AbstractAn equimolar diamine blend of 4 m 2-methylpiperazine (2MPZ) with 4 m piperazine (PZ) is shown to be an attractive solvent for CO2 capture. This blend overcomes the difficulties posed by the narrow solid solubility window of pure 8 m PZ while preserving its benefits. The solid solubility window at 20°C broadens from to . As the blend viscosity is nearly double that of pure PZ, normalizing the capacity by viscosity shows a practical capacity comparable to MEA at 0.63mol CO2/kg solvent. The CO2 absorption rate of the blend is lower, with at 40°C, 84% that of PZ. The heats of CO2 absorption of the blend and PZ are equal at ΔHabs=70kJ/mol. While the blend thermal stability is decreased, Tmax = 155 compared to 163°C, oxidative stability...
AbstractCarbon dioxide chemical absorption with amine based solvents is currently the state-of-the-a...
Presently monoethanolamine (MEA) remains the industrial standard solvent for CO2 capture processes. ...
textAmine scrubbing is the state of the art technology for CO2 capture, and solvent selection can si...
AbstractAn equimolar diamine blend of 4 m 2-methylpiperazine (2MPZ) with 4 m piperazine (PZ) is show...
A blend of piperazine (PZ), N-methylpiperazine (MPZ) and N,N’-dimethylpiperazine (DMPZ) is described...
AbstractBlends using concentrated (25 35wt %) piperazine (PZ) were characterized as solvents for CO2...
AbstractIn this work, two blends of piperazine (PZ) and 2-amino-2-methyl-1-propanol (AMP) (5 m PZ/2....
AbstractConcentrated, aqueous piperazine (PZ) has been investigated as a novel amine solvent for car...
AbstractA novel blend of piperazine (PZ) with N-(2-aminoethyl) piperazine (AEP) has been proposed as...
AbstractThe absorption rate and CO2 solubility of four new blends using concentrated piperazine (PZ)...
In the present work, novel blended piperazine (PZ) and N-methyl-4-piperidinol (MPDL) solvent was inv...
The removal of carbon dioxide from process gas streams is an important step in many industrial proce...
AbstractConcentrated, aqueous piperazine (PZ) has been developed as an attractive solvent for use in...
Formulation of efficient absorbing solutions for carbon dioxide capture is essential to reduce the o...
Amine scrubbing is the most promising solution to address CO₂ emission from power plants. Solvent de...
AbstractCarbon dioxide chemical absorption with amine based solvents is currently the state-of-the-a...
Presently monoethanolamine (MEA) remains the industrial standard solvent for CO2 capture processes. ...
textAmine scrubbing is the state of the art technology for CO2 capture, and solvent selection can si...
AbstractAn equimolar diamine blend of 4 m 2-methylpiperazine (2MPZ) with 4 m piperazine (PZ) is show...
A blend of piperazine (PZ), N-methylpiperazine (MPZ) and N,N’-dimethylpiperazine (DMPZ) is described...
AbstractBlends using concentrated (25 35wt %) piperazine (PZ) were characterized as solvents for CO2...
AbstractIn this work, two blends of piperazine (PZ) and 2-amino-2-methyl-1-propanol (AMP) (5 m PZ/2....
AbstractConcentrated, aqueous piperazine (PZ) has been investigated as a novel amine solvent for car...
AbstractA novel blend of piperazine (PZ) with N-(2-aminoethyl) piperazine (AEP) has been proposed as...
AbstractThe absorption rate and CO2 solubility of four new blends using concentrated piperazine (PZ)...
In the present work, novel blended piperazine (PZ) and N-methyl-4-piperidinol (MPDL) solvent was inv...
The removal of carbon dioxide from process gas streams is an important step in many industrial proce...
AbstractConcentrated, aqueous piperazine (PZ) has been developed as an attractive solvent for use in...
Formulation of efficient absorbing solutions for carbon dioxide capture is essential to reduce the o...
Amine scrubbing is the most promising solution to address CO₂ emission from power plants. Solvent de...
AbstractCarbon dioxide chemical absorption with amine based solvents is currently the state-of-the-a...
Presently monoethanolamine (MEA) remains the industrial standard solvent for CO2 capture processes. ...
textAmine scrubbing is the state of the art technology for CO2 capture, and solvent selection can si...