Effect of water temperature and pH on the concentration and time of ozone saturation
Abstract Ozone has been used for many years to disinfect water due to its oxidizing potential. Since it decomposes quickly into molecular oxygen, leaving no residue, it has important advantages for use. The decomposition of ozone is affected by the temperature and pH of the medium, low pH values and temperatures increasing its half-life, which can result in more efficient disinfection. With the objective of increasing the effectiveness of ozonation, this study investigated the effect of temperature (8 ºC and 25 °C) and pH (3.0 and 6.0) of the water on the saturation time and gas concentration, employing two initial gas concentrations (13.3 and 22.3 mg L-1). The concentration of ozone saturation increased as the temperature and pH of the medium decreased, as also with the higher initial gas concentration ( C0). The highest saturation concentrations were obtained at pH 3.0 and 8 °C (4.50 and 8.03 mg L-1 with C0 of 13.3 and 22.3 mg L-1, respectively). This higher ozone content could result in greater decontamination efficiency of the food products washed with this water.
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Instituto de Tecnologia de Alimentos - ITAL
2018
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oai:scielo:S1981-672320180001004332018-04-12Effect of water temperature and pH on the concentration and time of ozone saturationGaldeano,Melicia CintiaWilhelm,Allan EduardoGoulart,Isabella BorgesTonon,Renata ValerianoFreitas-Silva,OtnielGermani,RogérioChávez,Davy William Hidalgo Ozonation Saturation concentration Saturation time Abstract Ozone has been used for many years to disinfect water due to its oxidizing potential. Since it decomposes quickly into molecular oxygen, leaving no residue, it has important advantages for use. The decomposition of ozone is affected by the temperature and pH of the medium, low pH values and temperatures increasing its half-life, which can result in more efficient disinfection. With the objective of increasing the effectiveness of ozonation, this study investigated the effect of temperature (8 ºC and 25 °C) and pH (3.0 and 6.0) of the water on the saturation time and gas concentration, employing two initial gas concentrations (13.3 and 22.3 mg L-1). The concentration of ozone saturation increased as the temperature and pH of the medium decreased, as also with the higher initial gas concentration ( C0). The highest saturation concentrations were obtained at pH 3.0 and 8 °C (4.50 and 8.03 mg L-1 with C0 of 13.3 and 22.3 mg L-1, respectively). This higher ozone content could result in greater decontamination efficiency of the food products washed with this water.info:eu-repo/semantics/openAccessInstituto de Tecnologia de Alimentos - ITALBrazilian Journal of Food Technology v.21 20182018-01-01info:eu-repo/semantics/articletext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S1981-67232018000100433en10.1590/1981-6723.15617 |
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Galdeano,Melicia Cintia Wilhelm,Allan Eduardo Goulart,Isabella Borges Tonon,Renata Valeriano Freitas-Silva,Otniel Germani,Rogério Chávez,Davy William Hidalgo |
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Galdeano,Melicia Cintia Wilhelm,Allan Eduardo Goulart,Isabella Borges Tonon,Renata Valeriano Freitas-Silva,Otniel Germani,Rogério Chávez,Davy William Hidalgo Effect of water temperature and pH on the concentration and time of ozone saturation |
author_facet |
Galdeano,Melicia Cintia Wilhelm,Allan Eduardo Goulart,Isabella Borges Tonon,Renata Valeriano Freitas-Silva,Otniel Germani,Rogério Chávez,Davy William Hidalgo |
author_sort |
Galdeano,Melicia Cintia |
title |
Effect of water temperature and pH on the concentration and time of ozone saturation |
title_short |
Effect of water temperature and pH on the concentration and time of ozone saturation |
title_full |
Effect of water temperature and pH on the concentration and time of ozone saturation |
title_fullStr |
Effect of water temperature and pH on the concentration and time of ozone saturation |
title_full_unstemmed |
Effect of water temperature and pH on the concentration and time of ozone saturation |
title_sort |
effect of water temperature and ph on the concentration and time of ozone saturation |
description |
Abstract Ozone has been used for many years to disinfect water due to its oxidizing potential. Since it decomposes quickly into molecular oxygen, leaving no residue, it has important advantages for use. The decomposition of ozone is affected by the temperature and pH of the medium, low pH values and temperatures increasing its half-life, which can result in more efficient disinfection. With the objective of increasing the effectiveness of ozonation, this study investigated the effect of temperature (8 ºC and 25 °C) and pH (3.0 and 6.0) of the water on the saturation time and gas concentration, employing two initial gas concentrations (13.3 and 22.3 mg L-1). The concentration of ozone saturation increased as the temperature and pH of the medium decreased, as also with the higher initial gas concentration ( C0). The highest saturation concentrations were obtained at pH 3.0 and 8 °C (4.50 and 8.03 mg L-1 with C0 of 13.3 and 22.3 mg L-1, respectively). This higher ozone content could result in greater decontamination efficiency of the food products washed with this water. |
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Instituto de Tecnologia de Alimentos - ITAL |
publishDate |
2018 |
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http://old.scielo.br/scielo.php?script=sci_arttext&pid=S1981-67232018000100433 |
work_keys_str_mv |
AT galdeanomeliciacintia effectofwatertemperatureandphontheconcentrationandtimeofozonesaturation AT wilhelmallaneduardo effectofwatertemperatureandphontheconcentrationandtimeofozonesaturation AT goulartisabellaborges effectofwatertemperatureandphontheconcentrationandtimeofozonesaturation AT tononrenatavaleriano effectofwatertemperatureandphontheconcentrationandtimeofozonesaturation AT freitassilvaotniel effectofwatertemperatureandphontheconcentrationandtimeofozonesaturation AT germanirogerio effectofwatertemperatureandphontheconcentrationandtimeofozonesaturation AT chavezdavywilliamhidalgo effectofwatertemperatureandphontheconcentrationandtimeofozonesaturation |
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