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

Sintering Resistant Co2 Sorbents Prepared by Eggshell Derived Xerogels

View through CrossRef
A modified sol-gel like was used to prepare CaO sorbents from eggshells and carboxylic acids with improved sintering resistance. Sorbent materials obtained by calcination (900 °C) of the calcium xerogels presented different morphologies depending on the acid used as the complexing agent (citric, lactic, oxalic, maleic, acetic, and propionic). Sorbents were tested for cyclic carbonation (700 °C, 15% CO 2 in N 2 )/decarbonation in a thermobalance. Decarbonation step was performed at 800 °C in an N 2 atmosphere. Sorbents had distinct specific areas and porosities resulting from the release of gaseous molecules, and heat, from the thermal decomposition of xerogels. The particle size distribution of sorbents was also a function of the acid. The acid carbon chain and the combustion enthalpy have opposite effects on the morphology of sorbents. The lactic acid-derived sorbent was the most performant showing the lowest carrying capacity decay. After 50 cycles the loss of CO 2 capture capacity was 45% for the lactic acid-modified sorbent, while the unmodified sorbent showed a sorption capacity decay of 74%. The spent unmodified sorbent showed by scanning electron microscopy (SEM) sintered morphology with non-porous and large aggregates, while the lactic acid-derived sorbent showed a clear network of voids within the crystals agglomerates and a coral-like morphology that is known to confer sorbent stability. This sorbent was the only sorbent with a particle size distribution closer to the unimodal, while the other samples were bimodal. The absence of smaller particles reduces the contact between sorbent grain boundaries at high temperatures, which minimizes the sintering process.
Title: Sintering Resistant Co2 Sorbents Prepared by Eggshell Derived Xerogels
Description:
A modified sol-gel like was used to prepare CaO sorbents from eggshells and carboxylic acids with improved sintering resistance.
Sorbent materials obtained by calcination (900 °C) of the calcium xerogels presented different morphologies depending on the acid used as the complexing agent (citric, lactic, oxalic, maleic, acetic, and propionic).
Sorbents were tested for cyclic carbonation (700 °C, 15% CO 2 in N 2 )/decarbonation in a thermobalance.
Decarbonation step was performed at 800 °C in an N 2 atmosphere.
Sorbents had distinct specific areas and porosities resulting from the release of gaseous molecules, and heat, from the thermal decomposition of xerogels.
The particle size distribution of sorbents was also a function of the acid.
The acid carbon chain and the combustion enthalpy have opposite effects on the morphology of sorbents.
The lactic acid-derived sorbent was the most performant showing the lowest carrying capacity decay.
After 50 cycles the loss of CO 2 capture capacity was 45% for the lactic acid-modified sorbent, while the unmodified sorbent showed a sorption capacity decay of 74%.
The spent unmodified sorbent showed by scanning electron microscopy (SEM) sintered morphology with non-porous and large aggregates, while the lactic acid-derived sorbent showed a clear network of voids within the crystals agglomerates and a coral-like morphology that is known to confer sorbent stability.
This sorbent was the only sorbent with a particle size distribution closer to the unimodal, while the other samples were bimodal.
The absence of smaller particles reduces the contact between sorbent grain boundaries at high temperatures, which minimizes the sintering process.

Related Results

PENGARUH PROSES SINTERING TERHADAP PERUBAHAN DENSITAS, KEKERASAN DAN MIKROSTRUKTUR PELET U-ZrHx
PENGARUH PROSES SINTERING TERHADAP PERUBAHAN DENSITAS, KEKERASAN DAN MIKROSTRUKTUR PELET U-ZrHx
PENGARUH PROSES SINTERING TERHADAP PERUBAHAN DENSITAS, KEKERASAN DAN MIKROSTRUKTUR PELET U-ZrHx. Proses sintering pelet bahan bakar U-ZrHx dilakukan untuk memperoleh densitas yang ...
Solar fuels via two-step thermochemical redox cycles for power and fuel production
Solar fuels via two-step thermochemical redox cycles for power and fuel production
With the issue of the rise of anthropogenic CO2, global warming and rise of the primary energy demand, strong measures for the energy transition and the diversification with renewa...
Rapid Large-scale Trapping of CO2 via Dissolution in US Natural CO2 Reservoirs
Rapid Large-scale Trapping of CO2 via Dissolution in US Natural CO2 Reservoirs
Naturally occurring CO2 reservoirs across the USA are critical natural analogues of long-term CO2 storage in the subsurface over geological timescales and provide valuable insights...
Design And Operation Of The Levelland Unit CO2 Injection Facility
Design And Operation Of The Levelland Unit CO2 Injection Facility
Abstract The Levelland CO2 Facility provides CO2 storageand handling capacity for the five CO2 injection pilots located in the Levelland Unit. Facilities pilots l...
Valorization of Eggshell Waste into Calcium and Collagen-Based Nutritional Supplements
Valorization of Eggshell Waste into Calcium and Collagen-Based Nutritional Supplements
Aims: Utilizing eggshell waste is a comprehensive solution that tackles the issues of waste accumulation in the environment, pollution, and financial resources allocated to its dis...
An Emerging CO2 Storage Option: CO2 Storage and By-Product Oil Recovery from Shale Oil Formations
An Emerging CO2 Storage Option: CO2 Storage and By-Product Oil Recovery from Shale Oil Formations
Recent studies, sponsored by the United States Energy Association (USEA) and prepared by Advanced Resources International, have identified an emerging CO2 storage option – injectin...
Development of calcium oxide sorbent from waste natural materials for CO2 capture
Development of calcium oxide sorbent from waste natural materials for CO2 capture
This study aims to develop calcium oxide (CaO) sorbents for carbon oxide (CO2) capture by using various waste natural materials: eggshells, crab shells, and green mussel shells. Th...
Evolution of Porosity and Morphology in Alkylene-Bridged Polysilsesquioxane Xerogels as a Function of Gel Aging Time
Evolution of Porosity and Morphology in Alkylene-Bridged Polysilsesquioxane Xerogels as a Function of Gel Aging Time
ABSTRACTAging of silica gels before drying is known to result in significant changes in xerogel morphology, porosity and properties. In this study, the influence of aging gels on t...

Back to Top