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Development of the Process Model and Optimal Drying Conditions of Biomass Power Plants

机译:生物质发电厂的过程模型和最优干燥条件的发展

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An empty fruit bunch (EFB) is a byproduct of the palm oil production process with an undried moisture content of 60–70%, which is too high for use as direct combustion fuel. Drying processes are generally considered essential for the recent use of EFBs as power plant fuels because their high moisture content decreases the boiler efficiency. The lower moisture content of dried EFBs increases the heating value and boiler efficiency but creates a trade-off with the energy required for the drying process. This study developed an EFB-based 10 MW power plant model by integrating economic evaluations in order to obtain optimal drying conditions. A hot air dryer was used in the drying process. The EFB evaporation behavior was predicted by reflecting the drying kinetics of EFBs in Aspen Plus. The optimum drying conditions were found to be a steam recirculation ratio of 0.25 and drying time of 23 min, creating dried EFBs with a 9.91% moisture content, which reduced costs by 5.48% relative to the undried base scenario. In addition, the developed model was compared to the drying process of a real power plant currently under construction in Indonesia. This drying process reduces the EFB moisture content from 48 to 20%.
机译:空果实束(EFB)是棕榈油生产过程的副产品,其水分含量为60-70%,这对于直接燃烧燃料太高,这太高。通常认为干燥过程对于最近使用EFB作为发电厂燃料,因为它们的高水分含量降低了锅炉效率。干燥EFB的较低水分含量增加了加热值和锅炉效率,但促进了干燥过程所需的能量的折衷。本研究通过整合经济评估来开发基于EFB的10 MW发电厂模型,以获得最佳的干燥条件。在干燥过程中使用热风干燥器。通过反射Aspen Plus中的EFBS的干燥动力学来预测EFB蒸发行为。发现最佳干燥条件为0.25的蒸汽再循环比,干燥时间为23分钟,含有9.91%的水分含量干燥的EFB,相对于未来的基地情况降低了5.48%的成本。此外,开发的模型与目前正在印度尼西亚的实际电厂的干燥过程进行比较。该干燥过程将EFB水分含量降低48%至20%。

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