质子交换膜燃料电池系统生物质气化模拟

W. Mungkalasiri, J. Mungkalasiri
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引用次数: 0

摘要

这种快速增长增加了全球气候变化的威胁。生物质能作为一种环保的燃料来源,具有替代化石燃料的潜力。因此,本研究对生物质气化与燃料电池系统集成发电进行了研究。目标是确定产生50千瓦功率输出所需的生物质饲料量,以及气化过程和质子交换膜(PEM)燃料电池的最佳操作条件。为了确定PEM燃料电池所需的氢气量,系统的功率输出是有针对性的。PEM燃料电池的工作条件有温度、压力和相对湿度。氢气的量被用来确定通过Aspen plus项目模拟的生物质气化所需的饲料量。研究的参数包括气化炉温度、空气与生物质比、蒸汽与生物质比。结果表明:PEM燃料电池(50 kW)的最佳工况为120℃、3 atm、100%RH,所需氢气量为2.320 kg/hr;而生物质气化的最佳工况为800℃、空气生物质比2.0、蒸汽生物质比2.0,生物质进料为27.641 kg/hr。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of Biomass Gasification with Proton Exchange Membrane Fuel Cell System
The rapid growth increases the threat of global climate change. Biomass is a potential alternative to fossil fuel due to environmentally friendly fuel source. Therefore, power generation from biomass gasification integrated with fuel cell system is studied in this work. The objectives are to determine the amount of biomass feed needed to produce power output of 50 kW and the optimal operating conditions of both gasification process and proton exchange membrane (PEM) fuel cell. The power output of the system is targeted in order to determine the amount of hydrogen required for the PEM fuel cell. The operating conditions of PEM fuel cell are varied in terms of temperature, pressure, and relative humidity (RH). The amount of hydrogen is used to determine the amount of feed required via the biomass gasification modeled by the Aspen plus programs. The parameters that are studied include gasifier temperature, air to biomass ratio, and steam to biomass ratio. The results shown that optimal operating conditions of PEM fuel cell (50 kW) are 120C, 3 atm and 100%RH and the hydrogen required is 2.320 kg/hr, whereas the optimal operating conditions of biomass gasification are 800C gasifier temperature, 2.0 air to biomass ratio, and 2.0 steam to biomass ratio with biomass feed of 27.641 kg/hr.
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