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Biochar production through slow pyrolysis of different biomass materials: Seeking the best operating conditions

机译:通过缓慢热解不同生物质材料来生产生物炭:寻求最佳操作条件

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摘要

The effect of three operating parameters (peak temperature, pressure, and pyrolysis atmosphere) during the slow pyrolysis of three biomass sources (corn stover, vine shoots, and two-phase olive mill waste) was extensively analyzed. A 2-level full factorial design of experiments was adopted to assess the effect of the above-mentioned factors on the potential stability of biochar as well as the yields of the main pyrolysis products. To evaluate the effect of the biomass feedstock, the design was divided into three blocks (one per biomass feedstock). Results from the statistical analyses indicated that the properties of biochar related to its potential stability were mainly affected by the peak temperature and, to a lesser extent, the biomass feedstock. A significant increase in the yield of produced gas was observed when pressure was raised. This increase in the total gas yield was in part due to a higher release of CO, CH4, and H-2. Using a pyrolysis atmosphere of CO2 (instead of N-2) did not result in any remarkable change in neither the distribution of the pyrolysis products nor the potential stability of biochar. However, when CO2 was used as carrier gas, a significant increase in the yield of CO2 at the expense of produced CO2, was observed. The findings reported herein suggest that processing biomass through pressurized slow pyrolysis under CO2 atmosphere is interesting to simultaneously obtain two valuable products: a biochar with an appropriate carbon sequestration potential, and a produced gas with an appropriate composition for energy recovery purposes.
机译:广泛分析了三种生物质源(玉米秸秆,藤蔓芽和两相橄榄磨废料)缓慢热解过程中三个操作参数(峰值温度,压力和热解气氛)的影响。采用2级全因子实验设计来评估上述因素对生物炭潜在稳定性以及主要热解产物收率的影响。为了评估生物质原料的效果,设计被分为三个部分(每种生物质原料一个)。统计分析结果表明,与生物炭潜在稳定性相关的特性主要受峰值温度的影响,而在较小程度上受生物质原料的影响。当压力升高时,观察到产生的气体的产率显着增加。总气体产量的增加部分是由于较高的CO,CH4和H-2释放。使用CO2(而不是N-2)的热解气氛不会导致热解产物的分布或生物炭的潜在稳定性发生任何显着变化。然而,当将CO 2用作载气时,观察到CO 2的产率显着增加,但以产生的CO 2为代价。本文报道的发现表明,有趣的是通过在CO2气氛下通过加压缓慢热解来处理生物质,以同时获得两种有价值的产品:具有适当固碳潜力的生物炭,以及具有用于能量回收目的适当成分的产出气。

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