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Sarmad, Shokat
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Sarmad, S., Nikjoo, D. & Mikkola, J.-P. (2025). Innovative CO2 capture technologies: Exploring the potential of porous liquids containing deep eutectic solvents and hypercrosslinked polymers. Separation and Purification Technology, 352, Article ID 128189.
Öppna denna publikation i ny flik eller fönster >>Innovative CO2 capture technologies: Exploring the potential of porous liquids containing deep eutectic solvents and hypercrosslinked polymers
2025 (Engelska)Ingår i: Separation and Purification Technology, ISSN 1383-5866, E-ISSN 1873-3794, Vol. 352, artikel-id 128189Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

The current study presented a porous liquid (PL) prepared from propylene glycol-based deep eutectic solvent (DES) and hyper-crosslinked polymers (HCP) that are liquids over wide temperature ranges, including ambient temperature. It was shown that the solvent molecules are too large to penetrate the pores of HCP, so the PL is maintained as a suspension with permanent free volume for several months and can absorb large amounts of gases. This study marks the pioneering use of DESs as the liquid medium, replacing ionic liquids due to their closely matched properties. The structural features of both DES and HCP are retained; the increase in CO2 absorption capacity compared to pure DES is due to the presence of a porous solid and is proportional to the amount of solid. The absorbed CO2 amount rises from 1.0105 mmol·g−1 in pure DES to 1.3232, 1.6027, and 1.2168 mmol·g−1 in PL-1, PL-2, and PL-3, respectively. Thermodynamic analysis revealed that the enthalpy of gas absorption allows straightforward regeneration of the PLs in the studied cases. The investigated PLs show great potential as gas absorbents, with the incorporation of just 0.5 wt% of porous polymer material leading to an impressive increase in solvent absorption capacity, up to 59 %.

Ort, förlag, år, upplaga, sidor
Elsevier, 2025
Nyckelord
CO2 capture, Deep eutectic solvent, Hypercrosslinked polymers, Porous liquids, Propylene glycol
Nationell ämneskategori
Analytisk kemi
Identifikatorer
urn:nbn:se:umu:diva-225935 (URN)10.1016/j.seppur.2024.128189 (DOI)001249873000001 ()2-s2.0-85194943480 (Scopus ID)
Tillgänglig från: 2024-06-12 Skapad: 2024-06-12 Senast uppdaterad: 2025-04-24Bibliografiskt granskad
Dinh, V. M., Gorza, G., Samikannu, A., Konwar, L. J., Tesfalidet, S., Sarmad, S., . . . Mikkola, J.-P. (2025). Synergistic catalyst Ru/NbOPO4/TiO2 for selective hydrodeoxygenation of phenolics towards unlocking lignin's potential. Molecular Catalysis, 582, Article ID 115177.
Öppna denna publikation i ny flik eller fönster >>Synergistic catalyst Ru/NbOPO4/TiO2 for selective hydrodeoxygenation of phenolics towards unlocking lignin's potential
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2025 (Engelska)Ingår i: Molecular Catalysis, ISSN 2468-8274, Vol. 582, artikel-id 115177Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

Lignin valorization has attracted significant attention in recent years due to its abundance and potential as a renewable organic carbon resource to produce a variety of value-added chemicals and fuel additives. Catalytic upgrading of lignin faces challenges due to its complex structure and an active catalyst with selective surface properties is needed to break the stable C–O and C–C interunit linkages. In the present work, we developed a series of multifunctional Ru/NbOPO4/TiO2 catalysts with varying surface acidic properties and explored their potential upon hydrogenolysis of lignin model compound eugenol. Textural and surface acidic properties of the prepared materials were studied by means of different techniques such as N2-physisorption, NH3-TPD, XRD, SEM-EDS, Raman spectra, FT-IR, and TEM. Our catalytic results revealed synergistic role of acid and metal sites upon catalyst performance, whereupon high yields of hydrocarbons (86.9–100 wt.%) were obtained with selective cleavage of the methoxy and hydroxy groups under milder conditions. A kinetic study further identified the reaction mechanism and determined a rate law and partial reaction orders. This research advances the understanding of catalyst design for upgrading of the lignin or lignin monomers into value added chemicals. and on the other hand, contributes to sustainable development by maximizing biomass usage and providing environmentally friendly alternatives in renewable energy.

