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Techno-economic assessment of integrated hydrochar and high-grade activated carbon production for electricity generation and storage

机译:技术经济评估对电力和储存的集成水整合水炭和高级活性炭生产

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This paper deals with process simulation and techno-economic assessment on a bioenergy system for sustainable electricity production from low-grade biomass resources such as forest and agricultural residues, which is suitable for rural areas in developing regions susceptible to intermittent electricity supply. The core of the system is hydrothermal carbonization of wet biomass for production of hydrochar, followed by wet milling and direct combustion of the obtained hydrochar slurry fuels for heat and power generation. In order to improve the economy and make the process a closed-loop system, the paper also identifies a bio-refining strategy focusing on production of high-grade activated carbons for energy storage using supercapacitor. Aspen Plus software package is used as simulation and optimization tool. The result shows that the proposed system is highly feasible both technically and economically. The cost of electricity varies from 0.2 to 0.4 $/kWh in the efficiency range of (40 % to 20 %), which depends on the hydrothermal carbonization operating conditions.
机译:本文对森林和农业残留物等低级生物质资源(如森林和农业残留物)的可持续电力生产的生物能源制度进行了处理模拟和技术经济评估,这适用于易于间歇性电力供应的农村地区。该系统的核心是湿生物质的水热碳化,用于生产水炭,然后湿磨,直接燃烧所得的水浆浆料进行热量和发电。为了改善经济,使工艺成为闭环系统,还识别了专注于使用超级电容器生产高档活性碳的生物炼油策略。 Aspen Plus软件包用作仿真和优化工具。结果表明,所提出的系统在技术上和经济上非常可行。电力成本在效率范围(40%至20%)的效率范围内各不等,这取决于水热碳化操作条件。

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