Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Clara B, Alvim"'
Autor:
Clara B. Alvim, Míriam Cristina Santos Amaral, Ana C. F. Cerqueira, Priscila Barbosa Moser, Bárbara C. Ricci
Publikováno v:
Journal of Environmental Science and Health, Part A. 53:430-435
Direct (UV) and hydrogen peroxide-assisted (UV/H2O2) photolysis were investigated in bench-scale for removing the organic compounds present in the electrodialysis reversal (EDR) brine from a refinery wastewater reclamation plant. In the UV/H2O2 exper
Autor:
Yuri Abner Rocha Lebron, Regina P.M. Moreira, Clara B. Alvim, Amanda Vitória Santos, Victor Rezende Moreira, Míriam Cristina Santos Amaral, Liséte Celina Lange, Lucilaine Valéria de Souza Santos
Publikováno v:
Chemical Engineering Journal. 397:125482
This study aimed at the assessment of UV, UV/H2O2 and ozonation processes on the removal of 26 pharmaceutically active compounds (PhACs) from a membrane distillation (MD) surface water concentrate. Furthermore, environmental and human health risk ass
Autor:
Mateus F. Martins, Míriam Cristina Santos Amaral, Luiza B. Grossi, Clara B. Alvim, Cecília M.S. Alvares
Publikováno v:
Separation and Purification Technology. 233:116052
Events of acute pollution – as the break of dams, once reached water bodies can difficult or even impair the standard surface water treatments, provoking water shortage. As a mean to guarantee water during these emergency situations, the establishm
Publikováno v:
Journal of environmental science and health. Part A, Toxic/hazardous substancesenvironmental engineering. 53(5)
Direct (UV) and hydrogen peroxide-assisted (UV/H
Critical performance assessment of a submerged hybrid forward osmosis - membrane distillation system
Autor:
M. R Silva, C. Mancel, C. Q Celestino, Clara B. Alvim, Konrad Koch, Bárbara C. Ricci, Laura Hamdan de Andrade, Clara V. Faria, I. L. C Cunha, Bertram Skibinski, Míriam Cristina Santos Amaral, Liséte Celina Lange
Publikováno v:
Desalination. 468:114082
FO and MD have their drawbacks when employed as independent systems. To establish substantial superiority over single membrane process, an innovative FO and MD integration in a hybrid submerged module was introduced in this study. Initially, FO and M