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Biomass co-firing in a pressurized fluidized bed combustion(PFBC) combined cycle power plant:A techno-environmental assessment based on computational simulations

机译:加压流化床燃烧(PFBC)联合循环电厂中的生物质共燃:基于计算模拟的技术环境评估

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The co-utilization of coal with biomass and biomass waste in a pressurized fluidized bed combustion(PFBC)system is a promising power generation option for addressing various areas of concern relating to the anthropogenic sources of harmful emissions,the global reliance on fossil fuel and the overall energy supply issues.In this study,coal with a wide range of biomass and biomass waste types such as straw,willow chips and switch grass as well as miscanthus and olive pits are fired in an advanced PFBC system.The produced gases and the evolved heat energy are employed to run a combined cycle.To understand the behavior of the proposed system,detailed computational simulations are carried out utilizing various feedstock mixtures ranging from 100% coal to 40% biomass.The results of the simulations are used to show the effect of co-firing on the technical and environmental performance of the power plant.The results show that the main parameters affecting the overall power plant efficiency are the co-firing ratios and the specific properties of the chosen biomass/waste types.Furthermore,the investigation indicates that the steam cycle output reacts more sensitive to the fuel configurations than the gas turbine cycle.As expected,the increased fraction of biomass or waste significantly reduces net CO_2 emissions,and has a beneficial influence on SO_x emissions.NO_x emissions tend to rise for all biomass types,except the high moisture content willow chips,with increasing co-firing fraction.
机译:在加压流化床燃烧(PFBC)系统中煤与生物质和生物质废物的联合利用是一种有前途的发电选择,可解决与人为排放源,全球对化石燃料和燃料的依赖有关的各个关注领域。整体能源供应问题。在这项研究中,使用先进的PFBC系统燃烧具有多种生物质和生物质废物类型的煤,例如秸秆,柳木屑和柳枝switch以及桔梗和橄榄核。利用热能运行一个联合循环。为了了解所提出系统的性能,利用从100%煤到40%生物质的各种原料混合物进行了详细的计算仿真。仿真结果用于显示效果燃烧对电厂技术和环境性能的影响。结果表明,影响电厂整体效率的主要参数为此外,研究表明,蒸汽循环输出对燃料配置的反应比燃气轮机循环更敏感。正如预期的那样,生物量或废物的比例增加大大减少了净CO_2排放,并对SO_x排放产生了有益的影响。除高水分柳叶屑外,所有生物质类型的NO_x排放都有增加的趋势,同时燃烧比例也增加。

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