Title of article :
Photocatalytic Removal of Toluene from Gas Stream using AgI-ZnO/Chitosan Nanocomposite Fixed on Glass Bed under UVA Irradiation
Author/Authors :
Poormohammadi, A Center of Excellence for Occupational Health - Research Center for Health Sciences - School of Public Health - Hamadan University of Medical Sciences - Hamadan, Iran , Ghaedrahmat, Z Department of Environmental Health Engineering - School of Health - Ahvaz Jundishapur University of Medical Sciences - Ahvaz, Iran , Moazam, M. Ahmad Department of Environmental Health Engineering - School of Health - Ahvaz Jundishapur University of Medical Sciences - Ahvaz, Iran , Jaafarzadeh, N Department of Environmental Health Engineering - School of Health - Ahvaz Jundishapur University of Medical Sciences - Ahvaz, Iran , Enshayi, M Department of Environmental Health Engineering - School of Health - Ahvaz Jundishapur University of Medical Sciences - Ahvaz, Iran , Sharafi, N Department of Environmental Health Engineering - School of Health - Ahvaz Jundishapur University of Medical Sciences - Ahvaz, Iran
Pages :
8
From page :
598
To page :
605
Abstract :
In this study, AgI-ZnO/chitosan nanocomposite was synthesized and then was coated on 2×40×200 glass plates under UVA irradiation for the removal of toluene from air streams. The AgI-ZnO/chitosan Nanocomposite was characterized using XRD, SEM, FTIR and BET techniques. The analyses showed Zn and Ag were added to the composite structure with weight percentages of 32.02 and 7.31, respectively. The results confirmed that the AgI-ZnO/chitosan nanocomposite was successfully synthetized. According to the results, the photocatalytic process was able to remove 74.6% of toluene at an air flow rate of 1 L/min after 3.3 min. Also, by increasing the passing flow rate from 0.3 to 1.5 L/min through the photocatalytic reactor, the process efficiency for toluene removal increased. The toluene removal efficiency decreased with increasing relative