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Entrained Metal Aerosol Emissions from Air-Fired Biomass and Coal Combustion for Carbon Capture Applications

机译:空气捕集的空气生物质和煤燃烧产生的金属气溶胶排放用于碳捕集应用

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摘要

Biomass energy with CO2 capture could achieve net negative emissions, vital for meeting carbon budgets and emission targets. However, biomass often has significant quantities of light metals/inorganics that cause issues for boiler operation and downstream processes; including deposition, corrosion, and solvent degradation. This study investigated the pilot-scale combustion of a typical biomass used for power generation (white wood) and assessed the variations in metal aerosol release compared to bituminous coal. Using inductively coupled plasma optical emission spectrometry, it was found that K aerosol levels were significantly greater for biomass than coal, on average 6.5 times, with peaks up to 10 times higher; deposition could thus be more problematic, although Na emissions were only 20% of those for coal. Transition metals were notably less prevalent in the biomass flue gas; with Fe and V release in particular much lower (3–4% of those for coal). Solvent degradation may therefore be less severe for biomass-generated flue gases. Furthermore, aerosol emissions of toxic/heavy metals (As/Cd/Hg) were absent from biomass combustion, with As/Cd also not detected in the coal flue gas. Negligible Cr aerosol concentrations were found for both. Overall, except for K, metal aerosol release from biomass combustion was considerably reduced compared to coal.
机译:捕获二氧化碳的生物质能可以实现净负排放,这对于实现碳预算和排放目标至关重要。但是,生物质通常含有大量的轻金属/无机物,这会给锅炉的运行和下游过程带来问题。包括沉积,腐蚀和溶剂降解。这项研究调查了用于发电的典型生物质(白木)的中试燃烧,并评估了与烟煤相比金属气溶胶释放的变化。使用电感耦合等离子体发射光谱法,发现生物质中的K气溶胶水平显着高于煤,平均为6.5倍,最高可达10倍。因此,尽管钠的排放量仅为煤炭排放量的20%,但沉积可能会带来更多问题。过渡金属在生物质烟气中的流行程度明显较低;尤其是铁和钒的释放量要低得多(仅为煤的3-4%)。因此,对于生物质产生的烟道气,溶剂的降解可能不太严重。此外,生物质燃烧不产生有毒/重金属(As / Cd / Hg)的气溶胶排放,在烟道气中也未检测到As / Cd。两者的Cr气溶胶浓度均可以忽略不计。总体而言,除钾外,与煤相比,生物质燃烧产生的金属气溶胶释放量大大减少。

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