Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Methanol Combustion Characteristics in Compression Ignition Engines: A Critical Review

View through CrossRef
Methanol has been identified as a transition fuel for the decarbonisation of combustion-based industries, including automotive and maritime. This study aims to conduct a critical review of methanol combustion in compression ignition engines and analyse the reviewed studies’ results to quantify methanol use’s impact on engine performance and emissions characteristics. The diesel and diesel–methanol operation of these engines are comparatively assessed, demonstrating the trade-offs between the methanol fraction, the key engine performance parameters, including brake thermal efficiency, peak in-cylinder pressure, heat release rate, and temperature, as well as the carbon dioxide, carbon monoxide, nitrogen oxides, and particulate matter emissions. The types of the reviewed engines considering the main two combustion methods, namely premixed and diffusion combustion, are discussed. Research gaps are identified, and recommendations for future research directions to address existing challenges for the wider use of methanol as a marine fuel are provided. This comprehensive review provides insights supporting methanol engine operation, and it is expected to lead to further studies towards more efficient use of methanol-fueled marine engines.
Title: Methanol Combustion Characteristics in Compression Ignition Engines: A Critical Review
Description:
Methanol has been identified as a transition fuel for the decarbonisation of combustion-based industries, including automotive and maritime.
This study aims to conduct a critical review of methanol combustion in compression ignition engines and analyse the reviewed studies’ results to quantify methanol use’s impact on engine performance and emissions characteristics.
The diesel and diesel–methanol operation of these engines are comparatively assessed, demonstrating the trade-offs between the methanol fraction, the key engine performance parameters, including brake thermal efficiency, peak in-cylinder pressure, heat release rate, and temperature, as well as the carbon dioxide, carbon monoxide, nitrogen oxides, and particulate matter emissions.
The types of the reviewed engines considering the main two combustion methods, namely premixed and diffusion combustion, are discussed.
Research gaps are identified, and recommendations for future research directions to address existing challenges for the wider use of methanol as a marine fuel are provided.
This comprehensive review provides insights supporting methanol engine operation, and it is expected to lead to further studies towards more efficient use of methanol-fueled marine engines.

Related Results

Study on the image recognition of ammonia ignition process induced by methanol micro-jet
Study on the image recognition of ammonia ignition process induced by methanol micro-jet
<div class="section abstract"><div class="htmlview paragraph">Ammonia is regarded as a possible carbon-free energy source for engines, drawing more and more attention. ...
Advanced combustion strategies for improving ic engine efficiency and emissions
Advanced combustion strategies for improving ic engine efficiency and emissions
The growing need for higher fuel efficiency and compliance with increasingly stringent emission regulations has prompted significant advancements in internal combustion (IC) engine...
Aqueous solution of ammonia as marine fuel
Aqueous solution of ammonia as marine fuel
The ignition of ammonia in aqueous solution was simulated in a two-stroke compression ignition engine model. Zero-dimensional chemical kinetic calculations were used to estimate th...
Experimental Study on Characteristics of Conical Spray and Combustion for Medium Speed D.I. Diesel Engine
Experimental Study on Characteristics of Conical Spray and Combustion for Medium Speed D.I. Diesel Engine
<div class="htmlview paragraph">This paper inverstigates a new way of conical spray for medium speed D. I. diesel engine, with which three different construction injectors we...
Study on the Transformation of Combustion Mechanism and Ejection Phenomenon of Aluminum Particles in Methane Flame
Study on the Transformation of Combustion Mechanism and Ejection Phenomenon of Aluminum Particles in Methane Flame
In solid propellants, the combustion of aluminum particles often occurs in a hydrocarbon combustion atmosphere. In order to study the combustion energy release process of aluminum ...
Future gasoline engine ignition: A review on advanced concepts
Future gasoline engine ignition: A review on advanced concepts
To meet the future requirements of fuel economy and exhaust emissions, high-efficiency gasoline engines tend to employ diluted combustion concepts along with intensified charge mot...
Improvement of Combustion Process and Exhaust Emissions with Premixed Charge Compression Ignition
Improvement of Combustion Process and Exhaust Emissions with Premixed Charge Compression Ignition
Premixed Charge Compression Ignition (PCCI) is a combustion concept that is characterized by low temperature, partially premixed combustion using early injections, large ignition d...
Comparative Study on the Performance of Marine Diesel Engines Running on Diesel/Methanol and Diesel/Natural Gas Mode
Comparative Study on the Performance of Marine Diesel Engines Running on Diesel/Methanol and Diesel/Natural Gas Mode
With the increasingly stringent requirements of international decarbonization regulations, the shipping industry has accelerated the pace of exploiting low-carbon fuels. Methanol i...

Back to Top