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Design and assessment of a new solar-based biomass gasification system for hydrogen, cooling, power and fresh water production utilizing rice husk biomass

机译:利用稻壳生物质的氢,冷却,电力和淡水生产新的太阳能生物量气化系统的设计与评估

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摘要

A new solar energy-based rice husk gasification system is introduced that produces renewable hydrogen as well as cooling, freshwater and electricity. The hydrogen production rate under design operating conditions is 0.0603 kg/s. Also, the peak rate of hydrogen production at a higher biomass feed rate of 5 kg/s is evaluated to be 0.3 kg/s. Moreover, the performance of the system introduced is evaluated through comprehensive thermodynamic analyses. The overall design efficiency considering energetic performance is 46.8% and the corresponding exergetic efficiency becomes 47.8%. In addition to this, the net rate of energy production attained by the combined cycle is 12.9 MW. Also, the system introduced provides a rate of cooling of 911.4 kW and a freshwater production rate of 410.9 kg/s. Higher steam to biomass and lower oxygen to feed ratios are found to improve system performances. Several other sensitivity analyses are conducted to investigate the performance under varying conditions.
机译:引入了一种新的太阳能稻壳气化系统,可产生可再生氢以及冷却,淡水和电力。 设计操作条件下的氢气生产率为0.0603千克/秒。 而且,氢气产生的峰值率为5kg / s的较高生物质进料速率为0.3kg / s。 此外,通过综合热力学分析来评估系统的性能。 考虑精力表现的整体设计效率为46.8%,相应的前进效率变为47.8%。 除此之外,组合循环所获得的能源生产率为12.9 mW。 此外,该系统引入提供911.4千瓦的冷却速率,淡水生产率为410.9千克/秒。 发现较高的生物质和较低的氧气与饲料比的蒸汽以改善系统性能。 进行了几种其他敏感性分析,以研究不同条件下的性能。

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