Performance and emission analysis of a dual-fuel engine operating on high natural gas substitution rates ignited by aqueous carbon nanoparticles-laden diesel/biodiesel emulsions

Author:

Faizollahzadeh Ardabili Sina,Najafi BahmanORCID,Aghbashlo Mortaza,Khounani Zahra,Tabatabaei Meisam

Publisher

Elsevier BV

Subject

Organic Chemistry,Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering

Reference64 articles.

1. IEA, CO2 Emissions from fuel combustion: Overview, IEA 2020, Paris.

2. Global temperature responses to current emissions from the transport sectors;Berntsen;Proc Natl Acad Sci,2008

3. The 2019 report of The Lancet Countdown on health and climate change: ensuring that the health of a child born today is not defined by a changing climate;Watts;The Lancet,2019

4. Cradle-to-gate life cycle assessment of Eucalyptus globulus short rotation plantations in Chile;Morales;J. Cleaner Prod,2015

5. Experimental and computational fluid dynamics-based numerical simulation of using natural gas in a dual-fueled diesel engine;Akbarian;Eng Appl Comput Fluid Mech,2018

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