This work was devoted to a new methodological framework, which combines the Life Cycle Assessment (LCA) method and the process simulation software (Aspen Plus), in order to improve the quality of data used for carrying out the Life Cycle Inventory (LCI) of the classical steelmaking route. The new approach adopted in the present work, is to carry out the inventory of the defined system via simplified physical-chemical models. Using Aspen Plus software, we have developed simplified physical-chemical models for each of the subsystem defined by the boundaries of the classical steelmaking route: coking plant, sintering plant, blast furnace, basic oxygen furnace and hot rolling. The modelling strategy was based on physical and chemical considerat...
The steel industry is focused on reducing its environmental impact. Using the life cycle assessment ...
The purpose of this work is to carry out an accurate and extensive environmental analysis of the st...
Life Cycle Assessment (LCA) and eco design: towards optimized refractory materials for a green steel...
Ce travail est consacré au développement d'un couplage méthodologique entre la méthode d'Analyse de ...
Ce travail est consacré au développement d un couplage méthodologique entre la méthode d Analyse de ...
Accès restreint aux membres de l'Université de Lorraine jusqu'au 2015-06-19This research study deals...
Ce travail de recherche porte sur la modélisation mathématique des principaux procédés sidérurgiques...
The following paper contains importance of LCA in the iron and steel industry. The metallurgy sector...
Steel industry kept pace with actual trends for environmental protection in many ways – through diff...
The steel industry is one of the most energy-intensive sectors, as it requires a great amount of res...
The purpose of this work is that of carrying out an accurate and extensive environmental analysis o...
The present thesis delved into the current and future interactions within the European Steel Industr...
Several studies have been carried out in order to evaluate optimal process management prac...
This paper describes a statistical approach to modelling the LD-steelmaking process. The steelmaking...
The purpose of this work is to carry out an accurate and extensive environmental analysis of the ste...
The steel industry is focused on reducing its environmental impact. Using the life cycle assessment ...
The purpose of this work is to carry out an accurate and extensive environmental analysis of the st...
Life Cycle Assessment (LCA) and eco design: towards optimized refractory materials for a green steel...
Ce travail est consacré au développement d'un couplage méthodologique entre la méthode d'Analyse de ...
Ce travail est consacré au développement d un couplage méthodologique entre la méthode d Analyse de ...
Accès restreint aux membres de l'Université de Lorraine jusqu'au 2015-06-19This research study deals...
Ce travail de recherche porte sur la modélisation mathématique des principaux procédés sidérurgiques...
The following paper contains importance of LCA in the iron and steel industry. The metallurgy sector...
Steel industry kept pace with actual trends for environmental protection in many ways – through diff...
The steel industry is one of the most energy-intensive sectors, as it requires a great amount of res...
The purpose of this work is that of carrying out an accurate and extensive environmental analysis o...
The present thesis delved into the current and future interactions within the European Steel Industr...
Several studies have been carried out in order to evaluate optimal process management prac...
This paper describes a statistical approach to modelling the LD-steelmaking process. The steelmaking...
The purpose of this work is to carry out an accurate and extensive environmental analysis of the ste...
The steel industry is focused on reducing its environmental impact. Using the life cycle assessment ...
The purpose of this work is to carry out an accurate and extensive environmental analysis of the st...
Life Cycle Assessment (LCA) and eco design: towards optimized refractory materials for a green steel...