FOTODEGRADAÇÃO SOLAR DE EFLUENTE TÊXTIL UTILIZANDO TIO2 IMOBILIZADO EM ALUMÍNIO RECICLADO release_shs7lby7g5b2zo6dhf72brnrju

by R. V. S AQUINO, A. A BARBOSA, A. F. B OLIVEIRA, E. S. M. R MEZZAVILLA, N. S. C. S NEVES, O. R. S ROCHA

References

NOTE: currently batch computed and may include additional references sources, or be missing recent changes, compared to entity reference list.
Fuzzy reference matching is a work in progress!
Read more about quality, completeness, and caveats in the fatcat guide.
Showing 1 - 11 of 11 references (in 45ms)
[b0]

via grobid
BARROS AL, DOMINGOS AAQ, FECHINE PBA, KEUKELEIRE D, NASCIMENTO
[b1]

via grobid
RF.PET as a Support Material for TiO2 in Advanced Oxidation Processes.J. Appl. Polym. Sci, v. 131, p. 1-9, 2014.
[b2]

via fuzzy
Degradação fotocatalítica de tartrazina com TiO2 imobilizado em esferas de alginato
Ithiara Dalponte, Álvaro Luiz Mathias, Regina Maria Matos Jorge, Regina Weinschutz
2016   Química Nova
doi:10.21577/0100-4042.20160141 
web.archive.org [PDF]
[b3]

via fuzzy
Photodegradation of methylene blue with a titanium dioxide/polyacrylamide photocatalyst under sunlight
Foad Kazemi, Zahra Mohamadnia, Babak Kaboudin, Zeinab Karimi
2016   Journal of Applied Polymer Science
doi:10.1002/app.43386 
[b4]

via fuzzy
Comparative efficiency of TiO2 nanoparticles in suspension vs. immobilization into P(VDF–TrFE) porous membranes
P. M. Martins, R. Miranda, J. Marques, Carlos. J. Tavares, G. Botelho, S. Lanceros-Mendez
2016   RSC Advances
doi:10.1039/c5ra25385c 
[b5]

via grobid
ROCHA EMR, VILAR VJP, FONSECA A, SARAIVA I, BOAVENTURA RAR. Landfill leachate treatment by solar-driven AOPs. Solar Energy, v. 85, p. 46-56, 2011.
[b6]

via fuzzy
Photocatalytic degradation of textile wastewater in presence of hydrogen peroxide: Effect of cerium doping titania
Azza Touati, Tijani Hammedi, Wahiba Najjar, Zouhaier Ksibi, Sami Sayadi
2016   Journal of Industrial and Engineering Chemistry
doi:10.1016/j.jiec.2015.12.008 
[b7]

via grobid
VILAR VJP, PINHO LX, PINTOR AMA, BOAVENTURA RAR. Treatment of textile wastewaters by solar-driven advanced oxidation processes. Solar Energy, v. 85, p. 1927-1934, 2011.
[b8]

via grobid
WANG Y, HO S-H, CHENG C-L, GUO W-Q, NAGARAJAN D, REN N-Q.Perspectives on the feasibility of using microalgae for industrial wastewater treatment. Biores. Technology, v. 222, p. 485-497, 2016.
[b9]

via grobid
YU KL, SHOW PL, ONG HC, LING TC, LAN JC-W, CHEN W-H, CHANG J-S.
[b10]

via grobid
Microalgae from wastewater treatment to biochar -Feedstock preparation and conversion technologies. Energy Conversion and Management, v.150, p.1-13, 2017.