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Hydrothermal Carbonization of Waste Biomass: Process Design, Modeling, Energy Efficiency and Cost Analysis

机译:废物生物质的水热碳化:工艺设计,建模,能源效率和成本分析

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In this paper, a hydrothermal carbonization (HTC) process is designed and modeled on the basis of experimental data previously obtained for two representative organic waste materials: off-specification compost and grape marc. The process accounts for all the steps and equipment necessary to convert raw moist biomass into dry and pelletized hydrochar. By means of mass and thermal balances and based on common equations specific to the various equipment, thermal energy and power consumption were calculated at variable process conditions: HTC reactor temperature T: 180, 220, 250 °C; reaction time θ: 1, 3, 8 h. When operating the HTC plant with grape marc (65% moisture content) at optimized process conditions (T = 220 °C; θ = 1 h; dry biomass to water ratio = 0.19), thermal energy and power consumption were equal to 1170 kWh and 160 kWh per ton of hydrochar produced, respectively. Correspondingly, plant efficiency was 78%. In addition, the techno-economical aspects of the HTC process were analyzed in detail, considering both investment and production costs. The production cost of pelletized hydrochar and its break-even point were determined to be 157 €/ton and 200 €/ton, respectively. Such values make the use of hydrochar as a CO 2 neutral biofuel attractive.
机译:在本文中,基于先前获得的两种代表性有机废料:不合格堆肥和葡萄渣的实验数据,对水热碳化(HTC)工艺进行了设计和建模。该过程考虑了将原始的湿生物质转化为干燥的颗粒状碳氢化合物所需的所有步骤和设备。通过质量平衡和热平衡,并根据特定于各种设备的通用方程式,在可变的工艺条件下计算出热能和功耗:HTC反应器温度T:180、220、250°C;反应时间θ:1、3、8小时。在最佳工艺条件下(T = 220°C;θ= 1 h;干生物质与水之比= 0.19)以葡萄渣(水分含量为65%)运行HTC设备时,热能和功耗分别为1170 kWh和每生产一吨碳氢化合物分别为160千瓦时。相应地,工厂效率为78%。此外,还对HTC流程的技术经济方面进行了详细分析,同时考虑了投资和生产成本。颗粒状炭的生产成本及其收支平衡点分别确定为157欧元/吨和200欧元/吨。这样的值使得使用碳氢化合物作为CO 2中性生物燃料具有吸引力。

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