Ort, förlag, år, upplaga, sidor
Elsevier, 2025
Nyckelord
Supported solid acid catalysts, Niobium oxyphosphate Lignin, Eugenol, Hydrodeoxygenation, Hydrocarbons
Nationell ämneskategori
Kemi
Identifikatorer
urn:nbn:se:umu:diva-238638 (URN)10.1016/j.mcat.2025.115177 (DOI)2-s2.0-105004646937 (Scopus ID)
Forskningsfinansiär
Bio4EnergyKnut och Alice Wallenbergs Stiftelse
Tillgänglig från: 2025-05-09 Skapad: 2025-05-09 Senast uppdaterad: 2025-05-19Bibliografiskt granskad
Khasevani, S. G., Nikjoo, D., Chaxel, C., Umeki, K., Sarmad, S., Mikkola, J.-P. & Concina, I. (2023). Empowering adsorption and photocatalytic degradation of ciprofloxacin on bioi composites: a material-by-design investigation. ACS Omega, 8(46), 44044-44056
Öppna denna publikation i ny flik eller fönster >>Empowering adsorption and photocatalytic degradation of ciprofloxacin on bioi composites: a material-by-design investigation
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2023 (Engelska)Ingår i: ACS Omega, E-ISSN 2470-1343, Vol. 8, nr 46, s. 44044-44056Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

Binary and ternary composites of BiOI with NH2-MIL-101(Fe) and a functionalized biochar were synthesized through an in situ approach, aimed at spurring the activity of the semiconductor as a photocatalyst for the removal of ciprofloxacin (CIP) from water. Experimental outcomes showed a drastic enhancement of the adsorption and the equilibrium (which increased from 39.31 mg g-1 of bare BiOI to 76.39 mg g-1 of the best ternary composite in 2 h time), while the kinetics of the process was not significantly changed. The photocatalytic performance was also significantly enhanced, and the complete removal of 10 ppm of CIP in 3 h reaction time was recorded under simulated solar light irradiation for the best catalyst of the investigated batch. Catalytic reactions supported by different materials obeyed different reaction orders, indicating the existence of different mechanisms. The use of scavengers for superoxide anion radicals, holes, and hydroxyl radicals showed that although all these species are involved in CIP photodegradation, the latter play the most crucial role, as also confirmed by carrying out the reaction at increasing pH conditions. A clear correlation between the reduction of BiOI crystallite sizes in the composites, as compared to the bare material, and the material performance as both adsorbers and photocatalyst was identified.

Ort, förlag, år, upplaga, sidor
American Chemical Society (ACS), 2023
Nationell ämneskategori
Annan kemi
Identifikatorer
urn:nbn:se:umu:diva-217731 (URN)10.1021/acsomega.3c06243 (DOI)001108005100001 ()38027367 (PubMedID)2-s2.0-85178352921 (Scopus ID)
Forskningsfinansiär
Kempestiftelserna, SMK-1974Bio4EnergyKnut och Alice Wallenbergs Stiftelse
Tillgänglig från: 2023-12-12 Skapad: 2023-12-12 Senast uppdaterad: 2024-01-12Bibliografiskt granskad
Essalhi, M., Ismail, N., Tesfalidet, S., Pan, J., Wang, Q., Cui, Z., . . . Tavajohi Hassan Kiadeh, N. (2022). Polyvinylidene fluoride membrane formation using carbon dioxide as a non-solvent additive for nuclear wastewater decontamination. Chemical Engineering Journal, 446(4), Article ID 137300.
Öppna denna publikation i ny flik eller fönster >>Polyvinylidene fluoride membrane formation using carbon dioxide as a non-solvent additive for nuclear wastewater decontamination
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2022 (Engelska)Ingår i: Chemical Engineering Journal, ISSN 1385-8947, E-ISSN 1873-3212, Vol. 446, nr 4, artikel-id 137300Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

Polyvinylidene fluoride (PVDF) membranes were prepared by phase inversion in the most commonly used solvents for membrane manufacture, with CO2 as a non-solvent additive. The effects of changing the polymer concentration (10, 12.5 and 15% by weight), the type of solvent (NMP, DMAc and DMF) and the coagulation bath with three levels of CO2 concentration on the phase inversion process, as well as the phase diagram, morphology and transport properties of the membranes were studied. The best performing membranes were used to desalinate salt aqueous solutions and decontaminated simulated nuclear wastewater by membrane distillation using two configurations (DCMD and AGMD). All selected membranes showed high rejection with acceptable permeate fluxes reaching an infinite decontamination factor. The proposed approach of this novel idea of using CO2 dissolved in water as a coagulation medium in the field of membranes avoids the increase of the harmful effect on the environment caused by the addition of a harsh non-solvent to the coagulation bath. It constitutes a beneficial use of carbon dioxide that reduces the negative environmental impact of membrane manufacturing and represents a decisive step towards its sustainability. Furthermore, this study highlights the potential benefits of using these membranes in DM for desalination and treatment of simulated nuclear wastewater.

