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Experimental study on low temperature pyrolysis of forestry residues

机译:林业残留量低温热解的实验研究

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Biomass low temperature pyrolysis is a thermochemical treaitment method that is earmarked by an pyrolysis temperature ranging from 200°C to 300°C (under anoxic,heating rates ≤ 50°°C/min). This paper investigates the low temperature pyrolysis properties of the raw biomass,including mulberry branch and wood chips,which collected from Jiangsu,China was carried out in a self-designed continuous pyrolysis facility. The experiments were carried out at pyrolysis temperatures of 250-300 °C and residence time of 10~30min. The results show that the mass yield of mulberry branch charcoal decreased with the increasing of the pyrolysis temperature and residence time,and the pyrolysis temperature has a significant effect on low temperature pyrolysis than the residence time. The fixed carbon and elemental carbon content of the biomass charcoals increased and volatile matters,hydrogen and oxygen contents of biomass charcoals decreased with the increasing of the pyrolysis temperature and residence time,which results in the decreasing of H/C and O/C ratios. The energy density continues to increase with increase in the pyrolysis temperature and residence time.After the pre-treatment, the biomass charcoal compared with raw biomass gained a high energy density and the improvement of hydrophobicity (OH groups are responsible for hydrogen bonding with water).SEM micrographs of mulberry branch and mulberry branch charcoals show that the porosity and the degree of thermal degradation increase with increasing of the pyrolysis temperature.After based on a systematic consideration, the operating condition of 275°C and 10min was recommended.
机译:生物质低温热解是一种热化学纹理方法,其通过从200℃至300℃的热解温度(在氧毒,加热速率下≤50°C / min)中指定。本文研究了原料生物量的低温热解性,包括从江苏收集的桑树分支和木屑,中国是在自行设计的连续热解机具中进行的。实验在热解温度下进行250-300℃和10〜30min的停留时间。结果表明,桑树分支木炭的质量产量随着热解温和停留时间的增加而降低,热解温度对低温热解具有显着影响而不是停留时间。生物质炭的固定碳和元素碳含量增加,挥发性物质的挥发性,氢气和氧含量随着热解温和停留时间的增加而降低,这导致H / C和O / C比率的降低。随着热解温度和停留时间的增加,能量密度继续增加。在预处理后,与原料生物量相比,生物质木炭获得了高能量密度,疏水性的改善(OH基团是负责水的氢键合) 。Mulbery分支和桑树分支木炭的显微照片表明,热解温度随着热解温度的增加而增加。基于系统考虑,建议使用275°C和10min的操作条件。

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