A Review of Low-CO2 Emission Fuels for a Dual-Fuel RCCI Engine
Обзор топлив с низкими выбросами CO2 для двухтопливного двигателя RCCI
2021-08-17
SCID: 54.1/5w3v59nu
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RCCI engineshydrogen fuel additiveshydrotreatmentlow-CO2 emission fuelslow-temperature combustion
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Abstract (AI)
This article discusses the problems of exhaust gas emissions in the context of the possibility of their reduction through the use of fuels with hydrogen as an additive or hydrotreatment. These fuels, thanks to their properties, may be a suitable response to more and more demanding restrictions on exhaust emissions. The use of such fuels in reactivity controlled dual fuel engines (RCCI) is currently the most effective way of using them in internal combustion (IC) engines. Low-temperature combustion in this type of engine allows the use of all modern fuels intended for combustion engines with high thermal efficiency. Thermal efficiency higher than in classic engines allows for additional reduction of CO2 emissions. In this work, the research on this subject was compiled, and conclusions were drawn as to further possibilities of popularizing the use of these fuels in a wide spectrum of applications and the prospect of using them on a mass scale.
Key Findings
1
Higher thermal efficiency in RCCI engines can provide an additional reduction in CO2 emissions compared with conventional engines.
2
Hydrogen addition and hydrotreatment can produce low-CO2-emission fuels that help address increasingly stringent exhaust-emission regulations.
3
RCCI’s low-temperature combustion enables the use of a broad range of modern engine fuels while supporting high thermal efficiency.
4
Reactivity-controlled compression ignition (RCCI) dual-fuel engines are identified as an effective approach for using hydrogen-containing and hydrotreated fuels in internal-combustion engines.
5
The review synthesizes existing research and identifies prospects for wider adoption and mass-scale application of these low-emission fuels.
Research Object
low-CO2-emission fuels containing hydrogen additives or produced by hydrotreatment, used in dual-fuel reactivity-controlled compression ignition (RCCI) engines
Research Subject
their potential for reducing exhaust emissions, improving thermal efficiency, and further lowering CO2 emissions in RCCI engines
Publication Details
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2021-08-17
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