Biomass power generation system utilizing air heat and pressure.
Using wood as fuel Compared to oil and gas, wood fuel is CO2 neutral and helps mitigate the greenhouse effect. Generating energy from wood means producing heat within the CO2 neutral cycle found in nature. This cycle is based on the idea that only the CO2 absorbed by wood through photosynthesis is released during combustion. Small-scale CHP systems ORC systems and steam turbines have conditions related to their complexity and stringent monitoring, making it difficult to ensure profitability unless they are medium-sized systems with a thermal capacity of 2MW or more. In such large-capacity systems, there are often cases where thermal consumption is not sufficient throughout the year. The "HLT-100 COMPACT" hot air turbine, which falls within this low-output range, can utilize over 400kW of thermal consumption through power generation in a wood combustion system. A significant advantage compared to wood gasification systems is the potential to use a wide range of fresh chips with a moisture content of up to 55%.
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basic information
Hot Air Turbine Technology The hot air turbine is an automatic cogeneration system with a power output of 80 kW to 100 kW. Additionally, the heat generated during power generation can provide 460 kW of hot water supply through this cogeneration unit. The system overview diagram on the right shows the main equipment configuration and the flow of hot air. First, outside air is compressed by a "turbocharger." It is then heated in the "exhaust gas-air heat exchanger," and the necessary energy is extracted from the partially depressurized process air. Electricity is generated by the "hot air turbine," which has two turbo generators. The process air used for power generation is supplied from the "turbocharger." The exhaust air from the "turbine generator" is partially utilized as combustion air, while the remainder is cooled by the "exhaust heat exchanger." Furthermore, the heat contained in the combustion gas is sent to the hot water system via the "economizer."
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Among renewable energy sources, there has been a wide range of initiatives to utilize wood biomass, which aims to revitalize forestry, achieve local production for local consumption, and circulate money within the community, thereby bringing prosperity and revitalization to the region. These efforts have been accelerated by measures and systems introduced by the national and local governments. In response to such needs, our company can analyze the local wood biomass energy situation, conduct specific implementation methods, scale, and effect analysis, and provide optimal proposals through verification. After implementation, we offer direct after-sales service from manufacturers through our nationwide network, conduct regular maintenance visits, and monitor the system's on-time operational status using the Tomoe Heat Management System, while also recording history to ensure appropriate management and service.