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Techno-economic sustainability analysis of biomass fired industrial boiler: biomass evolution as heat and power generation source

机译:生物质燃料工业锅炉的技术经济可持续性分析:生物质作为热力和发电源的演变

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To control the drastically changing environment, fossil fuels to sustainable resources transition are indispensable. Biomass has huge potential as sustainable power generation fuel, but the detailed investigation is needed to ensure the profitable usage of biomass. The principal aim of this study is to investigate the energy conservation opportunities in a biomass-fuelled boiler. An extensive thermodynamics analysis (using energy and exergy mathematical models) of a rice husk-based fixed bed boiler has been conducted. Research has provided measures to optimise the operational parameters of the boiler. Energy and exergy pathways of the boiler have been critically analysed to trace the pivotal cause of losses and irreversibilities in the boiler. A robust parametric study has evaluated the impacts of excess air percentage, stack gas temperature, and stack gas oxygen content on the boiler performance. Cycle tempo software is used to trace the energy losses through the stack gas. Based upon recommended improvements, analysed boiler efficiency can be increased by 3-4% with minimum savings of 150,000 US$/year. It is concluded that rice husk is an environmental-friendly fuel and it has huge potential as sustainable co-generation fuel. This comprehensive analysis has provided a framework for future studies to analyse the performance of any boiler.
机译:为了控制急剧变化的环境,向可持续资源过渡的化石燃料必不可少。生物质作为可持续的发电燃料具有巨大的潜力,但是需要进行详细的调查以确保生物质的可盈利使用。这项研究的主要目的是研究生物质燃料锅炉的节能机会。对基于稻壳的固定床锅炉进行了广泛的热力学分析(使用能量和火用数学模型)。研究提供了优化锅炉运行参数的措施。已经对锅炉的能量和火用路径进行了严格分析,以追踪锅炉损失和不可逆性的关键原因。一项强大的参数研究评估了过量空气百分比,烟道气温度和烟道气含氧量对锅炉性能的影响。循环速度软件用于跟踪通过烟道气的能量损失。根据建议的改进,分析的锅炉效率可以提高3-4%,每年至少节省150,000美元。结论是稻壳是一种环境友好的燃料,它具有可持续的热电联产燃料的巨大潜力。这项全面的分析为将来的研究提供了一个框架,以分析任何锅炉的性能。

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