都市水道塩素処理と消毒

数百万人の命を救った公衆衛生対策

Environmental & Water Treatment Global Industrial Scale $8 billion

概要

Water chlorination is the most widely used method for disinfecting municipal drinking water, credited with virtually eliminating waterborne diseases such as cholera, typhoid, and dysentery in developed countries. The process adds chlorine gas, sodium hypochlorite, or calcium hypochlorite to water, forming hypochlorous acid which destroys pathogenic bacteria, viruses, and protozoa. First applied in Jersey City, NJ in 1908, chlorination has been called the most significant public health advancement of the 20th century.

化学プロセス

Chlorine is added to treated water at 0.5-4 mg/L dose. It reacts with water to form hypochlorous acid (HOCl, the primary disinfectant) and hydrochloric acid. Breakpoint chlorination oxidizes ammonia and organic compounds first, then provides free chlorine residual for distribution system protection. Contact time of 15-30 minutes at the treatment plant ensures adequate CT (concentration x time) for disinfection.

Cl2 + H2O -> HOCl + HCl (chlorine hydrolysis)
HOCl <=> H+ + OCl- (pKa = 7.5, HOCl is 80x more effective than OCl-)
HOCl + pathogens -> oxidative destruction of cell membranes and nucleic acids

原材料

  • Chlorine gas (Cl2) — Chlor-alkali electrolysis of NaCl brine (Disinfectant (large systems))
  • Sodium hypochlorite (NaOCl, bleach) — Chlorination of NaOH (Disinfectant (small/medium systems))
  • Calcium hypochlorite (Ca(OCl)2) — Chlorination of Ca(OH)2 (Disinfectant (emergency/remote applications))

最終製品

  • Disinfected drinking water — Municipal water supply (Free chlorine residual 0.2-0.5 mg/L at tap)
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Environmental Impact

Chlorination produces disinfection byproducts (DBPs) including trihalomethanes (THMs) and haloacetic acids (HAAs) when chlorine reacts with natural organic matter. Some DBPs are suspected carcinogens. Residual chlorine can be toxic to aquatic organisms in wastewater discharge. Despite these concerns, chlorination's public health benefits vastly outweigh the DBP risks.

安全性の考慮事項

最新のイノベーション

Chloramine (monochloramine) disinfection produces fewer THMs while maintaining longer residual.
UV disinfection and ozone treatment used as primary disinfection with chlorine as secondary.
On-site sodium hypochlorite generation from salt electrolysis eliminates chlorine gas handling risks.

生産規模

5000000

トン/年

$8 billion

市場価値

もっと見る Environmental & Water Treatment

Frequently Asked Questions

What industry uses 都市水道塩素処理と消毒?
都市水道塩素処理と消毒 is used in the environmental & water treatment sector at global industrial scale scale.
What process is involved in 都市水道塩素処理と消毒?
Chlorine is added to treated water at 0.5-4 mg/L dose. It reacts with water to form hypochlorous acid (HOCl, the primary disinfectant) and hydrochloric acid. Breakpoint chlorination oxidizes ammonia and organic compounds first, then provides free chlorine residual for distribution system protection.
What is the economic significance of 都市水道塩素処理と消毒?
都市水道塩素処理と消毒 has a market value of $8 billion and annual production of 5,000,000 tons.
What is the environmental impact of 都市水道塩素処理と消毒?
Chlorination produces disinfection byproducts (DBPs) including trihalomethanes (THMs) and haloacetic acids (HAAs) when chlorine reacts with natural organic matter. Some DBPs are suspected carcinogens. Residual chlorine can be toxic to aquatic organisms in wastewater discharge. Despite these concerns
What raw materials are used in 都市水道塩素処理と消毒?
The main raw materials include: Chlorine gas (Cl2), Sodium hypochlorite (NaOCl, bleach), Calcium hypochlorite (Ca(OCl)2).