A fast and simple hollow fibre-based microporous membrane liquid-liquid extraction (MMLLE) method is proposed for the determination of trace levels of dinitrophenolic compounds in water samples. The optimization step was performed using a three-variables Doehlert matrix design, involving the fibre length, the quantity of trioctylphosphine oxide (TOPO) in the acceptor phase and the extraction time. Using the established experimental conditions, some other parameters such as stirring speed, salt content, humic acids and different organic solvents as the acceptor phase were studied. Validation of the method included calibration experiments, linearity studies and determination of method LOD (MLD). The RSD was around 11% in all the experiments o...
Alkylphenols (APs) are ubiquitous environmental endocrine-disrupting chemicals (EDCs) arising from t...
An analytical protocol for the determination of priority phenolic compounds: phenol, 2-methyl 4,6-di...
To pursue optimum condition in liquid-liquid-liquid microextraction (LLLME), extraction parame-ters ...
A hollow fiber supported liquid membrane extraction method for the liquid chromatographic determinat...
An easy and rapid hollow-fibre supported liquid membrane method (HFSLM) has been developed to extrac...
In this thesis, liquid-membrane-based methods for the analysis of trace metal species in samples of ...
In this study, we present a simple and easy-to-use extraction method that is based on a hollow-fiber...
This thesis demonstrates the potential of the liquid membrane extraction technique as an alternative...
Contemporary advancements in miniaturization of analytical systems have advantageously fostered deve...
A simple solid phase membrane tip extraction (SPMTE) utilizing microporous carbon spheres (MCS) was ...
[[abstract]]Aqueous samples of the semi-volatile compounds nitrobenzene, isophorone, 2,4-dinitrotolu...
A new design of equilibrium hollow fibre liquid phase microextraction (HF-LPME) was developed for th...
A hollow fiber supported liquid phase microextraction method for determination of nitrophenols has ...
We describe a method for dispersive liquid-liquid microextraction of nitrotoluene-based compounds. T...
[[abstract]]To pursue optimum condition in liquid-liquid-liquid microextraction (LLLME), extraction ...
Alkylphenols (APs) are ubiquitous environmental endocrine-disrupting chemicals (EDCs) arising from t...
An analytical protocol for the determination of priority phenolic compounds: phenol, 2-methyl 4,6-di...
To pursue optimum condition in liquid-liquid-liquid microextraction (LLLME), extraction parame-ters ...
A hollow fiber supported liquid membrane extraction method for the liquid chromatographic determinat...
An easy and rapid hollow-fibre supported liquid membrane method (HFSLM) has been developed to extrac...
In this thesis, liquid-membrane-based methods for the analysis of trace metal species in samples of ...
In this study, we present a simple and easy-to-use extraction method that is based on a hollow-fiber...
This thesis demonstrates the potential of the liquid membrane extraction technique as an alternative...
Contemporary advancements in miniaturization of analytical systems have advantageously fostered deve...
A simple solid phase membrane tip extraction (SPMTE) utilizing microporous carbon spheres (MCS) was ...
[[abstract]]Aqueous samples of the semi-volatile compounds nitrobenzene, isophorone, 2,4-dinitrotolu...
A new design of equilibrium hollow fibre liquid phase microextraction (HF-LPME) was developed for th...
A hollow fiber supported liquid phase microextraction method for determination of nitrophenols has ...
We describe a method for dispersive liquid-liquid microextraction of nitrotoluene-based compounds. T...
[[abstract]]To pursue optimum condition in liquid-liquid-liquid microextraction (LLLME), extraction ...
Alkylphenols (APs) are ubiquitous environmental endocrine-disrupting chemicals (EDCs) arising from t...
An analytical protocol for the determination of priority phenolic compounds: phenol, 2-methyl 4,6-di...
To pursue optimum condition in liquid-liquid-liquid microextraction (LLLME), extraction parame-ters ...