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The regeneration of adsorbent bed was achieved very rapidly (35 min) by using microwave heating system.
However, this conversion was possible within 40 min by using 1.0 at.% Ag-loaded TiO2.
Carrot slices were dried at 220 min by using double-pass solar air collector in solar-heat pump dryer.
Then, the implanted substrate was etched for 10 or 30 min by using potassium hydroxide solution at 333 K.
Ninety percent carbon from humic acid was mineralized to CO2 only after 60 min by using bare TiO2 as a photocatalyst.
The maximum biosorption of arsenic (III) is found to be 85.24% at pH 7.5, equilibrium time of 90 min by using biosorbent of 6 g/L and initial concentration of 1 mg/L of arsenic (III) solution.
The effects of the operating temperature (270 350 °C), pressure (15.0 20.0 MPa) and methanol PKO molar ratio (20 1 42 1) were evaluated at a constant residence time of 20 ± 2 min by using a central composite design.
The proposed method allowed the separation and quantification of eleven synthetic cathinones, six opiates, scopolamine, cocaine and two metabolites in less than 3.0 min by using appropriate isotope-labelled internal standards.
Under a constant potential bias of +1.0 V and a light intensity of 15 mW/cm2, 107 cfu/mL E. coli could be completely inactivated within only 30 min by using the composite photoanodes obtained from 120 °C hydrothermal treatment.
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It was washed for 5 min with the equilibration solution at a flow rate of 25 µL/min by using an isocratic loading pump operated through an auto sampler.
The reactor was heated up to 180 °C with a heating rate of 1 °C/min, by using the digital temperature controller.
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