The effects of foulant chemical composition on ultraviolet (UV) absorbance of fouled quartz sleeves in UV disinfection systems were studied. Statistical analysis was conducted to examine the effects of nine fouling chemicals on the UV transmittance changes of fouled quartz lamp sleeves. The results demonstrated that the main effects were attributable to surface concentrations of iron and manganese. The surface concentrations of calcium and copper had no significant effects on the UV absorbance of fouled sleeves. The interaction effects of copper with iron and magnesium with manganese were also revealed from the statistical analysis. The model is able to give reasonable predictions of the UV absorbance characteristics of foulants from other UV systems. However, several limitations of this model were identified. First, the model does not accurately predict the absorbance at relatively high chemical surface concentrations. Second, the model does not account for the possible effects of anions and organics on UV absorption of fouled quartz sleeves.
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Research Article|
July 01 2008
Chemical effects on UV irradiation absorption of fouled quartz sleeves in ultraviolet disinfection Available to Purchase
Beibei Zhu Sun;
Beibei Zhu Sun
1Purdue University, 550 Stadium Street, West Lafayette, IN, 47906, USA
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Ernest Blatchley;
1Purdue University, 550 Stadium Street, West Lafayette, IN, 47906, USA
E-mail: [email protected]
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Mike Oliver;
Mike Oliver
2Trojan Technologies, 3020 Gore Road, London, Ontario, N5V 4T7, Canada
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Cheng Zheng;
Cheng Zheng
3Purdue University, 250 N. University Street, West Lafayette, IN, 47906, USA
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Kristofer Jennings
Kristofer Jennings
3Purdue University, 250 N. University Street, West Lafayette, IN, 47906, USA
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Water Supply (2008) 8 (2): 217–222.
Citation
Beibei Zhu Sun, Ernest Blatchley, Mike Oliver, Cheng Zheng, Kristofer Jennings; Chemical effects on UV irradiation absorption of fouled quartz sleeves in ultraviolet disinfection. Water Supply 1 July 2008; 8 (2): 217–222. doi: https://doi.org/10.2166/ws.2008.064
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