The motive of this research to present a systematic study in context of implementation of gas hydrate inhibitors that are obtained via naturally occurring amino acids (L-Alanine, Glycine, L-Histidine, L-Phenylalanine and L-Asparagine). These materials are tested for methane (CH4) hydrate inhibition purposes from both thermodynamically and kinetically perspectives at wide process conditions. In this presented work, all studied amino acids have been tested at both 1 wt % as low dosage inhibitors as well as at higher concentrations up to 5 wt %. Furthermore, Polyethylene-oxide (PEO) and Vinyl Caprolactum (VCap) were used at 1 wt % in studied aqueous solutions as synergetic compounds to enhance the inhibition performance for CH4 hydrate inhibit...
In this study, urea (U), acetamide (A), and glycine (G), which are easily decomposable, were suggest...
Amino acids (glycine and alanine) and ionic liquids ([BMIM][BF4] and [BMIM][I]) were examined for th...
This thesis investigates the synergistic effect of thermodynamic inhibitors (TIs) including monoethy...
The thermodynamic and kinetic inhibition effectiveness of the selected amino acids (AA): L-Alanine, ...
Gas hydrate form and plug oil and gas pipelines, hence, they are unwanted and must be avoided. Conve...
In this study, the kinetic inhibition effects of amino acids and ionic liquids and the potential syn...
The formation of gas hydrates in offshore subsea lines is a major flow assurance concern for the oil...
Gas hydrates often give rise to serious problems during gas and oil transportation through pipelines...
The motivation for this work was the potential of hydrophobic amino acids such as glycine, L-alanine...
This study investigates synergistic hydrate inhibition performance of conventional thermodynamic hyd...
As the foundation of energy industry moves towards gas, flow assurance technology preventing pipelin...
To develop an effective hydrate risk mitigation strategy for offshore flow assurance its essential t...
Solidified natural gas (SNG) is a promising option to store natural gas in the form of clathrate hyd...
This study examined the synergistic inhibition effect of glycine (an amino acid) and [BMIM][BF4] (an...
Natural gas hydrates easily form in pipelines,causing potential safety issues during oil and gas pro...
In this study, urea (U), acetamide (A), and glycine (G), which are easily decomposable, were suggest...
Amino acids (glycine and alanine) and ionic liquids ([BMIM][BF4] and [BMIM][I]) were examined for th...
This thesis investigates the synergistic effect of thermodynamic inhibitors (TIs) including monoethy...
The thermodynamic and kinetic inhibition effectiveness of the selected amino acids (AA): L-Alanine, ...
Gas hydrate form and plug oil and gas pipelines, hence, they are unwanted and must be avoided. Conve...
In this study, the kinetic inhibition effects of amino acids and ionic liquids and the potential syn...
The formation of gas hydrates in offshore subsea lines is a major flow assurance concern for the oil...
Gas hydrates often give rise to serious problems during gas and oil transportation through pipelines...
The motivation for this work was the potential of hydrophobic amino acids such as glycine, L-alanine...
This study investigates synergistic hydrate inhibition performance of conventional thermodynamic hyd...
As the foundation of energy industry moves towards gas, flow assurance technology preventing pipelin...
To develop an effective hydrate risk mitigation strategy for offshore flow assurance its essential t...
Solidified natural gas (SNG) is a promising option to store natural gas in the form of clathrate hyd...
This study examined the synergistic inhibition effect of glycine (an amino acid) and [BMIM][BF4] (an...
Natural gas hydrates easily form in pipelines,causing potential safety issues during oil and gas pro...
In this study, urea (U), acetamide (A), and glycine (G), which are easily decomposable, were suggest...
Amino acids (glycine and alanine) and ionic liquids ([BMIM][BF4] and [BMIM][I]) were examined for th...
This thesis investigates the synergistic effect of thermodynamic inhibitors (TIs) including monoethy...