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Information Journal Paper

Title

THE EFFECT OF REACTION TIME, OZONE DOSAGE AND RELATIVE HUMIDITY ON THE PERFORMANCE OF UV/O3 PROCESS IN THE REMOVAL OF BENZENE FROM THE AIRFLOW

Pages

  81-91

Abstract

 Introduction: UV/O3 process is an advanced oxidation process that can be used to break down VOLATILE ORGANIC COMPOUNDS.This study was designed to examine the effectiveness of the UV/O3 process in the removal of BENZENE from the AIRFLOW, considering the effects of such intervening factors as relative humidity, OZONE dosage, and exposure time.Methods & Materials: The present study was an experimental research that was carried out on a laboratory scale. The laboratory equipment included an air pump, an injection pump, a mixing chamber, a rotameter, an OZONE generator, a low-pressure15-watt UV-C lamp, and a humidity generating system (consisting of an impinger and a heater). A concentration of 80 ppm of BENZENE was constantly exposed to the combined UV/O3 process under varying conditions of changing humidity levels, changing OZONE dosages, and changing exposure times and the different concentrations of BENZENE were measured and compared before and after exposure to the UV/O3 process. The data were analyzed using descriptive and inferential statistics and three-way ANOVA.Findings: The findings showed that all three factors of relative humidity, OZONE dosage, and exposure time affected the effectiveness of the UV/O3 process in removing BENZENE. Elevation of relative humidity enhanced the effectiveness of the system in removing BENZENE up to 60%. In addition, increasing OZONE dosage and exposure time led to improvements in the removal of BENZENE up to 24.5% via the UV/O3 process.Discussion & Conclusion: Given the ease of use and feasibility of performing the UV/O3 process under common environmental conditions, this method can be used as a powerful procedure in removing BENZENE from the AIRFLOW. Additionally, changing variables such as relative humidity, OZONE dosage, and exposure time can enhance the effectiveness of the system.

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    APA: Copy

    RASHIDI, R., MOUSSAVI, S.GH.R., & KHAVANIN, A.. (2013). THE EFFECT OF REACTION TIME, OZONE DOSAGE AND RELATIVE HUMIDITY ON THE PERFORMANCE OF UV/O3 PROCESS IN THE REMOVAL OF BENZENE FROM THE AIRFLOW. JOURNAL OF ILAM UNIVERSITY OF MEDICAL SCIENCES, 21(2), 81-91. SID. https://sid.ir/paper/90495/en

    Vancouver: Copy

    RASHIDI R., MOUSSAVI S.GH.R., KHAVANIN A.. THE EFFECT OF REACTION TIME, OZONE DOSAGE AND RELATIVE HUMIDITY ON THE PERFORMANCE OF UV/O3 PROCESS IN THE REMOVAL OF BENZENE FROM THE AIRFLOW. JOURNAL OF ILAM UNIVERSITY OF MEDICAL SCIENCES[Internet]. 2013;21(2):81-91. Available from: https://sid.ir/paper/90495/en

    IEEE: Copy

    R. RASHIDI, S.GH.R. MOUSSAVI, and A. KHAVANIN, “THE EFFECT OF REACTION TIME, OZONE DOSAGE AND RELATIVE HUMIDITY ON THE PERFORMANCE OF UV/O3 PROCESS IN THE REMOVAL OF BENZENE FROM THE AIRFLOW,” JOURNAL OF ILAM UNIVERSITY OF MEDICAL SCIENCES, vol. 21, no. 2, pp. 81–91, 2013, [Online]. Available: https://sid.ir/paper/90495/en

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