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Catalytic gasification of algal biomass for hydrogen-rich gas production: Parametric optimization via central composite design

机译:藻类生物质的催化气化以生产富氢气体:通过中央复合设计进行参数优化

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摘要

This study presents the optimization of algal biomass catalytic gasification for hydrogen-rich gas production. Three operating parameters under varying conditions of temperature (700-900 degrees C), catalyst loading (5-20 wt%) and reaction time (15-40 min) were optimized. The central composite design (CCD) was used to perform optimization and to investigate the influence of operating parameters on response variables (fractions of H-2, CO, CO2 and CH4). The results indicated the temperature and catalyst loading as the most significant reaction parameters influencing H-2 production and reducing the tar produced during the gasification process. The highest H2 fraction of 48.95 mol% (18.77 mol kg-biomass(-1)) was obtained at an optimum condition at 851 degrees C with catalyst loading of 16.4 wt% and reaction time of 28.8 min. The high R-2 values of 0.98, 0.97, 0.95, and 0.90 corresponding to the response variables (H-2, CO, CO2 and CH4) showed paramount estimation of model.
机译:这项研究提出了藻类生物质催化气化的富氢气体生产的优化。优化了在温度(700-900摄氏度),催化剂负载量(5-20​​ wt%)和反应时间(15-40分钟)变化条件下的三个操作参数。使用中央复合设计(CCD)进行优化并研究操作参数对响应变量(H-2,CO,CO2和CH4的分数)的影响。结果表明,温度和催化剂负载是影响H-2产生并减少气化过程中产生的焦油的最重要的反应参数。在851℃的最佳条件下,催化剂负载量为16.4 wt%,反应时间为28.8 min,最高氢气分数为48.95 mol%(18.77 mol kg生物量(-1))。与响应变量(H-2,CO,CO2和CH4)相对应的高R-2值0.98、0.97、0.95和0.90显示了模型的最高估计。

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