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Conceptual Design of a Sugar Cane Biomass Gasifier Using CSFMB Model
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作者 D. Bastos-Netto R.R. Riehl M.L. Souza-Santos 《Journal of Energy and Power Engineering》 2011年第3期233-237,共5页
Since 1978, Brazil has invested into bio-fuels alternatives, especially ethanol from sugar-cane processing and that has increased the bagasse production, which requires proper destination and a potential use of such b... Since 1978, Brazil has invested into bio-fuels alternatives, especially ethanol from sugar-cane processing and that has increased the bagasse production, which requires proper destination and a potential use of such biomass is the gasification process. In the present study, a conceptual design of a gasification system to convert sugar cane bagasse into syngas is presented, which considers air as gasification agent in a flexible configuration of bubbling fluidized bed reactor operating from atmospheric pressure up to 2 MPa, providing a net power output (referred at gas cold conditions) of 3 MWt and 66 MWt, respectively. In this last case, the gas may be used not just as a fuel for gas turbines and internal combustion engines for power generation but also to feed Fischer-Tropsch processes. The optimized conceptual design of the gasifier is described here and was achieved using the CSFMB (Comprehensive Simulator of Fluidized and Moving Bed Equipment). Simulations predicted the production of gas with high heating value as well stable operations at both conditions. The conceptual design would be followed by the detailed one and construction. Tests would be carried in the near future and would allow direct comparison between the calculated and experimental results. 展开更多
关键词 BIOMASS GASIFICATION SIMULATION fluidized bubbling bed.
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CaO-SiO_(2)-MgO-Al_(2)O_(3)渣系渣铁间硫分配比热力学模型 被引量:2
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作者 郑海燕 王硕 +3 位作者 郭永春 姜鑫 高强健 沈峰满 《钢铁》 CAS CSCD 北大核心 2021年第4期16-23,共8页
为了探明高炉渣系组成对高炉渣脱硫能力的影响,根据分子-离子共存理论,建立了CaO-SiO_(2)-MgO-Al_(2)O_(3)高炉渣系与铁液间硫分配比的热力学模型,利用试验测定值对其进行验证与修正,探究碱度R、w((MgO))/w((Al_(2)O_(3)))和w((Al_(2)O_... 为了探明高炉渣系组成对高炉渣脱硫能力的影响,根据分子-离子共存理论,建立了CaO-SiO_(2)-MgO-Al_(2)O_(3)高炉渣系与铁液间硫分配比的热力学模型,利用试验测定值对其进行验证与修正,探究碱度R、w((MgO))/w((Al_(2)O_(3)))和w((Al_(2)O_(3)))对炉渣脱硫能力的影响。研究结果表明,修正后的CaO-SiO_(2)-MgO-Al_(2)O_(3)高炉渣系硫分配比(LS)热力学模型能较好地预测熔渣的脱硫能力,修正后的相对误差为8%,较修正前的相对误差降低了11%;当w((MgO))/w((Al_(2)O_(3)))=0.25~0.45,w((Al_(2)O_(3)))=15%时,随着碱度R的增加,炉渣的脱硫能力(LS)增大;当w((Al_(2)O_(3)))=15%,R=1.15~1.25时,随着w((MgO))/w((Al_(2)O_(3)))的增加,炉渣的脱硫能力(LS)增大;当w((MgO))/w((Al_(2)O_(3)))=0.25~0.45,R=1.20时,随着w((Al_(2)O_(3)))的增加,炉渣的脱硫能力(LS)减小,故高Al_(2)O_(3)条件下应适当增加炉渣中的w((MgO))/w((Al_(2)O_(3)))。 展开更多
关键词 硫分配比 炉渣模型 分子-离子共存理论 质量作用浓度 结构单元
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