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Naproxen in the presence of powdered activated carbon

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Enhanced ultrasonic degradation of acetaminophen and naproxen in the presence of powdered activated carbon and biochar adsorbents
This study investigated the degradation of pharmaceuticals (PhACs), acetaminophen (AAP) and naproxen (NPX), via treatment under ultrasonic (US) conditions.activated carbon pellets for air filter auThe most efficient frequency based on the rate of PhACs degradation and hydrogen peroxide (H2O2) production was found to be 580 kHz when 28, 580, and 1000 kHz frequencies were applied. Additionally, the degradation of PhACs at 580 kHz could be improved by increasing the US-power density and solution temperature. The apparent activation energy of degradation was determined via Arrhenius law to be 10.3 and 11.2 kJ mol−1 for AAP and NPX, respectively, wherein the most favorable degradation pH was acidic. Density functional theory based calculations demonstrated that NPX has 8 barrierless points of reaction compared to AAP having 1 barrierless point. This molecular modeling analysis result explains the faster kinetics of NPX degradation. Additionally, a maximum rate of PhACs degradation was observed when the H2O2 concentration was 5 μM. The degradation of PhACs was strongly inhibited by the presence of tert-butanol when compared to methanol, indicating that the degradation of AAP and NPX was dependent on the presence of OHradical dot. Based on the synergistic index and Langmuir–Hinshelwood model, biochar was more efficient for treating PhACs than powdered activated carbon under US irradiation, degrading PhACs mainly via a combination of adsorption onto the absorbents and reaction with OHradical dot under US irradiation with absorbent particles providing nucleation sites. powdered activated carbon size This method shows great potential in providing a viable catalyst toward degrading PhACs within catalytic industrial processes.

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1. The humidification outside the tower is only 5% higher than the humidification and cooling inside the tower, but the humidification outside the tower has the advantages of simplifying the system process, reducing investment, and reducing the wall sticking inside the tower.
2. Activated carbon has a certain effect on the removal of nitrogen oxides. In the test, the high concentration of SOZ in the flue gas affected the removal of NO by activated carbon, and the measured removal rate was about 10%.
3. The removal rate of HCl by activated carbon is up to 50%, but the removal effect of acid gas H and SO3 is not obvious.activated charcoal manufacturers
In the test, the desulfurization effect of the cloth bag dust remover was tested, and its desulfurization rate was about 9%.
4. Analyze the reasons for the low SOZ and NO removal efficiency of activated carbon in the test :(1) ordinary activated carbon is used in the test, which has a low adsorption performance;
(2) Due to the limited test conditions, the low input amount of activated carbon per hour in the test means the selected ACIS is lower.
Although the removal efficiency of the activated carbon on SO2 and NO measured in this test is low, the activated carbon used in circulating fluidized bed flue gas desulfurization and denitration has the advantages of simple and reliable process, low system resistance, stable desulfurization and denitration, good economic and environmental protection, NO secondary pollution and so on.activated carbon for gold extraction
The adsorption properties of activated carbon fiber or modified activated carbon should be further studied.
Activated carbon desulfurization and denitration technology will be a promising technology for the combined removal of pollutants from coal burning.

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