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Scenarios for evaluating energy efficiency measures in industrial energy systems

Arbetsnotat Nr 26, Augusti 2004 - A senior research project conducted at Chalmers within the framework of Program Energisystem´s Industrial Energi Systems research consortium

Simon Harvey (Institutionen för kemiteknik och miljövetenskap, Värmeteknik och maskinlära)
2004. ISBN: 1403-8307.- 9 s.
[Rapport]

Decreasing greenhouse gas (GHG) emissions will be a major driver when designing or retrofitting industrial process energy systems in the future. This can be achieved by e.g. increased heat recovery, heat pumping of waste heat, integration of combined heat and power (CHP), increased component energy efficiency, and switching to renewable fuels. For many applications, it is expected that energy policy instruments will result in fuel switching in favour of biomass fuels. Biomass fuel is a limited resource, thus it is expected that the increased demand for biofuel will increase the market price for this type of fuel.




Denna post skapades 2007-08-03. Senast ändrad 2015-07-28.
CPL Pubid: 44619

 

Institutioner (Chalmers)

Institutionen för kemiteknik och miljövetenskap, Värmeteknik och maskinlära (2002-2004)

Ämnesområden

Kemiteknik

Chalmers infrastruktur

Relaterade publikationer

Inkluderade delarbeten:


Linking process integration and energy market scenarios to evaluate biomass saving measures at pulp mills


Energy market scenarios for evaluating energy efficiency measures in industrial energy systems


Scenarios for Evaluating Future Process Integration Measures in Large Energy Systems