首页> 外文会议>International conference on energy sustainability;ES2010 >THERMO-ECONOMIC ANALYSIS OF MICROALGAE CO-FIRING PROCESS FOR FOSSIL FUEL-FIRED POWER PLANTS
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THERMO-ECONOMIC ANALYSIS OF MICROALGAE CO-FIRING PROCESS FOR FOSSIL FUEL-FIRED POWER PLANTS

机译:化石燃料发电厂微藻共烧过程的热经济分析

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A thermoeconomic analysis of microalgae co-firing process for fossil fuel-fired power plants is studied. A process with closed photobioreactor and artificial illumination is evaluated for microalgae cultivation, due to its simplicity with less influence from climate variations. The results from this process would contribute to further estimation of process performance and investment.The concept of co-firing (coal-microalgae or natural gas-microalgae) includes the utilization of CO_2 from power plant for microalgal biomass culture and oxy-combustion of using oxygen generated by biomass to enhance the combustion efficiency. As it reduces CO_2 emission by recycling it and uses less fossil fuel, there are concomitant benefits of reduced GHG emissions. The by-products (oxygen) of microalgal biomass can be mixed with air or recycled flue gas prior to combustion, which will have the benefits of lower nitrogen oxide concentration in flue gas, higher efficiency of combustion, and not too high temperature (avoided by available construction materials) resulting from coal combustion in pure oxygen.Two case studies show that there are average savings about $0.386 million/MW/yr and $0.323 million/MW/yr for coal-fired and natural gas-fired power plants, respectively. These costs saving are economically attractive and demonstrate the promise of microalgae technology for reducing greenhouse gas (GHG) emission.
机译:研究了化石燃料发电厂微藻类共烧过程的热经济分析。由于其简单性且受气候变化的影响较小,因此对封闭式光生物反应器和人工照明的工艺进行了微藻培养评估。该过程的结果将有助于进一步估计过程性能和投资。 共烧(煤微藻类或天然气微藻类)的概念包括利用发电厂的CO_2进行微藻生物质培养,以及利用生物质产生的氧气进行氧燃烧以提高燃烧效率。由于它通过回收利用减少了CO_2的排放,并减少了化石燃料的使用,因此减少了温室气体的排放也带来了好处。微藻生物质的副产物(氧气)可以在燃烧前与空气或循环烟气混合,这具有烟气中氮氧化物浓度较低,燃烧效率更高以及温度不太高的优点(避免了可用的建筑材料)是由煤在纯氧中燃烧产生的。 两项案例研究表明,燃煤电厂和天然气电厂分别平均节省约38.6万美元/兆瓦/年和32.3万美元/兆瓦/年。这些节省的成本在经济上具有吸引力,并证明了微藻技术减少温室气体(GHG)排放的希望。

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