Thermo-chemical networks using absorption and desorption to capture and valorise the potential of very low-grade residual heat (20 °C to 60 °C) to offer a reduction of end user costs and increased primary energy efficiency. The paper demonstrates the technical and economic potential of thermo-chemical networks by defining use cases and their related level of energy efficiency and technological feasibility. Furthermore, specific economic scenarios, including estimations on investment and operation costs, demonstrate the economic benefit of the technology. Simple payback periods between about 0.5 and 7.5 years indicate a good economic feasibility with end user costs below 4 €ct/kWh-equivalent and refunds of 0.5 to 1 €ct/kWh for the required r...
Recently, low temperature district heating networks (LTDH) have received attention in district heati...
Recently, low temperature district heating networks (LTDH) have received attention in district heati...
Recently, low temperature district heating networks (LTDH) have received attention in district heati...
Thermo-chemical networks using absorption and desorption to capture and valorise the potential of ve...
Thermo-chemical networks using absorption and desorption to capture and valorise the potential of ve...
© 2018 by the authors. Thermo-chemical networks using absorption and desorption to capture and valor...
Low-temperature residual heat and heat potentials of renewables below 70°C often stay unused as eith...
Thermo-chemical networks are a new technology for district networks, which can provide h...
Low-temperature residual heat and heat potentials of renewables below 70°C often stay unused as eith...
Thermochemical-technology has high potential for utilizing surplus heat from industrial processes an...
In order to reduce fossil fuels consumption and pollutant emissions, high contribution is given by d...
Recently, low temperature district heating networks (LTDH) have received attention in district heati...
Recently, low temperature district heating networks (LTDH) have received attention in district heati...
Recently, low temperature district heating networks (LTDH) have received attention in district heati...
In order to reduce fossil fuels consumption and pollutant emissions, high contribution is given by d...
Recently, low temperature district heating networks (LTDH) have received attention in district heati...
Recently, low temperature district heating networks (LTDH) have received attention in district heati...
Recently, low temperature district heating networks (LTDH) have received attention in district heati...
Thermo-chemical networks using absorption and desorption to capture and valorise the potential of ve...
Thermo-chemical networks using absorption and desorption to capture and valorise the potential of ve...
© 2018 by the authors. Thermo-chemical networks using absorption and desorption to capture and valor...
Low-temperature residual heat and heat potentials of renewables below 70°C often stay unused as eith...
Thermo-chemical networks are a new technology for district networks, which can provide h...
Low-temperature residual heat and heat potentials of renewables below 70°C often stay unused as eith...
Thermochemical-technology has high potential for utilizing surplus heat from industrial processes an...
In order to reduce fossil fuels consumption and pollutant emissions, high contribution is given by d...
Recently, low temperature district heating networks (LTDH) have received attention in district heati...
Recently, low temperature district heating networks (LTDH) have received attention in district heati...
Recently, low temperature district heating networks (LTDH) have received attention in district heati...
In order to reduce fossil fuels consumption and pollutant emissions, high contribution is given by d...
Recently, low temperature district heating networks (LTDH) have received attention in district heati...
Recently, low temperature district heating networks (LTDH) have received attention in district heati...
Recently, low temperature district heating networks (LTDH) have received attention in district heati...