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Waste heat
Marani offers units Marani ORCwhich are capable of generating electricity in the range up to 500 kWe and heat pump cooling systems with up to 200 kW cooling capacity.
Gyms Marani ORC can be combined with a boiler for the thermal utilisation of waste. The flue gases, which are the carrier of heat energy in this process and also waste, can be used as a heat source for the plant ORC. Marani offers comprehensive solutions for the recovery of heat from flue gases using high-temperature installations operating with an intermediate loop of thermal oil. A configuration with direct evaporation of the working medium is also possible.
The heat stream received is converted into electricity, either fed back into the grid or consumed for own use. An additional advantage is the possibility of cogeneration operation and the additional production of useful heat.
Use of technology MARANI ORC in the recovery of waste heat from thermal waste treatment increases the energy efficiency of the plant and makes it possible to reap additional profits from power generation.
The boiler flue gases can also be used to drive refrigeration systems MARANI. With a high-temperature heat source, it is possible to achieve a higher COP of cooling systems than with low-temperature sources. The cooling capacity can be used for standard cooling with chilled medium parameters of 6oC/12oC or high-temperature cooling, e.g. 16oC/19oC. This temperature can be customised, which can also have a positive impact on the performance of the chiller.
The use of the above technology also increases the efficiency of the plant by utilising waste heat, as well as enabling additional savings by, for example, replacing traditional energy-intensive air conditioning systems.
ORC advantages:
- additional electricity production - without burning additional fuel
- reduction in CO2 emissions
- increasing energy efficiency indicators
- no interference with the technological process
- high electricity generation efficiency of up to 20%
Advantages of jet cooling systems:
- providing cooling capacity, reducing the electricity consumption of standard cooling systems
- reduction in CO2 emissions
- increasing energy efficiency indicators
- no interference with the technological process
- wide adaptability of parameters of cooled medium
- high COP of the refrigeration system