Effect of Fuel Composition and Exhaust Oxidation Catalyst on Performance and Emissions of a Lean-burn Natural Gas Engine

Effect of Fuel Composition and Exhaust Oxidation Catalyst on Performance and Emissions of a Lean-burn Natural Gas Engine PDF Author: Anthony W. Newlin
Publisher:
ISBN:
Category : Gas as fuel
Languages : en
Pages : 226

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Effect of Fuel Composition and Exhaust Oxidation Catalyst on Performance and Emissions of a Lean-burn Natural Gas Engine

Effect of Fuel Composition and Exhaust Oxidation Catalyst on Performance and Emissions of a Lean-burn Natural Gas Engine PDF Author: Anthony W. Newlin
Publisher:
ISBN:
Category : Gas as fuel
Languages : en
Pages : 226

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Effect of Fuel Composition on Regulated Emissions from a Lean-burn, Closed Loop Controlled Natural Gas Engine at High Altitude

Effect of Fuel Composition on Regulated Emissions from a Lean-burn, Closed Loop Controlled Natural Gas Engine at High Altitude PDF Author: Michael S. Graboski
Publisher:
ISBN:
Category : Gas as fuel
Languages : en
Pages : 26

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The purpose of this test program was to determine the effect of natural gas composition on regulated emissions and performance of a Cummins B5.9G engine. This engine is a lean-burn, closed loop control, spark ignited, dedicated natural gas engine. Testing was conducted at 5,280 ft above sea level. This engine was thought to represent the state-of-the-art in production lean-burn natural gas engine technology at the time the test program was initiated. Five different natural gas fuels were evaluated. Methane content ranged from 76.9 to 90.3% and inerts content from 3.6 to 17.3%. The engine was found to operate well on all gases and net BTU based fuel economy was not effected by gas composition. CO and PM emissions were unaffected by gas composition. NOX emissions were also unaffected. THC emissions trended downwards with increasing fuel heating value but no such trend was observed for NMHC. Emissions from this engine were below all current or proposed standards for heavy duty engines on all fuels tested.

Effect of Fuel Composition on the Operation of a Lean Burn Natural Gas Engine

Effect of Fuel Composition on the Operation of a Lean Burn Natural Gas Engine PDF Author: Nigel N. Clark
Publisher:
ISBN:
Category : Automobiles
Languages : en
Pages :

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Effect of Fuel Composition on Exhaust Emissions from a Spark-ignition Engine

Effect of Fuel Composition on Exhaust Emissions from a Spark-ignition Engine PDF Author: Ralph David Fleming
Publisher:
ISBN:
Category : Automobiles
Languages : en
Pages : 76

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Reduced Emissions and Fuel Consumption in Automobile Engines

Reduced Emissions and Fuel Consumption in Automobile Engines PDF Author: Fred Schäfer
Publisher: Springer Science & Business Media
ISBN: 370913806X
Category : Technology & Engineering
Languages : en
Pages : 205

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Book Description
Over the last several years, there has been much discussion on the interrelation of CO2 emissions with the global warming phenomenon. This in turn has increased pressure to develop and produce more fuel efficient engines and vehicles. This is the central topic of this book. It covers the underlying processes which cause pollutant emissions and the possibilities of reducing them, as well as the fuel consumption of gasoline and diesel engines, including direct injection diesel engines. As well as the engine-related causes of pollution, which is found in the raw exhaust, there is also a description of systems and methods for exhaust post treatment. The significant influence of fuels and lubricants (both conventional and alternative fuels) on emission behavior is also covered. In addition to the conventional gasoline and diesel engines, lean-burn and direct injection gasoline engines and two-stroke gasoline and diesel engines are included. The potential for reducing fuel consumption and pollution is described as well as the related reduction of CO2 emissions. Finally, a detailed summary of the most important laws and regulations pertaining to pollutant emissions and consumption limits is presented. This book is intended for practising engineers involved in research and applied sciences as well as for interested engineering students.