Ort, förlag, år, upplaga, sidor
Elsevier, 2022
Nyckelord
Carbonated coagulation bath, Ternary phase diagram, Membrane distillation, Simulated nuclear wastewater treatment, Nuclides decontamination, Desalination
Nationell ämneskategori
Materialkemi
Identifikatorer
urn:nbn:se:umu:diva-195644 (URN)10.1016/j.cej.2022.137300 (DOI)000817049800002 ()2-s2.0-85132694835 (Scopus ID)
Forskningsfinansiär
Bio4Energy, B4E3-TM-2Kempestiftelserna, JCK22-0008
Tillgänglig från: 2022-06-02 Skapad: 2022-06-02 Senast uppdaterad: 2023-12-12Bibliografiskt granskad
Mukesh, C., Sarmad, S., Samikannu, A., Nikjoo, D., Siljebo, W. & Mikkola, J.-P. (2022). Pore size-excluded low viscous porous liquids for CO2 sorption at room temperature and thermodynamic modeling study. Journal of Molecular Liquids, 356, Article ID 119046.
Öppna denna publikation i ny flik eller fönster >>Pore size-excluded low viscous porous liquids for CO2 sorption at room temperature and thermodynamic modeling study
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2022 (Engelska)Ingår i: Journal of Molecular Liquids, ISSN 0167-7322, E-ISSN 1873-3166, Vol. 356, artikel-id 119046Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

Herein, we report porous ionic liquids (type-III) designed to utilize microporous ZIF-8 moieties with functional ionic liquids such as 8-(2-methoxyethyl)-1,8-Diazabicyclo[5.4.0]undec-7-en-8-ium, Bis(trifluoromethane)sulfonamide ([MEDBU][TFSI] and Trioctylammonium 4-para-tert-butylbenzoiate [TOAH][PTBBA]). The prepared materials were thoroughly characterized by means of XRD, FT-IR, SEM, TEM, BET, TGA, DSC and viscometry techniques. The idea of combining the intrinsic properties of ionic liquids with microporous architecture to prepare porous ionic liquids yields promising fluidic materials that have received attention in industrial applications such as gas sorption and separation etc. The prepared porous ionic liquids possess unique physico-chemical properties such as low viscosity, high thermal stability, low vapor pressure, reusability and their fluidic nature renders the materials suitable for CO2 capture. Herein introduced porous ionic liquids (ILs) showed enhanced CO2 uptake (0.92 mmol/g in [TOAH][PTBBA]-Z100 and 1.16 mmol/g in [MEDBU][TFSI]-Z200), or in other words, 15–47% higher sorption capacity compared to neat ionic liquids. This concept overcomes the drawbacks of highly viscous ILs and their limited CO2 sorption capacity. Thermodynamic modeling further demonstrated that the enthalpy of sorption is only −9.99 kJ mol−1, indicating that significantly less energy is required for regeneration. This is promising for the potential use of these fluidic materials in continuous separation processes on an industrial scale, as a better alternative to the existing hazardous amine scrubbing.

Ort, förlag, år, upplaga, sidor
Elsevier, 2022
Nationell ämneskategori
Fysikalisk kemi Materialkemi
Identifikatorer
urn:nbn:se:umu:diva-194108 (URN)10.1016/j.molliq.2022.119046 (DOI)000799182800017 ()2-s2.0-85128835880 (Scopus ID)
Forskningsfinansiär
Bio4EnergyKempestiftelsernaKnut och Alice Wallenbergs Stiftelse
Tillgänglig från: 2022-04-25 Skapad: 2022-04-25 Senast uppdaterad: 2023-09-05Bibliografiskt granskad
Khasevani, S. G., Nikjoo, D., Ojwang, D. O., Nodari, L., Sarmad, S., Mikkola, J.-P., . . . Concina, I. (2022). The beauty of being complex: Prussian blue analogues as selective catalysts and photocatalysts in the degradation of ciprofloxacin. Journal of Catalysis, 410, 307-319
Öppna denna publikation i ny flik eller fönster >>The beauty of being complex: Prussian blue analogues as selective catalysts and photocatalysts in the degradation of ciprofloxacin
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2022 (Engelska)Ingår i: Journal of Catalysis, ISSN 0021-9517, E-ISSN 1090-2694, Vol. 410, s. 307-319Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

We investigate the performance of four Prussian blue analogues (PBAs) as catalysts for the selective degradation of ciprofloxacin in water, under both dark and illumination conditions. We show that no light is actually needed to induce a selective degradation of the molecular target, while light irradiation spurs the process, without, however, resulting in the commonly reported photolysis-supported breaking down. We present a systematic characterization of the PBAs aiming at interpreting the catalytic outcomes in the light of a classic coordination chemistry analysis, empowered by the most recent findings in literature. We show that varying the transition metal binding the N atom of the cyanide bridge is key to promote photoinduced charge generation and transfer, which effectively disrupts the molecular target. The analysis of the materials before and after the irradiation with solar simulated light results in a change of the lattice parameters, indicating the possibility of a light-induced spin cross-over.

