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CONCEPT OF CO-FIRING COAL WITH BIOMASS AND NATURAL GAS: ON TRACK OF SUSTAINABLE SOLUTION FOR FUTURE THERMAL POWER PLANTS

机译:与生物质和天然气共燃煤的概念:关于未来火力发电厂可持续解决方案的思路

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This paper presents R&D project of multi fuel concept (MFC) for future coal-based power plants, demonstrated on example of cofiring Middle-Bosnia brown coal with waste woody biomass and natural gas. Pulverised Combustion (PC) lab-scale furnace has been used for the cofiring tests, varying up to 20%w portion of biomass and up to 10%th portion of natural gas in the fuel mix. Tests were purposed to optimize the combustion temperature, air distribution, including Over Fire Air System (OFAS), fuel combination and fuel distribution, including reburning concept, as function of emissions and combustion efficiency estimated through the ash deposits behaviours and unburnt. Considering application of proposed MFC in case of TPP Kakanj unit 6 (118 MWe) set here as a referent power plant, temperature levels and fuel distributions for lowest emissions of CO2 and NOx were found during lab tests, provided that combustion efficiency is at an acceptable level. Derived research results yield input data for calculation sustainability indicators of MFC for the referent power plant, considering 6 fuel options - different combinations of coal, biomass and natural gas. Single criteria analysis and multicriteria sustainability assessment have been done, giving an advantage to the options of cofiring coal with woody biomass and natural gas in the case demonstrated.
机译:本文介绍了针对未来煤基发电厂的多燃料概念(MFC)的研发项目,并以将中波斯尼亚褐煤与废弃木质生物质和天然气共烧为例进行了演示。混合燃烧(PC)实验室规模的熔炉已用于共烧测试,燃料混合物中的生物质含量最高为20%w,天然气的最高含量为十分之一。测试旨在优化燃烧温度,空气分布(包括火上空气系统(OFAS)),燃料组合和燃料分布(包括再燃烧概念),以根据排放量和燃烧效率(通过灰烬沉积行为和未燃烧)估算。考虑到在此处将TPP Kakanj机组6(118 MWe)设置为参考发电厂的情况下使用拟议的MFC,只要燃烧效率在可接受的范围内,即可在实验室测试中找到最低二氧化碳和氮氧化物排放的温度水平和燃料分布水平。得出的研究结果得出输入数据,用于计算目标发电厂的MFC可持续性指标,其中考虑了6种燃料选择-煤,生物质和天然气的不同组合。已经进行了单标准分析和多标准可持续性评估,在案例中证明了将煤与木质生物质和天然气共烧的选择优势。

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