Chlorine Handwashing

Chlorine handwashing is an infection-control practice that uses chlorine-containing water or solutions to reduce microorganisms on the hands, helping interrupt transmission of infectious disease. Chlorine acts as an oxidizing agent, damaging microbial proteins, membranes, and nucleic acids when hands are adequately wetted and exposed for the recommended contact time; rinsing and drying then remove residual contamination. In immunology and infection research, this practice provides a practical barrier against pathogen spread in clinical, laboratory, and outbreak settings, while proper concentration, preparation, skin safety, and adherence determine its effectiveness. Understanding its mechanism supports safer hygiene protocols and evaluation of hand-decontamination strategies.

Chlorine Handwashing - Related Videos

Research

JoVE Journal - Immunology and Infection

A Method to Test the Efficacy of Handwashing for the Removal of Emerging Infectious Pathogens

0 Views •

Cited by 9 •

2017

Handwashing is widely recommended to prevent infectious disease transmission. However, there is little evidence on which handwashing methods are most efficacious at removing infectious disease pathogens. We developed a method to assess the efficacy of handwashing methods at removing microorganisms.

Education

JoVE Core - Nursing

Handwashing I: Introduction and Types of Equipment

0 Views •

2023

Handwashing is hand hygiene with plain or antimicrobial soap and water to physically remove dirt, organic material, and microorganisms. However, it may not kill all microorganisms. The handwashing procedure requires a hand wash basin, liquid soap, paper towels, a domestic waste bin, and disposable nail cleaner as optional equipment. Hand wash basins in clinical areas should have faucets that can be turned on and off without using the hands; that is, they should be non-touch or lever-operated.

Radical Substitution: Allylic Chlorination

0 Views •

2023

Typically, when alkenes react with halogens at low temperatures, an addition reaction occurs. However, upon increasing the temperature or under reaction conditions that form radicals, providing a low but steady concentration of halogen radicals, allylic substitution reaction is favored. This is because allylic hydrogens are very reactive as the formed intermediate is resonance stabilized. For example, when propene is treated with chlorine in the gas phase at 400 °C, it undergoes allylic...

The Portable Chemical Sterilizer (PCS), D-FENS, and D-FEND ALL: Novel Chlorine Dioxide Decontamination Technologies for the Military

0 Views •

Cited by 8 •

2014

The Portable Chemical Sterilizer (PCS) is a revolutionary, energy-independent, almost waterless sterilization technology for Army medical units. The PCS generates chlorine dioxide from dry reagents mixed with water on-site, at-will, and at point-of-use (PoU) in a plastic suitcase. The Disinfectant-sprayer for Foods and ENvironmentally-friendly Sanitation (D-FENS) and the Disinfectant for ENvironmentally-friendly Decontamination, All-purpose (D-FEND ALL) produce aqueous chlorine dioxide in a...

Controlled-release of Chlorine Dioxide in a Perforated Packaging System to Extend the Storage Life and Improve the Safety of Grape Tomatoes

0 Views •

Cited by 14 •

2017

Here, we describe a protocol for the application of a novel, slow-release ClO2 product that reduces spoilage and extends the shelf life of fresh fruit. The slow-release ClO2 product was added to standard commercial grape tomato packaging and tested against Escherichia coli and Alternaria alternata.

View All Results

FAQs

Related Topics