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首页> 外文期刊>Journal of Chemical Engineering of Japan >Radiation Properties of Coal Char Particle Cloud
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Radiation Properties of Coal Char Particle Cloud

机译:煤焦颗粒云的辐射特性

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This study is to evaluate the radiation properties of coal char and ash particles. Char in coal-firing and gasification processes exists in the form of heterogeneous composite particles consisting of nano-order fine particles made mainly of soot and micron-order particles of carbon and ash components. The radiation properties are discussed in terms of apparent extinction efficiency determined from spectra of transmissivity of a particle-liquid paraffin wax dispersion film as an independent parameter of particle dispersion density. Extinction efficiency measured directly from the original char gives an unacceptably great magnitude. However, if the original char was classified into a narrow particle size distribution by pretreatment with a wet method, the extinction efficiency of each particle showed a reasonable magnitude and successfully deduced an extinction coefficient of the original char dispersion with a certain content from combining that of each particle accounting for the fraction. The effect of carbon content in char particle excluding soot on extinction efficiency could also be correlated empirically by a simple function using the properties of carbon-free ash burnt out and ash-free carbon treated by hydrofluoric acid. Additionally, the value of apparent extinction efficiency measured from transmissivity of ash dispersion was compared with the properties estimated by applying the known refractive index into Mie's theory, and noted to be closer to rather absorption efficiency than the extinction efficiency analyzed theoretically, although scattering albedo was as large as over 0.9. This fact may result in that a strong forward scattering pointed out in a previous work was reasonable and the ash particle cloud can be assumed as an absorbing-emitting medium having the properties obtained here, ignoring the effect of scattering at least.
机译:这项研究旨在评估煤焦和煤灰颗粒的辐射性能。燃煤和气化过程中的炭以非均相复合颗粒的形式存在,该复合颗粒由主要由碳和灰分成分的烟灰和微米级颗粒组成的纳米级细颗粒组成。根据表观消光效率来讨论辐射性质,所述表观消光效率由颗粒-液体石蜡蜡分散膜的透射光谱作为颗粒分散密度的独立参数确定。直接从原始焦炭测得的消光效率令人无法接受。但是,如果通过湿法预处理将原始焦炭分类为窄粒度分布,则每个颗粒的消光效率都显示出合理的大小,并通过结合一定的含量成功推算出具有一定含量的原始焦炭分散液的消光系数。每个粒子占分数。利用炭烧掉的无碳灰和经氢氟酸处理的无灰碳的性质,通过简单的函数,也可以通过经验函数关联除烟灰以外的炭颗粒中碳含量对消光效率的影响。此外,将通过灰分分散体的透射率测得的表观消光效率值与通过将已知折射率应用于米氏理论而估计的性质进行了比较,并注意到,尽管散射反照率是超过0.9。该事实可能导致在先前的工作中指出的强烈的前向散射是合理的,并且可以将灰分颗粒云假定为具有在此获得的性质的吸收-发射介质,至少忽略了散射的影响。

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