Ongoing Supervisions
Projects
ABSolEU: closing the loop on ABS plastics recycling (ABSolEU)
PartnerEuropean Comission
At least 85% of end-of-life ABS plastic, found in durable products ranging from toys to automotive components and daily-use items such as shavers, ends up in landfills or being incinerated. The ABSolEU project aims to develop and mature a technology for the physical recycling of ABS, providing a clean and safe recyclate that is free of additives...Green Plastic recycling: Additives removal THrough renewable solvents to enhancing the enzymatic depolymerization (GreenPATH)
PartnerFundação para a Ciência e a Tecnologia
GreenPATH aims to develop a sustainable pretreatment process that combines high-pressure solid-liquid extraction (HP-SLE) with low-cost, renewable solvents, namely biosolvents and deep eutectic solvents (DES), to extract the additives in a key step prior to enzymatic depolymerization. The focus of this initiative is on the removal of organic and...Recovery and separation of platinum group metals and rare earth elements from spent automotive catalytic converters (PlatILPlus)
PartnerFundação para a Ciência e a Tecnologia
PlatILPlus is an FCT-funded research project that aims to develop eco-friendly yet readily applicable methodologies for the valorization of Spent Automotive Catalytic Converters (SACC) through hydrometallurgical processes. The project focuses on the recovery and separation of Platinum Group Metals (PGM) and Rare Earth Elements (REE) to reduce en...Publications
Recovery of superbase ionic liquid using aqueous two-phase systems
Sosa, FHB; Kilpeläinen, I; Rocha, J; Coutinho, JAP
2023, FLUID PHASE EQUILIBRIA, 573.
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Aqueous biphasic systems comprising analogues of glycine-betaine ionic liquids: Toward greener separation platforms
Cardoso, IS; Sosa, FHB; Silvestre, AJD; Robert, A; Freire, MG; Mohamadou, A
2023, SUSTAINABLE CHEMISTRY AND PHARMACY, 35.
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Recovery of ionic liquids from aqueous solutions using membrane technology
Sosa, FHB; Carvalho, PJ; Coutinho, JAP
2023, SEPARATION AND PURIFICATION TECHNOLOGY, 322.
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Unlocking the Full Potential of Green Propolis: A Novel Extraction Approach Using Eutectic Solvents for Improved Phenolic Compound Recovery
Contieri, L; Ribeiro, TB; Sosa, FHB; Vaz, BMC; Pizani, RS; Pintado, M; Ventura, SPM; Mesquita, LMD; Rostagno, MA
2023, ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 11, 36, 13470-13482.
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Combining eutectic solvents and pressurized liquid extraction coupled in-line with solid-phase extraction to recover, purify and stabilize anthocyanins from Brazilian berry waste
Mesquita, LD; Contieri, LS; Sosa, FHB; Pizani, RS; Chaves, J; Viganó, J; Ventura, SPM; Rostagno, MA
2023, GREEN CHEMISTRY, 25, 5, 1884-1897.
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Fast and green universal method to analyze and quantify anthocyanins in natural products by UPLC-PDA
Mesquita, LMD; Contieri, LS; Sanches, VL; Kamikawachi, R; Sosa, FHB; Vilegas, W; Rostagno, MA
2023, FOOD CHEMISTRY, 428.
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Combining eutectic solvents and food-grade silica to recover and stabilize anthocyanins from grape pomace
de Souza Mesquita L.M.; Sosa F.H.B.; Contieri L.S.; Marques P.R.; Viganó J.; Coutinho J.A.P.; Dias A.C.R.V.; Ventura S.P.M.; Rostagno M.A.
2023, Food Chemistry, 406.
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Conversion of Organosolv and Kraft lignins into value-added compounds assisted by an acidic deep eutectic solvent
Sosa, FHB; Bjelic, A; Coutinho, JAP; Costa, MC; Likozar, B; Jasiukaityte-Grojzdek, E; Grilc, M; Lopes, AMD
2022, SUSTAINABLE ENERGY & FUELS, 6, 20, 4800-4815.
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Physico-chemical characterization of aqueous solutions of superbase ionic liquids with cellulose dissolution capability
Martins, MAR; Sosa, FHB; Kilpelainen, I; Coutinho, JAP
2022, FLUID PHASE EQUILIBRIA, 556.
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Preconcentration of Superbase Ionic Liquid from Aqueous Solution by Membrane Filtration
Sosa, Filipe H B Carvalho, Pedro J Coutinho, João A P
2022, Industrial & Engineering Chemistry Research.
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Deep eutectic solvents vs. ionic liquids: Similarities and differences

Current Developments in Biotechnology and Bioengineering: Deep Eutectic Solvent Fund Emerging Applications
Sosa, F.H., Coutinho, J.A. and da Costa Lopes, A.M.
2022, 105-138, Elsevier.
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Deep Eutectic Solvents for Sustainable Separation Processes

In Gyorgy Szekely, Dan Zhao (Eds.), Sustainable Separation Engineering: Materials, Techniques and Process Development
Filipe H. B. Sosa, Mariana C. da Costa, Armando J. D. Silvestre, André M. da Costa Lopes
2022, 605-652, Willey.
ISBN:
978-1-119-74008-7
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