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Next generation cogeneration system for industry - Combined heat and fuel plant using biomass resources

机译:使用生物质资源的工业组合热和燃料厂的下一代发电系统

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The requirement for sustainable development has prompted the researchers to explore solutions for better utilization of renewable energy resources in the future. Biomass is a promising resource and it can be converted to multiple products and services including fuels, chemicals, heat and electricity via different conversion routes. Hence, replacement of fossil-based services with biomass-based services is critical to mitigate fossil CO2 emissions, and innovative design of new and efficient energy conversion systems is necessary. Different industries need heat for their operations at different temperature levels. Today, these demands are satisfied using conventional natural gas boilers by imposing a CO2 tax to account for their emissions. In this study, we discuss the potential of replacing conventional boilers with a combined heat and fuel (CHF) plant design which utilizes lignocellulosic biomass in thermochemical conversion to generate heat for different industrial sectors together with biofuels cogeneration. Heat is generated due to the exothermic nature of the thermochemical conversion processes that operate at high temperatures. Gasification process produces syngas which is converted into fuels such as synthetic natural gas, Fischer-Tropsch crude, methanol and dimethyl ether and electricity. Different scenarios are evaluated considering the CO2 produced via this system is either released, sequestrated, or stored and used in a co-electrolysis unit in which surplus renewable electricity available during summer is converted into additional syngas. A parametric analysis has been performed considering type and size of plants, CO2 tax, and purchase and transportation costs of wood to compare the price of heat for the industrial sectors. Natural gas and wood boilers are used as the basis to calculate the breakeven CO2 tax values for the same heat prices for the proposed CHF systems. The results of this study present a state-of-the-art renewable energy system as an alte
机译:可持续发展的要求促使研究人员探讨未来更好地利用可再生能源资源的解决方案。生物质是一个有希望的资源,可以通过不同的转换途径将其转换为多种产品和服务,包括燃料,化学品,热电和电力。因此,利用基于生物量的服务更换化石的服务对于减轻化石二氧化碳排放至关重要,并且需要创新的新技术能源转换系统。不同的行业在不同的温度水平下需要热量的运营。如今,通过强加二氧化碳税收来解释其排放来满足常规天然气锅炉,满足这些需求。在这项研究中,我们讨论了用组合的热量和燃料(CHF)植物设计替代常规锅炉的潜力,该植物设计利用热化学转化的木质纤维素生物量,以产生不同工业部门的热量与生物燃料发电。由于在高温下操作的热化学转换过程的放热性,产生了热量。气化过程生产合成气,该合成气被转化为燃料,例如合成天然气,费氏托粗碱,甲醇和二甲醚和电力。考虑到不同的场景,考虑通过该系统产生的二氧化碳释放,已被释放,消除或存储在一起,并在夏季可用的多余可再生电力转换为额外的合成气。考虑到植物,二氧化碳税和木材的购买和运输成本的类型和规模进行了参数分析,以比较工业部门的热量。天然气和木材锅炉被用作计算拟议的CHF系统的相同热量价格的Breakeven Co2税价值的基础。本研究的结果显示了一种最先进的可再生能源系统,作为ALTE

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