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The book highlights the transportation ecosystems and its
management with underlying technologies for futuristic freight and
passenger movement. The contents include contributions on climate
change impact on transportation infrastructure, enhancing
multimodal transportation, solar energy in railways, managing
public transportation with technology, among others. It also
includes chapters of newly developed technologies for the
intelligent transport system. This book is a useful guide to those
working in academia and industry in transportation
technology.Â
This monograph focuses on methanol and its utilization in
transportation sector, namely in spark ignition (SI) engines. The
contents focus on methanol production and presents a variety of
production technologies from different feedstocks. The potential of
methanol utilization in transportation in SI engines is discussed,
its challenges, limitations, aspects related to its utilization and
current global use of methanol are also presented. The book also
contains chapters related to pollutant formation and exhaust
emissions from methanol fuelled SI engines, one chapter is focused
specifically on formaldehyde emissions, which possesses one of the
greatest challenges of methanol use in IC engines. Readers will
learn about the production aspects of methanol, its potential as a
sustainable fuel, its utilization in SI engine and the effect of
methanol and its utilization techniques on engine performance,
combustion, exhaust emissions, efficiency and other important
parameters. This volume will be a useful guide for professionals,
post-graduate students involved in alternative fuels, spark
ignition engines, and environmental research.
This monograph is based on methanol as a fuel for transportation
sector, specifically for compression ignition (CI) engines. The
contents present examples of utilization of methanol as a fuel for
CI engines in different modes of transportation such as railroad,
personal vehicles or heavy duty road transportation. The book also
focuses on effect of methanol on combustion and performance
characteristics of the engine. The effect of methanol on exhaust
emission production, prediction and control is also discussed. It
also discusses current methanol utilization and its potential, its
effect on the engine in terms of efficiency, combustion,
performance, pollutants formation and prediction. Part of the
chapters are based on review of state-of-the-art while other
chapters are dedicated to an original research. This volume will be
a useful guide to professionals and academics involved in
alternative fuels, compression ignition engines, and environmental
research.
This book highlights ways of using gaseous and liquid e-fuels like
hydrogen (H2), methane (CH4), methanol (CH3OH), DME (CH3-O-CH3),
Ammonia (NH3), synthetic petrol and diesel, etc in existing engines
and their effects on tailpipe emissions. The contents also cover
calibration and optimization procedure for adaptation of these
fuels. the volume also discusses the economical aspect of these
fuels. Chapters include recent results and are focused on current
trends of automotive sector. This book will be of interest to those
in academia and industry involved in fuels, IC engines, engine
instrumentation, and environmental research.
This book is based on advanced combustion technologies currently
employed in internal combustion engines. It discusses different
strategies for improving conventional diesel combustion. The volume
includes chapters on low-temperature combustion techniques of
compression-ignition engines which results in significant reduction
of NOx and soot emissions. The content also highlights newly
evolved gasoline compression technology and optical techniques in
advanced gasoline direct injection engines. the research and its
outcomes presented here highlight advancements in combustion
technologies, analysing various issues related to in-cylinder
combustion, pollutant formation and alternative fuels. This book
will be of interest to those in academia and industry involved in
fuels, IC engines, engine combustion research.
This book focuses on low carbon fuels a preferable class of fuels
for Internal Combustion Engines (ICEs) highlighting the effect of
low carbon fuels on tailpipe emissions. This book aims to
strengthen the knowledge base dealing with low carbon fuels as a
sustainable transport fuel. The volume includes recent results and
are focused on current trends of automotive sector. This book will
be of interest to those in academia and industry involved in fuels,
IC engines, engine instrumentation, and environmental research.
This monograph focuses on methanol and its utilization in
transportation sector, namely in spark ignition (SI) engines. The
contents focus on methanol production and presents a variety of
production technologies from different feedstocks. The potential of
methanol utilization in transportation in SI engines is discussed,
its challenges, limitations, aspects related to its utilization and
current global use of methanol are also presented. The book also
contains chapters related to pollutant formation and exhaust
emissions from methanol fuelled SI engines, one chapter is focused
specifically on formaldehyde emissions, which possesses one of the
greatest challenges of methanol use in IC engines. Readers will
learn about the production aspects of methanol, its potential as a
sustainable fuel, its utilization in SI engine and the effect of
methanol and its utilization techniques on engine performance,
combustion, exhaust emissions, efficiency and other important
parameters. This volume will be a useful guide for professionals,
post-graduate students involved in alternative fuels, spark
ignition engines, and environmental research.
This book focuses on low carbon fuels a preferable class of fuels
for Internal Combustion Engines (ICEs) highlighting the effect of
low carbon fuels on tailpipe emissions. This book aims to
strengthen the knowledge base dealing with low carbon fuels as a
sustainable transport fuel. The volume includes recent results and
are focused on current trends of automotive sector. This book will
be of interest to those in academia and industry involved in fuels,
IC engines, engine instrumentation, and environmental research.
This book highlights ways of using gaseous and liquid e-fuels like
hydrogen (H2), methane (CH4), methanol (CH3OH), DME (CH3-O-CH3),
Ammonia (NH3), synthetic petrol and diesel, etc in existing engines
and their effects on tailpipe emissions. The contents also cover
calibration and optimization procedure for adaptation of these
fuels. the volume also discusses the economical aspect of these
fuels. Chapters include recent results and are focused on current
trends of automotive sector. This book will be of interest to those
in academia and industry involved in fuels, IC engines, engine
instrumentation, and environmental research.
This book is based on advanced combustion technologies currently
employed in internal combustion engines. It discusses different
strategies for improving conventional diesel combustion. The volume
includes chapters on low-temperature combustion techniques of
compression-ignition engines which results in significant reduction
of NOx and soot emissions. The content also highlights newly
evolved gasoline compression technology and optical techniques in
advanced gasoline direct injection engines. the research and its
outcomes presented here highlight advancements in combustion
technologies, analysing various issues related to in-cylinder
combustion, pollutant formation and alternative fuels. This book
will be of interest to those in academia and industry involved in
fuels, IC engines, engine combustion research.
This monograph is based on methanol as a fuel for transportation
sector, specifically for compression ignition (CI) engines. The
contents present examples of utilization of methanol as a fuel for
CI engines in different modes of transportation such as railroad,
personal vehicles or heavy duty road transportation. The book also
focuses on effect of methanol on combustion and performance
characteristics of the engine. The effect of methanol on exhaust
emission production, prediction and control is also discussed. It
also discusses current methanol utilization and its potential, its
effect on the engine in terms of efficiency, combustion,
performance, pollutants formation and prediction. Part of the
chapters are based on review of state-of-the-art while other
chapters are dedicated to an original research. This volume will be
a useful guide to professionals and academics involved in
alternative fuels, compression ignition engines, and environmental
research.
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