Ort, förlag, år, upplaga, sidor
Academic Press, 2022
Nyckelord
Auto-catalytic reactions, Ciprofloxacin degradation, Mössbauer spectroscopy, Photocatalysis, Prussian blue analogues
Nationell ämneskategori
Fysikalisk kemi Biofysik
Identifikatorer
urn:nbn:se:umu:diva-194834 (URN)10.1016/j.jcat.2022.04.029 (DOI)000799277700002 ()2-s2.0-85129740965 (Scopus ID)
Forskningsfinansiär
Kempestiftelserna, SMK-1947Energimyndigheten, 45517-1ÅForsk (Ångpanneföreningens Forskningsstiftelse), 18-459
Tillgänglig från: 2022-06-01 Skapad: 2022-06-01 Senast uppdaterad: 2025-02-20Bibliografiskt granskad
Sarmad, S., Nikjoo, D. & Mikkola, J.-P. (2020). Amine functionalized deep eutectic solvent for CO2 capture: Measurements and modeling. Journal of Molecular Liquids, 309, Article ID 113159.
Öppna denna publikation i ny flik eller fönster >>Amine functionalized deep eutectic solvent for CO2 capture: Measurements and modeling
2020 (Engelska)Ingår i: Journal of Molecular Liquids, ISSN 0167-7322, E-ISSN 1873-3166, Vol. 309, artikel-id 113159Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

Deep eutectic solvents (DESs) have gained a great interest among researchers owing to their inherent advantages to become an adaptable alternative to ionic liquids (ILs) and common amine solutions for CO2 capture. In the present study, we prepared five new three-component DESs by functionalization of choline chloride-ethanolamine (1,7, mol,mol) DES using different types of amines: diethanolamine (amine type 2), methyldiethanolamine (amine type 3), piperazine (amine type 2) as well as 1-(2-aminoethyl)piperazine (amine type 1 and 2). All of the prepared DESs are liquid at room temperature and their melting points were in the range of 265–276 K. The solubility of CO2 in the studied DESs was measured at pressures up to 2 MPa and 298.15 K. The obtained experimental data were analyzed by the use of generic Redlich-Kwong equation of state (RK-EOS) model and Henry's law constant have been calculated from the obtained experimental data through the EOS correlation. All the studied DESs show chemical absorption of CO2 which can be approved based on the excess enthalpy and Gibbs energy functions. FT-IR spectroscopy and 13C NMR verified the formation of carbamate in the CO2 absorption process which revealed the chemisorption of CO2 in the studied DESs. The ideal association model has been utilized to describe the excess thermodynamic functions and two different types of the chemical association have been detected AB2 and AB, (A refer to DESs and B to CO2). Based on the obtained solubility data, the amines that enhanced the absorption capacity of choline chloride-ethanolamine (1,7) follow the trend as follows: piperazine > aminoethylpiperazine > methyldiethanolamine > diethanolamine. Therefore, piperazine can be considered as an absorption enhancer. The viscosity of DESs before and after CO2 absorption as well as the thermal behavior of the DESs were also investigated.

Ort, förlag, år, upplaga, sidor
Elsevier, 2020
Nyckelord
Deep eutectic solvent, CO absorption, Henry's law constant, Equation of state, Amine
Nationell ämneskategori
Annan fysik Den kondenserade materiens fysik Fysikalisk kemi Atom- och molekylfysik och optik Metallurgi och metalliska material
Identifikatorer
urn:nbn:se:umu:diva-169799 (URN)10.1016/j.molliq.2020.113159 (DOI)000544211600018 ()2-s2.0-85083660246 (Scopus ID)
Projekt
Bio4Energy
Forskningsfinansiär
Bio4Energy
Tillgänglig från: 2020-04-20 Skapad: 2020-04-20 Senast uppdaterad: 2023-03-24Bibliografiskt granskad
Sarmad, S., Zafarani-Moattar, M. T., Nikjoo, D. & Mikkola, J.-P. (2020). How Different Electrolytes Can Influence the Aqueous Solution Behavior of 1-Ethyl-3-Methylimidazolium Chloride: A Volumetric, Viscometric, and Infrared Spectroscopy Approach. Frontiers in Chemistry, 8, Article ID 593786.
Öppna denna publikation i ny flik eller fönster >>How Different Electrolytes Can Influence the Aqueous Solution Behavior of 1-Ethyl-3-Methylimidazolium Chloride: A Volumetric, Viscometric, and Infrared Spectroscopy Approach
2020 (Engelska)Ingår i: Frontiers in Chemistry, E-ISSN 2296-2646, Vol. 8, artikel-id 593786Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

