Modern society requires large amounts of materials which lead to emissions of greenhouse gases. Effective climate policy should focus on not just energy efficiency but material efficiency as well. Exergy analysis is a powerful metric used to identify opportunities for efficiency improvement in industrial resource flow systems. Exergy offers a single unified measure of energy and material resources and indicates the real thermodynamic value of these resources, but the method suffers from a lack of comprehensive specific material chemical exergy datasets. The variety of different materials used in the global resource supply chain necessitates a combination of exergy calculation approaches. These approaches are combined into a single exergy ca...
The chemical industry is responsible for roughly 6 % of global primary energy consumption and global...
Chemicals production is responsible for 10% of global energy consumption and 7% of greenhouse gas em...
Master of ScienceDepartment of Chemical EngineeringJohn SchlupThe second law of thermodynamics descr...
© 2019 Institution of Chemical Engineers To achieve agreed targets for reducing global carbon emissi...
© 2019 Institution of Chemical Engineers To achieve agreed targets for reducing global carbon emissi...
While resource aspects are gaining increasing importance for the sustainability assessment of new te...
Industry is responsible for 40\% of global greenhouse gas (GHG) emissions, which drive anthropogenic...
In this research we propose a physical measure of resource efficiency, based on exergy, which combin...
© 2018 eceee and the authors, Stockholm. The chemical industry is responsible for roughly 6 % of glo...
AbstractIn this research we propose a physical measure of resource efficiency, based on exergy, whic...
Energy and materials support food production, maintain and expand material stocks (e.g. buildings an...
The chemical industry is responsible for roughly 6 % of global primary energy consumption and global...
Energy and materials support food production, maintain and expand material stocks (e.g. buildings an...
As the power and transport sectors decarbonize, industrial emissions will become the main focus of d...
Abstract: As the power and transport sectors decarbonize, industrial emissions will become the main ...
The chemical industry is responsible for roughly 6 % of global primary energy consumption and global...
Chemicals production is responsible for 10% of global energy consumption and 7% of greenhouse gas em...
Master of ScienceDepartment of Chemical EngineeringJohn SchlupThe second law of thermodynamics descr...
© 2019 Institution of Chemical Engineers To achieve agreed targets for reducing global carbon emissi...
© 2019 Institution of Chemical Engineers To achieve agreed targets for reducing global carbon emissi...
While resource aspects are gaining increasing importance for the sustainability assessment of new te...
Industry is responsible for 40\% of global greenhouse gas (GHG) emissions, which drive anthropogenic...
In this research we propose a physical measure of resource efficiency, based on exergy, which combin...
© 2018 eceee and the authors, Stockholm. The chemical industry is responsible for roughly 6 % of glo...
AbstractIn this research we propose a physical measure of resource efficiency, based on exergy, whic...
Energy and materials support food production, maintain and expand material stocks (e.g. buildings an...
The chemical industry is responsible for roughly 6 % of global primary energy consumption and global...
Energy and materials support food production, maintain and expand material stocks (e.g. buildings an...
As the power and transport sectors decarbonize, industrial emissions will become the main focus of d...
Abstract: As the power and transport sectors decarbonize, industrial emissions will become the main ...
The chemical industry is responsible for roughly 6 % of global primary energy consumption and global...
Chemicals production is responsible for 10% of global energy consumption and 7% of greenhouse gas em...
Master of ScienceDepartment of Chemical EngineeringJohn SchlupThe second law of thermodynamics descr...