Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Bio‐based macroporous polymer sorbents: Synthesis, physicochemical properties and sorption kinetics

View through CrossRef
AbstractMacroporous polymeric sorbents were synthesized via high internal phase emulsion (HIPE) templating. For this aim, water‐in‐oil (w/o) HIPEs were prepared with 80 vol.% of aqueous internal phase whereas plant‐based β‐myrcene (My) and D‐limonene (Lim) were used as renewable building blocks in the continuous oil phase. Moreover, biocompatible ethylene glycol dimetacrylate (EGDMA) was also added as a crosslinker comonomer. By varying the total volume fraction of My and Lim in the continuous phase composition between 90% and 50%, 14 different HIPE formulations were prepared. After polymerization of HIPE templates 28 different sorbents were obtained depending on the purification procedure (extraction & drying under vacuum or freeze drying). The effect of terpene composition in the obtained sorbents was investigated in terms of cross‐link density (υ), the molecular weight (Mc) and pore morphology. In this context, chemical structures and pore morphologies were characterized by FTIR spectroscopy and SEM analysis, respectively. The Brunauer‐Emmet‐Teller (BET) specific surface area was also measured to determine the relationship between pore morphology and surface area. Based on the characterization results, two sorbents were selected as model for sorption tests. Thereafter, solvent sorption tests were performed by immersing sorbents in either hexane, dichloromethane, deionized water, seawater, solvent/water mixture, or solvent/seawater mixture to determine maximum sorption capacities and determine reusability of the sorbents. Moreover, experimental data was fitted to pseudo‐first order and pseudo second order kinetic models, as well as Freundlich and Langmuir isotherms. In the end, it was found that varying My and Lim ratio is the key parameter of controlling pore morphology and physicochemical properties. Moreover, it was shown that resulting sorbents can be efficiently used in oil/water separation processes repeatedly for several cycles.
Title: Bio‐based macroporous polymer sorbents: Synthesis, physicochemical properties and sorption kinetics
Description:
AbstractMacroporous polymeric sorbents were synthesized via high internal phase emulsion (HIPE) templating.
For this aim, water‐in‐oil (w/o) HIPEs were prepared with 80 vol.
% of aqueous internal phase whereas plant‐based β‐myrcene (My) and D‐limonene (Lim) were used as renewable building blocks in the continuous oil phase.
Moreover, biocompatible ethylene glycol dimetacrylate (EGDMA) was also added as a crosslinker comonomer.
By varying the total volume fraction of My and Lim in the continuous phase composition between 90% and 50%, 14 different HIPE formulations were prepared.
After polymerization of HIPE templates 28 different sorbents were obtained depending on the purification procedure (extraction & drying under vacuum or freeze drying).
The effect of terpene composition in the obtained sorbents was investigated in terms of cross‐link density (υ), the molecular weight (Mc) and pore morphology.
In this context, chemical structures and pore morphologies were characterized by FTIR spectroscopy and SEM analysis, respectively.
The Brunauer‐Emmet‐Teller (BET) specific surface area was also measured to determine the relationship between pore morphology and surface area.
Based on the characterization results, two sorbents were selected as model for sorption tests.
Thereafter, solvent sorption tests were performed by immersing sorbents in either hexane, dichloromethane, deionized water, seawater, solvent/water mixture, or solvent/seawater mixture to determine maximum sorption capacities and determine reusability of the sorbents.
Moreover, experimental data was fitted to pseudo‐first order and pseudo second order kinetic models, as well as Freundlich and Langmuir isotherms.
In the end, it was found that varying My and Lim ratio is the key parameter of controlling pore morphology and physicochemical properties.
Moreover, it was shown that resulting sorbents can be efficiently used in oil/water separation processes repeatedly for several cycles.

Related Results

Valorization of textile waste for removal of Cadmium from contaminated water
Valorization of textile waste for removal of Cadmium from contaminated water
AbstractThe rapid development in agriculture and industrial sectors has raised some serious global issues like heavy metals pollution of water resources. Cadmium (Cd) is amongst th...
Nutrient recovery from waste water treatment plant by sorption processes : technical and economic analysis
Nutrient recovery from waste water treatment plant by sorption processes : technical and economic analysis
In the last years has been performed a huge number of research related to nutrients (mainly N and P) recovery from waste water in order to promote their reuse and also to avoid eut...
Nanogold and nanosilver hybrid polymer materials
Nanogold and nanosilver hybrid polymer materials
<p>Significant opportunities exist in both the scientific and industrial sectors for the development of new generation hybrid materials. These multifunctional hybrid material...
Development of Sorbents for Water Treatment on the Base of Magnetic Nanoparticles
Development of Sorbents for Water Treatment on the Base of Magnetic Nanoparticles
The quest for nanosized sorption materials has been intense in the last few decades, and the range of practical applications for these materials has expanded to enable the creation...
Modeling of gas sorption isotherms and kinetics in penetrant-induced melting polymer: poly(hexadecyl methyl siloxane)/alkane system
Modeling of gas sorption isotherms and kinetics in penetrant-induced melting polymer: poly(hexadecyl methyl siloxane)/alkane system
For the first time, a model is proposed to describe gas sorption in a penetrant-induced melting polymer, based on an ”anti-Langmuir” isotherm equation and the Michaels–Bixler two-p...
A Reference Database of Radionuclide Sorption to Support the Safety Assessment of Deep Geological Repositories
A Reference Database of Radionuclide Sorption to Support the Safety Assessment of Deep Geological Repositories
The long-term safety assessment of a deep geological repository requires comprehensive and consistent sorption thermodynamic data for modelling geochemical scenarios in the compone...
Predicting the Water Sorption in ASDs
Predicting the Water Sorption in ASDs
Water decreases the stability of amorphous solid dispersions (ASDs) and water sorption is, therefore, unwanted during ASD storage. This work suggests a methodology to predict the w...
Photoconductivity Relaxation Time in Macroporous Silicon
Photoconductivity Relaxation Time in Macroporous Silicon
Macroporous silicon has found applications in sensors, receivers, integrated microchips and solar cells. In this work, we first showed analytically the photoconductivity relaxation...

Back to Top