The density, sound velocity, and viscosity of 1-ethyl-3-methylimidazolium chloride [C2mim]Cl in pure water and aqueous solutions of some electrolytes such as potassium chloride, potassium carbonate, and potassium phosphate (weight fraction of salt fixed at ws = 0. 11) have been measured over a wide range of temperatures from 298.15 to 318.15 K. The obtained experimental data have been used to compute various volumetric, compressibility, and viscometric parameters, e.g., apparent molar properties, limiting apparent molar and transfer properties. The co-sphere overlap model was employed to describe the dominant intermolecular interactions in the ternary solutions. Additionally, the structure making/breaking nature of the [C2mim]Cl in the ternary solutions has been discussed in terms of Hepler's constant and the temperature derivative of viscosity B-coefficient (dB/dT). The activation free energy of solvent and solute, activation enthalpy, and activation entropy have been calculated by the application of transition state theory. The calculated parameters have been interpreted in the sense of solvent-solute and solute-solute interactions. The Fourier transform infrared (FTIR) studies also have been done for the studied systems. Volumetric, acoustic, viscometric, and spectroscopic studies can render some evidence and help to understand the aqueous solution behavior of ionic liquids.

Ort, förlag, år, upplaga, sidor
Frontiers Media S.A., 2020
Nyckelord
ionic liquids, 1-ethyl-3-methyl-imidazolium chloride, apparent molar volume, apparent isentropic compressibility, viscosity B-coefficient
Nationell ämneskategori
Fysikalisk kemi
Identifikatorer
urn:nbn:se:umu:diva-177738 (URN)10.3389/fchem.2020.593786 (DOI)000592194900001 ()33282835 (PubMedID)2-s2.0-85096656446 (Scopus ID)
Tillgänglig från: 2020-12-17 Skapad: 2020-12-17 Senast uppdaterad: 2023-03-24Bibliografiskt granskad
Sarmad, S. & Mikkola, J.-P. (2020). Vapor-liquid equilibrium of ionic liquids. In: Suojiang Zhang (Ed.), Encyclopedia of ionic liquids: (pp. 1-22). Singapore: Springer
Öppna denna publikation i ny flik eller fönster >>Vapor-liquid equilibrium of ionic liquids
2020 (Engelska)Ingår i: Encyclopedia of ionic liquids / [ed] Suojiang Zhang, Singapore: Springer, 2020, s. 1-22Kapitel i bok, del av antologi (Övrigt vetenskapligt)
Ort, förlag, år, upplaga, sidor
Singapore: Springer, 2020
Nationell ämneskategori
Metallurgi och metalliska material Annan materialteknik Fysikalisk kemi Energiteknik Livsmedelsprocessteknik Livsmedelsbioteknik
Identifikatorer
urn:nbn:se:umu:diva-174773 (URN)10.1007/978-981-10-6739-6_107-1 (DOI)9789811067396 (ISBN)9789813342200 (ISBN)
Projekt
Bio4Energy
Forskningsfinansiär
Bio4Energy
Tillgänglig från: 2020-09-07 Skapad: 2020-09-07 Senast uppdaterad: 2025-02-20Bibliografiskt granskad
Dinh, V. M., Gorza, G., Samikannu, A., Konwar, L. J., Tesfalidet, S., Sarmad, S., . . . Mikkola, J.-P.Synergistic catalyst Ru/NbOPO4/TiO2 for selective hydrodeoxygenation of phenolics towards unlocking lignin's potential.
Öppna denna publikation i ny flik eller fönster >>Synergistic catalyst Ru/NbOPO4/TiO2 for selective hydrodeoxygenation of phenolics towards unlocking lignin's potential
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(Engelska)Manuskript (preprint) (Övrigt vetenskapligt)
Nationell ämneskategori
Organisk kemi Kemiteknik
Identifikatorer
urn:nbn:se:umu:diva-236298 (URN)
Tillgänglig från: 2025-03-10 Skapad: 2025-03-10 Senast uppdaterad: 2025-03-10Bibliografiskt granskad
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