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A Review of Hydrogen Direct Injection for Internal Combustion Engines: Towards Carbon-Free Combustion

Applied Sciences · 2019 · Vol. 9(22) · pp. 4842–4842
Ho Lung YipAleš SrnaAnthony Chun Yin YuenSanghoon KookRobert A. TaylorGuan Heng YeohPaul R. MedwellQing Nian Chan

Abstract

A paradigm shift towards the utilization of carbon-neutral and low emission fuels is necessary in the internal combustion engine industry to fulfil the carbon emission goals and future legislation requirements in many countries. Hydrogen as an energy carrier and main fuel is a promising option due to its carbon-free content, wide flammability limits and fast flame speeds. For spark-ignited internal combustion engines, utilizing hydrogen direct injection has been proven to achieve high engine power output and efficiency with low emissions. This review provides an overview of the current development and understanding of hydrogen use in internal combustion engines that are usually spark ignited, under various engine operation modes and strategies. This paper then proceeds to outline the gaps in current knowledge, along with better potential strategies and technologies that could be adopted for hydrogen direct injection in the context of compression-ignition engine applications—topics that have not yet been extensively explored to date with hydrogen but have shown advantages with compressed natural gas.

Advanced Combustion Engine TechnologiesBiodiesel Production and ApplicationsCombustion and flame dynamicsCombustionInternal combustion engineFlammabilitySPARK (programming language)Ignition systemHydrogenAutomotive engineeringEnvironmental scienceMaterials scienceProcess engineering

Funding

  • University of New South Wales
  • Australian Renewable Energy Agency
  • Australian Research Council
Citations
443
FWCI
16.22
field-weighted impact
References
97
Percentile
100%
vs. same field & year
Citations per year
References
The hydrogen-fueled internal combustion engine: a technical review
International Journal of Hydrogen Energy · 2006 · 1,131 citations
Development of high pressure gaseous hydrogen storage technologies
International Journal of Hydrogen Energy · 2011 · 801 citations
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