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Influence of AAEM species in coal and biomass on steam co-gasification of chars of blended coal and biomass

机译:煤和生物质中AAEM物质对煤和生物质混合焦炭蒸汽共气化的影响

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This study investigated effects of blending ratio and alkali and alkaline earth metallic (AAEM) species in the feedstock on char reactivity and producer gas composition in steam co-gasification of chars of blended coal and biomass. Experiments were conducted on a bench-scale fixed bed gasifier in which lignite was used as coal and radiata pine was used as biomass. The blending ratios of lignite to pine (L/P) were, respectively, 0:100 (pure pine), 20:80, 50:50, 80:20 and 100:0 (pure lignite). Lignite and radiata pine were first separately ground to fine particles which were then blended based on pre-set ratios. After this, the blends were pelletized and charred at 900 degrees C. In order to investigate the effect of AAEM in the coal, experiments were also performed using blended pine and acid-washed lignite from which most of AAEM species were effectively removed. The co-gasification operation temperature was 950 degrees C. From the experimental results, it was found that the ratios of H-2/CO, H-2/CO2 and CO/CO2 in the producer gas were nonlinearly related to L/P ratio in the lignite blended chars; however, these gaseous ratios were linearly correlated to the L/P ratio in co-gasification of acid-washed lignite blended chars. In addition, by removing the AAEM species in lignite, yields of H-2 and CO2 were reduced while CO yield was increased. The char reactivity of acid-washed lignite and pine blends was decreased and this decrease became more significant with increase in coal to biomass blending ratio. (C) 2016 Published by Elsevier Ltd.
机译:这项研究调查了混合比例和原料中碱金属和碱土金属(AAEM)种类对煤和生物质混合焦炭蒸汽共气化过程中焦炭反应性和生产气体组成的影响。在台式固定床气化炉上进行实验,其中褐煤用作煤,辐射松作为生物质。褐煤与松木的混合比(L / P)分别为0:100(纯松木),20:80、50:50、80:20和100:0(纯褐煤)。首先将褐煤和辐射松分别磨碎成细颗粒,然后根据预设比例进行混合。此后,将共混物造粒并在900摄氏度下烧焦。为了研究AAEM在煤中的作用,还使用混合的松木和酸洗褐煤进行了实验,从中有效去除了大多数AAEM物质。共气化操作温度为950℃。从实验结果发现,生产气中H-2 / CO,H-2 / CO2和CO / CO2的比率与L / P比率非线性相关。在褐煤混合炭中;然而,在酸洗褐煤混合炭共气化过程中,这些气体比例与L / P比例线性相关。此外,通过去除褐煤中的AAEM物种,H-2和CO2的产量降低,而CO的产量提高。酸洗褐煤和松木混合物的炭反应性降低,并且随着煤与生物质混合比的增加,这种降低变得更加明显。 (C)2016由Elsevier Ltd.出版

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