The aim of this thesis is to simulate the behavior of a supercritical precipitator through the performance of macroscopic balances of mass and energy. The studied process is innovative for environmental sustainability as it allows the recovery of heavy metals from industrial wastewater.

The aim of this thesis is to simulate the behavior of a supercritical precipitator through the performance of macroscopic balances of mass and energy. The studied process is innovative for environmental sustainability as it allows the recovery of heavy metals from industrial wastewater.

Analysis and simulation through macroscopic balances of a supercritical precipitator

BAFFO, ALESSIA
2024/2025

Abstract

The aim of this thesis is to simulate the behavior of a supercritical precipitator through the performance of macroscopic balances of mass and energy. The studied process is innovative for environmental sustainability as it allows the recovery of heavy metals from industrial wastewater.
2024
Analysis and simulation through macroscopic balances of a supercritical precipitator
The aim of this thesis is to simulate the behavior of a supercritical precipitator through the performance of macroscopic balances of mass and energy. The studied process is innovative for environmental sustainability as it allows the recovery of heavy metals from industrial wastewater.
Recover
Wastewater
Water
Precipitation
Nanoparticles
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.12608/87382