Javascript must be enabled to continue!
Investigation of photocatalytic-proxone process performance in the degradation of toluene and ethyl benzene from polluted air
View through CrossRef
AbstractIn this study, toluene and ethylbenzene were degraded in the photocatalytic-proxone process using BiOI@NH2-MIL125(Ti)/Zeolite nanocomposite. The simultaneous presence of ozone and hydrogen peroxide is known as the proxone process. Nanocomposite Synthesis was carried out using the solvothermal method. Inlet airflow, ozone concentrations, H2O2 concentrations, relative humidity, and initial pollutants concentrations were studied. The nanocomposite was successfully synthesized based on FT-IR, BET, XRD, FESEM, EDS element mapping, UV–Vis spectra and TEM analysis. A flow rate of 0.1 L min−1, 0.3 mg min−1 of ozone, 150 ppm of hydrogen peroxide, 45% relative humidity, and 50 ppmv of pollutants were found to be optimal operating conditions. Both pollutants were degraded in excess of 95% under these conditions. For toluene and ethylbenzene, the synergistic of mechanisms effect coefficients were 1.56 and 1.76, respectively. It remained above 95% efficiency 7 times in the hybrid process and had good stability. Photocatalytic-proxone processes were evaluated for stability over 180 min. The remaining ozone levels in the process was insignificant (0.01 mg min−1). The CO2 and CO production in the photocatalytic-proxone process were 58.4, 5.7 ppm for toluene and 53.7, and 5.5 ppm for ethylbenzene respectively. Oxygen gas promoted and nitrogen gas had an inhibitory effect on the effective removal of pollutants. During the pollutants oxidation, various organic intermediates were identified.
Springer Science and Business Media LLC
Title: Investigation of photocatalytic-proxone process performance in the degradation of toluene and ethyl benzene from polluted air
Description:
AbstractIn this study, toluene and ethylbenzene were degraded in the photocatalytic-proxone process using BiOI@NH2-MIL125(Ti)/Zeolite nanocomposite.
The simultaneous presence of ozone and hydrogen peroxide is known as the proxone process.
Nanocomposite Synthesis was carried out using the solvothermal method.
Inlet airflow, ozone concentrations, H2O2 concentrations, relative humidity, and initial pollutants concentrations were studied.
The nanocomposite was successfully synthesized based on FT-IR, BET, XRD, FESEM, EDS element mapping, UV–Vis spectra and TEM analysis.
A flow rate of 0.
1 L min−1, 0.
3 mg min−1 of ozone, 150 ppm of hydrogen peroxide, 45% relative humidity, and 50 ppmv of pollutants were found to be optimal operating conditions.
Both pollutants were degraded in excess of 95% under these conditions.
For toluene and ethylbenzene, the synergistic of mechanisms effect coefficients were 1.
56 and 1.
76, respectively.
It remained above 95% efficiency 7 times in the hybrid process and had good stability.
Photocatalytic-proxone processes were evaluated for stability over 180 min.
The remaining ozone levels in the process was insignificant (0.
01 mg min−1).
The CO2 and CO production in the photocatalytic-proxone process were 58.
4, 5.
7 ppm for toluene and 53.
7, and 5.
5 ppm for ethylbenzene respectively.
Oxygen gas promoted and nitrogen gas had an inhibitory effect on the effective removal of pollutants.
During the pollutants oxidation, various organic intermediates were identified.
Related Results
BENZENE AND TOLUENE EXPOSURE IN RELATION TO THEIR HEALTH EFFECTS AMONG SKY-TRAIN STATION GUARDSIN BANGKOK THAILAND
BENZENE AND TOLUENE EXPOSURE IN RELATION TO THEIR HEALTH EFFECTS AMONG SKY-TRAIN STATION GUARDSIN BANGKOK THAILAND
The problem of air pollution in Bangkok has been exacerbated by increasingly crowded traffic and transportation, the major sources of pollution. As a result, Benzene and Toluene ar...
Removal of toxic vapors by oxidation: Development of laboratory test procedures for in-duct air cleaning systems
Removal of toxic vapors by oxidation: Development of laboratory test procedures for in-duct air cleaning systems
Exposure to volatile organic compounds (VOC) in workplaces can cause acute effects such as irritation of the skin, the eyes, the mouth, and the nose. Some products may also cause c...
Identify benzene pollution, sources of benzene emission and suggest mitigation measures for Ho Chi Minh City, Vietnam
Identify benzene pollution, sources of benzene emission and suggest mitigation measures for Ho Chi Minh City, Vietnam
Abstract
In Ho Chi Minh City (HCMC), benzene concentration was higher than the benzene standard of Vietnam technical regulation for ambient air. However, there is a ...
Lead or Cadmium Co-Contamination Alters Benzene and Toluene Degrading Bacterial Communities
Lead or Cadmium Co-Contamination Alters Benzene and Toluene Degrading Bacterial Communities
Abstract
Co-contamination of hydrocarbons with heavy metals in soils often complicates and hinders bioremediation. A comprehensive characterization of site-specific degrade...
FAKTOR KETERPAPARAN BENZENA PADA MEKANIK DI BENGKEL SEPEDA MOTOR
FAKTOR KETERPAPARAN BENZENA PADA MEKANIK DI BENGKEL SEPEDA MOTOR
The effects of benzene exposure on living things, especially animals and humans, have been studied almost throughout this century. Short exposure and long-term exposure to benzene ...
Relationship between benzene concentration, MDA levels and kidney function in car painting workshops in Surabaya: A cross-sectional observational study
Relationship between benzene concentration, MDA levels and kidney function in car painting workshops in Surabaya: A cross-sectional observational study
Background Car painting workers are at risk of health problems, particularly kidney disorders, due to exposure to solvents containing benzene as the main ingredient in the car pain...
Élimination des vapeurs toxiques par oxydation : développement de procédures d'évaluation des systèmes de purification de l'air des conduits de ventilation
Élimination des vapeurs toxiques par oxydation : développement de procédures d'évaluation des systèmes de purification de l'air des conduits de ventilation
L'exposition à des composés organiques volatils (COV) dans les lieux de travail peut avoir des effets aigus, notamment sous forme d'irritation de la peau, des yeux, de la bouche et...
Relationship between benzene concentration, MDA levels and kidney function in car painting workshops in Surabaya: A cross-sectional observational study
Relationship between benzene concentration, MDA levels and kidney function in car painting workshops in Surabaya: A cross-sectional observational study
Background Car painting workers are at risk because of the use of solvents containing benzene as the main ingredient in the car painting process. One of the clinical effects of sys...

