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The Effect of Environmental Conditions on the Degradation Behavior of Biomass Pellets

机译:环境条件对生物质颗粒降解行为的影响

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摘要

Biomass pellets provide a pivotal opportunity in promising energy transition scenarios as a renewable source of energy. A large share of the current utilization of pellets is facilitated by intensive global trade operations. Considering the long distance between the production site and the end-user locations, pellets may face fluctuating storage conditions, resulting in their physical and chemical degradation. We tested the effect of different storage conditions, from freezing temperatures (?19 °C) to high temperature (40 °C) and humidity conditions (85% relative humidity), on the physicochemical properties of untreated and torrefied biomass pellets. Moreover, the effect of sudden changes in the storage conditions on pellet properties was studied by moving the pellets from the freezing to the high temperature and relative humidity conditions and vice versa. The results show that, although storage at one controlled temperature and RH may degrade the pellets, a change in the temperature and relative humidity results in higher degradation in terms of higher moisture uptake and lower mechanical strength.
机译:生物质颗粒在有前途的能量转变情景中提供了一种枢转机会,作为可再生能源来源。通过强化全球贸易运营促进了大量目前的颗粒利用率。考虑到生产现场和最终用户位置之间的长距离,颗粒可能面临波动的储存条件,导致其物理和化学降级。我们测试了不同储存条件的效果,从冷冻温度(α19c)到高温(40°C)和湿度条件(85%相对湿度),对未经处理的和雾化生物质颗粒的物理化学性质进行了测试。此外,通过将粒料从冷冻到高温和相对湿度条件移动,研究了储存条件突然变化对颗粒性能的影响,反之亦然。结果表明,尽管在一个受控温度和RH处的储存可能降解颗粒,但温度和相对湿度的变化导致更高的湿度吸收和较低机械强度方面的更高的降解。

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