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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Co-hydrothermal carbonization of food waste-woody biomass blend towards biofuel pellets production
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Co-hydrothermal carbonization of food waste-woody biomass blend towards biofuel pellets production

机译:食品废物垃圾生物质融合的生物燃料颗粒生产的共热碳化

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摘要

Co-hydrothermal carbonization of food waste-woody biomass blend was conducted to enhance the pelletization and hydrochar-fuel properties. The hydrochar was characterized by proximate, elemental analysis and HHVs, whilst energy consumption of pelletization, tensile strength, and combustion characteristics of hydrochar pellets were evaluated. Results showed that food waste (FW) blended with 0–50% mainly decreased H/C of hydrochar, while blend ratio from 75% to 100% mainly decreased O/C. When FW blended from 0% to 75%, the energy consumption for hydrochar palletization decreased about 12–17?J, whereas tensile strength of pellets increased about 2.4–5.5?MPa by formation of solid bridge when woody biomass (WS) ratio was increased. The hydrochar pellets from high ratio FW had decreased ignition temperature and maximum weight loss rate with wider temperature range, indicating the increased flammability and moderate combustion. These findings demonstrate that HTC of food waste-woody biomass blend was suitable for pelletization towards solid biofuel production.
机译:进行食物废物 - 木质生物质混合物的加氢碳化以增强造粒和氢炭 - 燃料性能。通过近似,元素分析和HHV的特征在于,评估颗粒的能耗,抗拉强度的能耗,抗拉强度和氨基粒粒料的燃烧特性的特征。结果表明,食品废物(FW)与0-50%的氢气分配,氢乙酸H / C主要降低,而共混物比率为75%至100%,主要降低O / C.当FW混合0%至75%时,氢丙基泊托的能量消耗减少了约12-17×j,而当木质生物质(Ws)比增加时,颗粒的拉伸强度增加约2.4-5.5μm。 。来自高比率FW的氢淀味粒子降低了点火温度和最大重量损失率,具有更宽的温度范围,表明易燃性和中等燃烧增加。这些研究结果表明,食品废物 - 木质生物质混合物的HTC适用于造成固体生物燃料生产的造粒。

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