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首页> 外文期刊>Biomass & bioenergy >Integration of biomass fast pyrolysis and precedent feedstock steam drying with a municipal combined heat and power plant
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Integration of biomass fast pyrolysis and precedent feedstock steam drying with a municipal combined heat and power plant

机译:将生物质快速热解和先验原料蒸汽干燥与市政热电联产相结合

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摘要

Biomass fast pyrolysis (BFP) is a promising pre-treatment technology for converting biomass to transport fuel and in the future also for high-grade chemicals. BFP can be integrated with a municipal combined heat and power (CHP) plant. This paper shows the influence of BFP integration on a CHP plant's main parameters and its effect on the energetic and environmental performance of the connected district heating network. The work comprises full- and part-load operation of a CHP plant integrated with BFP and steam drying. It also evaluates different usage alternatives for the BFP products (char and oil). The results show that the integration is possible and strongly beneficial regarding energetic and environmental performance. Offering the possibility to provide lower district heating loads, the operation hours of the plant can be increased by up to 57%. The BFP products should be sold rather than applied for internal use as this increases the district heating network's primary energy efficiency the most. With this integration strategy future CHP plants can provide valuable products at high efficiency and also can help to mitigate global CO_2 emissions.
机译:生物质快速热解(BFP)是一种有前途的预处理技术,可以将生物质转化为运输燃料,将来也可以用于高级化学品。 BFP可以与市政热电联产(CHP)厂集成。本文展示了BFP集成对热电联产厂主要参数的影响及其对相连区域供热网络的能效和环境绩效的影响。这项工作包括与BFP和蒸汽干燥相结合的CHP工厂的全部和部分负荷运行。它还评估了BFP产品(炭和油)的不同替代用途。结果表明,该整合是可能的,并且在能量和环境性能方面非常有利。由于可以提供较低的区域供热负荷,因此工厂的运行时间最多可以增加57%。 BFP产品应出售而不是用于内部使用,因为这可以最大程度地提高区域供热网络的一次能源效率。通过这种整合策略,未来的热电联产工厂可以高效提供有价值的产品,还可以帮助减少全球CO_2排放。

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