Particulate Emissions from Vehicles

Particulate Emissions from Vehicles PDF Author: Peter Eastwood
Publisher: John Wiley & Sons
ISBN: 9780470986509
Category : Technology & Engineering
Languages : en
Pages : 512

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Book Description
The public health risks posed by automotive particulate emissions are well known. Such particles are sufficiently small to reach the deepest regions of the lungs; and moreover act as carriers for many potentially toxic substances. Historically, diesel engines have been singled out in this regard, but recent research shows the need to consider particulate emissions from gasoline engines as well. Already implicated in more than one respiratory disease, the strongest evidence in recent times points to particle-mediated cardiovascular disorders (strokes and heart attacks). Accordingly, legislation limiting particulate emissions is becoming increasingly stringent, placing great pressure on the automotive industry to produce cleaner vehicles - pressure only heightened by the ever-increasing number of cars on our roads. Particulate Emissions from Vehicles addresses a field of increased international interest and research activity; discusses the impact of new legislation globally on the automotive industry; and explains new ways of measuring particle size, number and composition that are currently under development. The expert analysis and summary of the state-of-the-art, which encompasses the key areas of combustion performance, measurement techniques and toxicology, will appeal to R&D practitioners and engineers working in the automotive industry and related mechanical fields, as well as postgraduate students and researchers of engine technology, air pollution and life/ environmental science. The public health aspects will also appeal to the biomedical research community.

Lean NOx Trap Catalysis for Lean Burn Natural Gas Engines

Lean NOx Trap Catalysis for Lean Burn Natural Gas Engines PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
As the nation's demand for energy grows along with concern for the environment, there is a pressing need for cleaner, more efficient forms of energy. The internal combustion engine is well established as one of the most reliable forms of power production. They are commercially available in power ranges from 0.5 kW to 6.5 MW, which make them suitable for a wide range of distributed power applications from small scale residential to large scale industrial. In addition, alternative fuels with domestic abundance, such as natural gas, can play a key role in weaning our nations dependence on foreign oil. Lean burn natural gas engines can achieve high efficiencies and can be conveniently placed anywhere natural gas supplies are available. However, the aftertreatment of Nox emissions presents a challenge in lean exhaust conditions. Unlike carbon monoxide and hydrocarbons, which can be catalytically reduced in lean exhaust, NOx emissions require a net reducing atmosphere for catalytic reduction. Unless this challenge of NOx reduction can be met, emissions regulations may restrict the implementation of highly efficient lean burn natural gas engines for stationary power applications. While the typical three-way catalyst is ineffective for NOx reduction under lean exhaust conditions, several emerging catalyst technologies have demonstrated potential. The three leading contenders for lean burn engine de-NOx are the Lean NOx Catalyst (LNC), Selective Catalytic Reduction (SCR) and the Lean Nox Trap (LNT). Similar to the principles of SCR, an LNT catalyst has the ability to store NOx under lean engine operation. Then, an intermittent rich condition is created causing the stored NOx to be released and subsequently reduced. However, unlike SCR, which uses urea injection to create the reducing atmosphere, the LNT can use the same fuel supplied to the engine as the reductant. LNT technology has demonstrated high reduction efficiencies in diesel applications where diesel fuel is the reducing agent. The premise of this research is to explore the application of Lean NOx Trap technology to a lean burn natural gas engine where natural gas is the reducing agent. Natural gas is primarily composed of methane, a highly stable hydrocarbon. The two primary challenges addressed by this research are the performance of the LNT in the temperature ranges experienced from lean natural gas combustion and the utilization of the highly stable methane as the reducing agent. The project used an 8.3 liter lean burn natural gas engine on a dynamometer to generate the lean exhaust conditions. The catalysts were packaged in a dual path aftertreatment system, and a set of valves were used to control the flow of exhaust to either leg during adsorption and regeneration.

Evaluation of the Performance and Air Pollutant Emissions of Heavy-duty Vehicles Operating on Various Natural Gas Blends

Evaluation of the Performance and Air Pollutant Emissions of Heavy-duty Vehicles Operating on Various Natural Gas Blends PDF Author: Georgios Karavalakis
Publisher:
ISBN:
Category : Motor vehicles
Languages : en
Pages : 136

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Technical Literature Abstracts

Technical Literature Abstracts PDF Author: Society of Automotive Engineers
Publisher:
ISBN:
Category : Technical literature
Languages : en
Pages : 400

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Kirk-Othmer Concise Encyclopedia of Chemical Technology, 2 Volume Set

Kirk-Othmer Concise Encyclopedia of Chemical Technology, 2 Volume Set PDF Author: Kirk-Othmer
Publisher: John Wiley & Sons
ISBN: 0470047488
Category : Science
Languages : en
Pages : 2762

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Book Description
This is an easily-accessible two-volume encyclopedia summarizing all the articles in the main volumes Kirk-Othmer Encyclopedia of Chemical Technology, Fifth Edition organized alphabetically. Written by prominent scholars from industry, academia, and research institutions, the Encyclopedia presents a wide scope of articles on chemical substances, properties, manufacturing, and uses; on industrial processes, unit operations in chemical engineering; and on fundamentals and scientific subjects related to the field.