humidity with respect to time. Moreover, increasing relative humidity decreased the photocatalyst capacity for the removal of the target pollutants. The results implied that the initial toluene concentration in the inlet stream played a key role on the photocatalysis of toluene and by further increase in the pollutant concentration higher than 20 ppm, its performance decreased dramatically. Therefore, the proposed process can be used and an effective technique for the removal of toluene from the polluted air stream under UV irradiation and increasing temperature up to 60 °C could increase its performance.
Farsi abstract :
در اين مطالعه AgI-ZnO نانوكامپوزيت كيتوزان سنتز شد و روي صفحات شيشه اي 2 × 40 × 200 تحت تابش UVA پوشانده شد، ﻧﺎﻧﻮﮐﺎﻣﭙﻮزﯾﺖ ﮐﯿﺘﻮزان/AgI-ZnO ﺑﺎ اﺳﺘﻔﺎده از ﺗﮑ ﻨﯿﮏ ﻫﺎي BET و FTIR ،SEM ،XRD ﺑﺮرﺳﯽ ﺷﺪ. ﺗﺠﺰﯾﻪ و ﺗﺤﻠﯿﻞ ﻧﺸﺎن داد ﮐﻪ Znو Ag / 32و 7 /31درﺻﺪ ﺑﻪ ﺳﺎﺧﺘﺎر ﮐﺎﻣﭙﻮزﯾﺖ اﺿﺎﻓﻪ ﺷﺪﻧﺪ ﮐﻪ ﺗﺄﯾﯿﺪ ﮐﺮد ﮐﻪ ﻧﺎﻧﻮﮐﺎﻣﭙﻮزﯾﺖ/AgI-ZnO ﮐﯿﺘﻮزان ﺑﺎ ﻣﻮﻓﻘﯿﺖ ﺳﻨﺘﺰ ﺷﺪه اﺳﺖ. ﺑﺎ ﺗﻮﺟﻪ ﺑﻪ ﻧﺘﺎﯾﺞ ، ﻓﺮ آﯾﻨﺪ ﻓﻮﺗﻮﮐﺎﺗﺎﻟ ﯿﺴﺘﯽ ﺗﻮاﻧﺴﺖ 6 74درﺻﺪ ﺗﻮﻟﻮﺋﻦ ر ا ﺑﺎ ﺳﺮﻋﺖ ﺟﺮﯾﺎن ﻫﻮا 1 ﻟﯿﺘﺮ ﺑﺮ دﻗﯿﻘﻪ ﭘﺲ از 3.3 دﻗﯿﻘﻪ ﺣﺬف ﮐﻨﺪ. ﻫﻤﭽﻨﯿﻦ ، ﺑﺎ اﻓﺰاﯾﺶ ﻣﯿﺰان ﺟﺮﯾﺎن ﻋﺒﻮر ي از 3/ 0ﺑﻪ 5/ 1 ﻟﯿﺘﺮ در دﻗﯿﻘﻪ از ﻃﺮﯾﻖ راﮐﺘﻮر ﻓﻮﺗﻮﮐﺎﺗﺎﻟﯿﺴﺘﯽ ، راﻧﺪﻣﺎن ﻓﺮ آﯾﻨﺪ ﺣﺬف ﺗﻮﻟﻮﺋﻦ اﻓﺰاﯾﺶ ﯾﺎﻓﺖ. راﻧﺪﻣﺎن ﺣﺬف ﺗﻮﻟﻮﺋﻦ ﺑﺎ اﻓﺰاﯾﺶ رﻃﻮﺑﺖ ﻧﺴ ﺒﯽ ﺑﺎ ﮔﺬﺷﺖ زﻣﺎن ﮐﺎﻫﺶ ﻣ ﯽ ﯾﺎﺑﺪ. ﻋﻼوه ﺑﺮ اﯾﻦ، اﻓﺰاﯾﺶ رﻃﻮﺑﺖ ﻧﺴﺒﯽ ﻇﺮﻓﯿﺖ ﻓﻮﺗﻮﮐﺎﺗﺎﻟﯿﺴﺖ را ﺑﺮاي ﺣﺬف آﻻﯾﻨﺪه ﻫﺪف ﮐﺎﻫﺶ ﻣﯽ دﻫﺪ. ﻧﺘﺎﯾﺞ ﺣﺎﮐﯽ از آن اﺳﺖ ﮐﻪ ﻏﻠ ﻈﺖ اوﻟﯿﻪ ﺗﻮﻟﻮﺋﻦ در ﺟﺮﯾﺎن ورودي ﻧﻘﺶ اﺳﺎﺳ ﯽ در ﻓﺘﻮﮐﺎﺗﺎﻟ ﯿﺰ ﺗﻮﻟﻮﺋﻦ داﺷﺘﻪ و ﺑﺎ اﻓﺰاﯾﺶ ﺑﯿﺸﺘﺮ ﻏﻠﻈﺖ آﻻﯾﻨﺪه ﺑﺎﻻﺗﺮ از 20ppm ، ﻋﻤﻠﮑﺮد آن ﺑﻪ ﻃﺮز ﭼﺸﻤﮕﯿﺮي ﮐﺎﻫﺶ ﻣﯽ ﯾﺎﺑﺪ. ﺑﻨﺎﺑﺮاﯾﻦ ، ﻓﺮ آﯾﻨﺪ ﭘﯿﺸﻨﻬﺎدي ﻣﯽ ﺗﻮاﻧﺪ و ﯾﮏ ﺗﮑﻨﯿﮏ ﻣﻮﺛﺮ ﺑﺮاي ﺣﺬف ﺗﻮﻟﻮﺋﻦ از ﺟﺮﯾﺎن ﻫﻮاي آﻟﻮده ﺗﺤﺖ ﺗﺎﺑﺶ اﺷﻌﻪ ﻣﺎورا ﺑﻨﻔﺶ ﻣﻮرد اﺳﺘﻔﺎده ﻗﺮار ﮔﯿﺮد .و اﻓﺰاﯾﺶ دﻣﺎ ﺗﺎ 60درﺟﻪ ﺳﺎﻧﺘﯿﮕﺮاد ﻋﻤﻠﮑﺮد آن را اﻓﺰاﯾﺶ دﻫﺪ .
Keywords :
Nanocomposite , Chitosan , Ultraviolent , photocatalyst , Toluene
Journal title :
International Journal of Engineering
Serial Year :
2021
Record number :
2698105
Link To Document :
بازگشت