2010Journal of Environmental EngineeringRequires access

Bromate Formation by Ozone-VUV in Comparison with Ozone and Ozone-UV: Effects of pH, Ozone Dose, and VUV Power

Thunyalux Ratpukdi, Francis X. M. Casey, Thomas M. DeSutter, Eakalak Khan

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Abstract

The formation of bromate by ozone–vacuum ultraviolet (VUV) (185+254 nm) process in comparison with ozone and ozone-ultraviolet (UV) (254 nm) processes of coagulated and softened water was studied. The effects of pH (7, 9, and 11), ozone dosage (1, 2, and 4 mg O3/mg C), and VUV power (30, 60, and 120 W) were investigated. Bromate concentrations formed by the ozone-VUV process were up to four and six times less than those by the ozone and ozone-UV processes, respectively. Among the variables studied, ozone dosage had the most effect on bromate formation by the ozone-VUV process. Approximately 64 and 213% increases of bromate concentration were observed when the ozone dosage was increased from 1 to 2 and 4 mg O3/mg C with VUV power of 120 W at pH 7. The bromate formation also increased as VUV power and pH increased. Hydroxyl radical exposure had a positive relationship with ozone dosage and bromate formation. Results further indicated that it might be difficult to achieve the drinking water standard for bromate and high organic matter removal concurrently.

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What this paper is about

The formation of bromate by ozone–vacuum ultraviolet (VUV) (185+254 nm) process in comparison with ozone and ozone-ultraviolet (UV) (254 nm) processes of coagulated and softened water was studied. The effects of pH (7, 9, and 11), ozone dosage (1, 2, and 4 mg O3/mg C), and VUV power (30, 60, and 120 W) were investigated. Bromate concentrations formed by the ozone-VUV process were up to four and six times less than those by the ozone and ozone-UV processes, respectively. Among the variables studied, ozone dosage had the most effect on bromate formation by the ozone-VUV process. Approximately 64 and 213% increases of bromate concentration were observed when the ozone dosage was increased from 1 to 2 and 4 mg O3/mg C with VUV power of 120 W at pH 7. The bromate formation also increased as VUV power and pH increased. Hydroxyl radical exposure had a positive relationship with ozone dosage and bromate formation. Results further indicated that it might be difficult to achieve the drinking water standard for bromate and high organic matter removal concurrently.

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Available abstract

The formation of bromate by ozone–vacuum ultraviolet (VUV) (185+254 nm) process in comparison with ozone and ozone-ultraviolet (UV) (254 nm) processes of coagulated and softened water was studied. The effects of pH (7, 9, and 11), ozone dosage (1, 2, and 4 mg O3/mg C), and VUV power (30, 60, and 120 W) were investigated. Bromate concentrations formed by the ozone-VUV process were up to four and six times less than those by the ozone and ozone-UV processes, respectively. Among the variables studied, ozone dosage had the most effect on bromate formation by the ozone-VUV process. Approximately 64 and 213% increases of bromate concentration were observed when the ozone dosage was increased from 1 to 2 and 4 mg O3/mg C with VUV power of 120 W at pH 7. The bromate formation also increased as VUV power and pH increased. Hydroxyl radical exposure had a positive relationship with ozone dosage and bromate formation. Results further indicated that it might be difficult to achieve the drinking water standard for bromate and high organic matter removal concurrently.

Key concepts: Bromate, Ozone, Chemistry, Ultraviolet, Environmental chemistry, Photochemistry, Inorganic chemistry, Bromide

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