首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Combustion characteristics and air pollutant formation during oxy-fuel co-combustion of microalgae and lignite
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Combustion characteristics and air pollutant formation during oxy-fuel co-combustion of microalgae and lignite

机译:微藻与褐煤氧-燃料共燃烧时的燃烧特性及空气污染物形成

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摘要

Oxy-fuel combustion of solid fuels is seen as one of the key technologies for carbon capture to reduce greenhouse gas emissions. The combustion characteristics of lignite coal, Chlorella vulgaris microalgae, and their blends under O-2/N-2 and O-2/CO2 conditions were studied using a Thermogravimetric Analyzer-Mass Spectroscopy (TG-MS). During co-combustion of blends, three distinct peaks were observed and were attributed to C. vulgaris volatiles combustion, combustion of lignite, and combustion of microalgae char. Activation energy during combustion was calculated using iso-conventional method. Increasing the microalgae content in the blend resulted in an increase in activation energy for the blends combustion. The emissions of S-and N-species during blend fuel combustion were also investigated. The addition of microalgae to lignite during air combustion resulted in lower CO2, CO, and NO2 yields but enhanced NO, COS, and SO2 formation. During oxy-fuel co-combustion, the addition of microalgae to lignite enhanced the formation of gaseous species. (C) 2016 Elsevier Ltd. All rights reserved.
机译:固体燃料的含氧燃料燃烧被视为碳捕集以减少温室气体排放的关键技术之一。使用热重分析仪-质谱仪(TG-MS)研究了褐煤,小球藻微藻及其混合物在O-2 / N-2和O-2 / CO2条件下的燃烧特性。在共混物燃烧过程中,观察到三个不同的峰,这归因于菜豆挥发物燃烧,褐煤燃烧和微藻炭燃烧。使用等常规方法计算燃烧过程中的活化能。共混物中微藻含量的增加导致共混物燃烧的活化能增加。还研究了混合燃料燃烧过程中S和N物种的排放。在空气燃烧过程中将微藻添加到褐煤中会降低CO2,CO和NO2的产量,但会增加NO,COS和SO2的形成。在富氧燃烧过程中,向褐煤中添加微藻会增加气态物质的形成。 (C)2016 Elsevier Ltd.保留所有权利。

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