converters that offer NOx reduction rates as high as 99%, but this performance is possible only at the stoichiometric stoi·chi·om·e·try  
n.
1. Calculation of the quantities of reactants and products in a chemical reaction.

2. The quantitative relationship between reactants and products in a chemical reaction.
 air-fuel ratio. In the oxygen-rich environment of a lean-burn diesel engine, three-way catalytic converters only reduce NOx levels by approximately 10%. Honda's new catalytic converter efficiently reduces NOx in a lean-burn atmosphere, enabling diesel engines to rival gasoline engines in cleanliness. The compact system is also easy to install in passenger vehicles.

About Honda Motor Co., Ltd.

Honda Motor Co., Ltd. (TSE See Tokyo Stock Exchange.

TSE

1. See Tokyo Stock Exchange (TSE).

2. See Toronto Stock Exchange (TSE).
:7267/NYSE:HMC/LSE:HNDA.L) is one of the leading manufacturers of automobiles and power products and the largest manufacture of motorcycles in the world. Honda has always sought to provide genuine satisfaction to people worldwide. The result is more than 120 manufacturing facilities in 30 countries worldwide, producing a wide range of products, including motorcycles, ATVs, generators, marine engines, lawn and garden equipment and automobiles that bring the company into contact with over 19 million customers annually. For more information, please visit http://world.honda.com.

Source: Honda Motor Co., Ltd.

Contact:
Honda Motor Co., Ltd.
Media Inquiries
Tel: +81-3-5412-1512
E-mail: corporate_pr@hm.honda.co.jp


Copyright [c] 2006 JCN Newswire. All rights reserved. A division of Japan Corporate News Network K.K.
COPYRIGHT 2006 Japan Corporate News Network K.K.
No portion of this article can be reproduced without the express written permission from the copyright holder.
Copyright 2006, Gale Group. All rights reserved. Gale Group is a Thomson Corporation Company.

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Publication:JCN Newswires
Date:Sep 25, 2006
Words:585
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