Bigarren mailako aluminioa propietate mekaniko optimizatuekin

Get rid of low value finishing operations. Gain efficiency, safe costs.

Utilization of steel slag as mold material for green molding castings to minimize silica dust in foundry process

Industria-honakinen kudeaketa aurreratua

 

Experimental validation of steel slag as thermal energy storage material in a 400 kWht prototype

Waste From Metallurgic Industry: A Sustainable High-Temperature Thermal Energy Storage Material

Bigarren mailako aluminioa propietate mekaniko optimizatuekin

Get rid of low value finishing operations. Gain efficiency, safe costs.

Utilization of steel slag as mold material for green molding castings to minimize silica dust in foundry process

Industria-honakinen kudeaketa aurreratua

 

Experimental validation of steel slag as thermal energy storage material in a 400 kWht prototype

Waste From Metallurgic Industry: A Sustainable High-Temperature Thermal Energy Storage Material

  • Kongresua

    ASME 2013 7th International Conference on Energy Sustainability collocated with the ASME 2013 Heat Transfer Summer Conference and the ASME 2013 11th International Conference on Fuel Cell Science, Engineering and Technology

  • Aurkezpen data

    07/2013

  • DOI

    10.1115/ES2013-18333

  • Tags

    B+G+i, Galda teknologiak, Hondakinak, Ingurumena, Lucía Unamunzaga