0000000000528853

AUTHOR

F. Gross

showing 3 related works from this author

Membrane distillation: Solar and waste heat driven demonstration plants for desalination

2013

Abstract The development of small to medium size, autonomous and robust desalination units is needed to establish an independent water supply in remote areas. This is the motivation for research on alternative desalination processes. Membrane distillation (MD) seems to meet the specific requirements very well. This work is focused on experimental studies on full scale demonstration systems, utilizing a parallel multi MD-module setup. Three different plant concepts are introduced, one of them is waste heat driven and two of them are powered by solar thermal collectors. Design parameters and system design are presented. After the analysis of plant operation a comparison among the plants as we…

EngineeringSettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciSolarthermieGeneral Chemical EngineeringFull scaleGeothermal desalinationMembrane distillationheat thermal energy storageDesalinationsteam generationSolarthermische KraftwerkeWaste heatGeneral Materials Scienceheat exchangerWater Science and TechnologyWaste managementbusiness.industryMechanical EngineeringHochtemperaturspeicherGeneral ChemistrySolar energyMembrane distillation system design solar energy desalination GORSpeichertechnologienSystems designbusinessSolarthermie und OptikThermal energy
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Treatment of electroplating wastewater by combining membrane technologies and reactive precipitation process at pilot scale

2022

Industrial wastewater treatment Sulphuric acid recovery Brine valorization Advances membranes technologieMembrane distillationDiffusion dialysi
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An integrated approach for HCl and metals recovery from waste pickling solutions: pilot plant design and operations

Continuous regeneration of industrial pickling solutions and recovery of valuable materials are implemented in a pilot-scale plant including diffusion dialysis, membrane distillation and reactive precipitation units. The main results of the preliminary assessment of on site operation are presented. Different hydrochloric acid concentration and metals composition were investigated and the performance of the system were analysed in terms of quality of recovered compounds, energy efficiency and environmental footprint.

Settore ING-IND/26 - Teoria Dello Sviluppo Dei Processi Chimiciindustrial wastewateracid recoverymembrane technologies
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