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Laminar flame speed of Fossil/Air and Biofuels/Air Combustion

机译:化石/空气和生物燃料/空气燃烧的层流火焰速度

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Traditional fossil fuels are considered to be largely responsible for the atmospheric environmental degradation. Biofuels can contribute to reducing the dependency on fossil fuels and to lowering greenhouse gas emissions due to aviation transport and can be considered as both renewable and sustainable energy sources. Indeed, biofuels are recognized as "net zero CO_2 emission". In fact, carbon dioxide absorbed by plants during the growth of the biomass is roughly equivalent to the amount of carbon produced when the fuel is burned in a combustion engine - which is simply returning the CO2 to the atmosphere. This would allow the biofuel to be approximately carbon neutral over its life cycle. Thus the goal of this paper is to investigate the possibility to replace current aviation fuels with next generation biofuels. In particular, in the following, a comparative study of the bio-fuels flame speed, flame temperature ad emissions at different operative conditions with those of conventional fuels, has been performed. Results have actually shown that renewable fuels could play a critical role in pollutants abatement and for the next generation energy sources.
机译:传统的化石燃料被认为是造成大气环境恶化的主要原因。生物燃料可有助于减少对化石燃料的依赖,并降低航空运输带来的温室气体排放,可以被视为可再生能源和可持续能源。实际上,生物燃料被认为是“净零二氧化碳排放量”。实际上,植物在生物质生长过程中吸收的二氧化碳大约等于当燃料在内燃机中燃烧时产生的碳量-二氧化碳只是将二氧化碳返回到大气中。这将使生物燃料在其整个生命周期内几乎都是碳中性的。因此,本文的目的是研究用下一代生物燃料替代当前航空燃料的可能性。特别地,下面,对生物燃料的火焰速度,火焰温度以及在不同操作条件下的排放物与常规燃料的排放物进行了比较研究。结果实际上表明,可再生燃料可以在减少污染物和下一代能源中发挥关键作用。

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