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A method for measuring bromate generated by carbonate radical pathway in ozone system

A carbonate and free radical technology, applied in the field of water treatment, can solve problems such as bromate exceeding the standard, and achieve the effect of simple operation and wide application range

Active Publication Date: 2021-08-06
GUANGZHOU UNIVERSITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The ozone process will face the risk of bromate exceeding the standard when treating brominated water

Method used

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  • A method for measuring bromate generated by carbonate radical pathway in ozone system
  • A method for measuring bromate generated by carbonate radical pathway in ozone system
  • A method for measuring bromate generated by carbonate radical pathway in ozone system

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0032] The initial concentration of bromide ions in water is 10 μmol / L, the pH is 8, the water temperature is 20±2°C, and the total concentration of carbonate / bicarbonate is 0mmol / L, 0.5mmol / L, 1mmol / L, 2mmol / L and 4mmol respectively / L.

[0033] Divide the above water into two groups, one of which is ready for testing.

[0034] Add sulfuric acid to another group of water, adjust its pH to 1, mix well and blow off with nitrogen to remove carbonate / bicarbonate in the simulated water. Subsequently, sodium hydroxide is added to the water to adjust the pH back to the original value, and then tert-butanol is added to make tert-butanol and carbonate / bicarbonate in the water to be tested have the same ability to capture hydroxyl radicals, and the concentrations are respectively 0 μmol / L, 8.4μmol / L, 16.8μmol / L, 33.6μmol / L, 67.2μmol / L.

[0035] Add ozone to the two groups of water so that the concentration of ozone in the water is 4 mg / L, and react for 25 minutes.

[0036] The conce...

Embodiment 2

[0039] The initial concentration of bromide ions in water is 10 μmol / L, the pH is 7, the water temperature is 20±2°C, and the total concentration of carbonate / bicarbonate is 0mmol / L, 0.5mmol / L, 1mmol / L, 2mmol / L and 4mmol respectively / L.

[0040] Divide the above water into two groups, one of which is ready for testing.

[0041] Add sulfuric acid to another group of water, adjust its pH to 1, mix well and blow off with nitrogen to remove carbonate / bicarbonate in the simulated water. Subsequently, sodium hydroxide is added to the water to adjust the pH back to the original value, and then tert-butanol is added to make tert-butanol and carbonate / bicarbonate in the water to be tested have the same ability to capture hydroxyl radicals, and the concentrations are respectively 0 μmol / L, 6.05 μmol / L, 12.1 μmol / L, 24.2 μmol / L, 48.4 μmol / L.

[0042] Add ozone to the two groups of water so that the concentration of ozone in the water is 4 mg / L, and react for 25 minutes.

[0043] The ...

Embodiment 3

[0046] The initial concentration of bromide ions in water is 10 μmol / L, the pH is 6, the water temperature is 20±2°C, and the total concentration of carbonate / bicarbonate is 0mmol / L, 0.5mmol / L, 1mmol / L, 2mmol / L and 4mmol respectively / L.

[0047] Divide the above water into two groups, one of which is ready for testing.

[0048] Add sulfuric acid to another group of water, adjust its pH to 1, mix well and blow off with nitrogen to remove carbonate / bicarbonate in the simulated water. Subsequently, sodium hydroxide is added to the water to adjust the pH back to the original value, and then tert-butanol is added to make tert-butanol and carbonate / bicarbonate in the water to be tested have the same ability to capture hydroxyl radicals, and the concentrations are respectively 0 μmol / L, 2.72μmol / L, 5.43μmol / L, 10.87μmol / L, 21.74μmol / L.

[0049] Add ozone to the two groups of water so that the concentration of ozone in the water is 4 mg / L, and react for 25 minutes.

[0050] The co...

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Abstract

The invention provides a method for measuring bromate generated by the carbonate radical pathway in the ozone system, the method comprising the steps of: (1) measuring the total concentration of carbonate / bicarbonate, pH value, bromine in the water to be measured Ion concentration, UV 254 and total organic carbon; (2) prepare simulated water, the pH value of the simulated water, bromide ion concentration, UV 254 , total organic carbon and hydroxyl radical capture capacity are equal to the water to be tested, and the simulated water does not contain carbonate / bicarbonate; (3) add ozone to the water to be tested and the simulated water to react; (4) The concentration of bromate in the water to be tested and simulated water after the reaction was detected. The method can accurately detect the concentration of bromate generated by the carbonate radical pathway in the ozone system, and the operation is simple and convenient. It is conducive to more accurately assessing the risk of bromate formation in ozone-high alkalinity water bodies, and is conducive to the further development of better bromate control technologies in water bodies, which can be applied to various actual water bodies.

Description

technical field [0001] The invention relates to the field of water treatment, in particular to a method for measuring bromate generated by carbonate radicals in an ozone system. Background technique [0002] At present, the ozone process has been widely used in the fields of drinking water disinfection, oxidation degradation of organic micro-pollutants, and industrial wastewater treatment. [0003] The ozone process will face the risk of bromate exceeding the standard when treating bromine-containing water. Bromate is a Class 2B potential carcinogen identified by the World Health Organization (WTO). Therefore, my country's "Drinking Water Hygiene Standard" and the drinking water standards of many European and American countries set its maximum threshold at 10 μg / L. Therefore, how to determine bromate generated by different pathways in the ozone system is of great significance for assessing and controlling the risk of bromate exceeding the standard in the ozone process. [...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01N30/02G01N30/96C02F1/78
CPCC02F1/78G01N30/02G01N30/96
Inventor 杨兢欣刘鸿
Owner GUANGZHOU UNIVERSITY