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Removal of hexavalent chromium from water resources via an adsorptive membrane was studied.
The transport mechanism of the phosphorus ions through the nanofiltration membrane was studied using extended Nernst Planck equation.
In this work, the rejection of two ions associated with fertilizer pollution of ground water (NH+4 and NO−3) by a polyamide nanofiltration (NF270) membrane was studied.
In this work, the Ni2+ removal effect of geopolymer inorganic membrane was studied under different pH value, initial concentration of Ni2+ solutions and initial operation temperature.
In this paper, the interaction of ibuprofen with bilayer lipid membrane was studied by UV vis spectroscopy, cyclic voltammetry and AC impedance spectroscopy.
Hydrogen permeation rate (HPR) through a 35-μm thick iron membrane was studied with the electrochemical technique in 0.1 M NaOH at 25 °C.
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The kinetic processes on the sensing membrane were studied.
Specifically, several factors which are temperature, pressure, time, pH and surface area of membrane, are studied.
Adsorptive properties of the prepared membrane were studied for removal of Cr (VI) from contaminated water.
Pressure, feed flowrate and cutoff of the membrane were studied using a 23 factorial experimental design.
The effects of design parameters and environmental conditions on the glucose responsiveness and insulin permeability of the membrane were studied.
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