GITNUX MARKETDATA REPORT 2024

Chlorine Evaporation Period Statistics

The evaporation period of chlorine is typically around 4 to 6 days depending on environmental conditions.

With sources from: pubchem.ncbi.nlm.nih.gov, cdc.gov, epa.gov, ncbi.nlm.nih.gov and many more

Statistic 1

Chlorine is utilized in about 98% of water treatment plants in the USA for disinfection.

Statistic 2

Chlorine has a boiling point of -34.04°C (-29.27°F).

Statistic 3

Chlorine exposure limits for workers are set by OSHA at 1 ppm over an 8-hour workday.

Statistic 4

Liquid chlorine is a common disinfectant in water treatment.

Statistic 5

Chlorine gas has a density of 2.48 times that of air, making it heavier than air.

Statistic 6

Chlorine can evaporate more rapidly in open systems compared to closed systems.

Statistic 7

Chlorine gas has a pungent, irritating odor detectable at 0.1 to 0.3 parts per million (ppm).

Statistic 8

The atmospheric lifetime of chlorine gas is relatively short due to its reactivity.

Statistic 9

Chlorine is among the top ten chemicals produced in the United States by volume.

Statistic 10

Chlorine was first used for water disinfection in 1908 in Jersey City, New Jersey.

Statistic 11

Chlorine is one of the most commonly used disinfectants in the United States.

Statistic 12

At room temperature, chlorine is a yellow-green gas.

Statistic 13

Evaporation of chlorine can lead to significant reduction in pool chlorine levels within just a few hours.

Statistic 14

The rate of chlorine evaporation can be influenced by pH levels in water.

Statistic 15

Chlorine has a molecular weight of approximately 70.9 g/mol.

Statistic 16

Chlorine is highly reactive and can combine with nearly every element.

Statistic 17

Extensive exposure to chlorine can cause respiratory issues in humans.

Statistic 18

The evaporation period of chlorine can vary widely depending on temperature and pressure.

Statistic 19

Chlorine evaporation can be accelerated by high temperatures and strong ventilation.

Statistic 20

The solubility of chlorine in water at 25°C is approximately 7.3 g/L.

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In this post, we explore the fascinating world of chlorine evaporation period, shedding light on its significance in water treatment processes and beyond. From its widespread usage in water treatment plants to its distinct physical and chemical properties, chlorine plays a crucial role in maintaining public health and safety. Join us as we delve into the statistics and factors influencing the evaporation of chlorine and its implications on water disinfection practices.

Statistic 1

"Chlorine is utilized in about 98% of water treatment plants in the USA for disinfection."

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Statistic 2

"Chlorine has a boiling point of -34.04°C (-29.27°F)."

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Statistic 3

"Chlorine exposure limits for workers are set by OSHA at 1 ppm over an 8-hour workday."

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Statistic 4

"Liquid chlorine is a common disinfectant in water treatment."

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Statistic 5

"Chlorine gas has a density of 2.48 times that of air, making it heavier than air."

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Statistic 6

"Chlorine can evaporate more rapidly in open systems compared to closed systems."

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Statistic 7

"Chlorine gas has a pungent, irritating odor detectable at 0.1 to 0.3 parts per million (ppm)."

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Statistic 8

"The atmospheric lifetime of chlorine gas is relatively short due to its reactivity."

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Statistic 9

"Chlorine is among the top ten chemicals produced in the United States by volume."

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Statistic 10

"Chlorine was first used for water disinfection in 1908 in Jersey City, New Jersey."

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Statistic 11

"Chlorine is one of the most commonly used disinfectants in the United States."

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Statistic 12

"At room temperature, chlorine is a yellow-green gas."

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Statistic 13

"Evaporation of chlorine can lead to significant reduction in pool chlorine levels within just a few hours."

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Statistic 14

"The rate of chlorine evaporation can be influenced by pH levels in water."

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Statistic 15

"Chlorine has a molecular weight of approximately 70.9 g/mol."

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Statistic 16

"Chlorine is highly reactive and can combine with nearly every element."

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Statistic 17

"Extensive exposure to chlorine can cause respiratory issues in humans."

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Statistic 18

"The evaporation period of chlorine can vary widely depending on temperature and pressure."

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Statistic 19

"Chlorine evaporation can be accelerated by high temperatures and strong ventilation."

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Statistic 20

"The solubility of chlorine in water at 25°C is approximately 7.3 g/L."

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Interpretation

In conclusion, the statistics presented highlight the widespread use and properties of chlorine in water treatment, as well as its potential risks and effects. Chlorine's rapid evaporation rate, influenced by factors such as pH levels and ventilation, can lead to significant reductions in disinfection levels within hours. Workers and individuals should be cautious of chlorine exposure due to its reactivity and respiratory health implications. Understanding the dynamics of chlorine evaporation, including its short atmospheric lifetime and solubility in water, is crucial in maintaining effective water treatment processes and ensuring safety standards are met.

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