Estimation of Organic Vapor Breakthrough in Humidified Activated Carbon Beds: —Application of Wheeler‐Jonas Equation, NIOSH MultiVapor™ and RBT (Relative Breakthrough Time)
Author:
Affiliation:
1. Work Environment Research GroupNational Institute of Occupational Safety and HealthJapan (JNIOSH)
2. Department of Human EngineeringNational Institute of Industrial HealthJapan
Publisher
Wiley
Subject
Public Health, Environmental and Occupational Health
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1539/joh.15-0244-OA
Reference17 articles.
1. Respirator cartridge efficiency studies: VII. effect of relative humidity and temperature
2. Quantitative Evaluation of the Effect of Moisture Contents of Coconut Shell Activated Carbon Used for Respirators on Adsorption Capacity for Organic Vapors
3. Reduction of Adsorption Capacity of Coconut Shell Activated Carbon for Organic Vapors Due to Moisture Contents
4. Application of Gas Adsorption Kinetics I. A Theoretical Model for Respirator Cartridge Service Life
5. Application of Gas Adsorption Kinetics — II. A Theoretical Model for Respirator Cartridge Service Life and Its Practical Applications
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1. The risk of multiple uses of respirator gas filters (literature review);Hygiene and sanitation;2022-03-10
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3. Application of Wheeler–Jonas equation and relative breakthrough time (RBT) in activated carbon beds of respirator gas filters;Air Quality, Atmosphere & Health;2020-07-08
4. Relative Breakthrough Time (RBT) of Organic Vapor in Activated Carbon Small Beds in Low Relative Humidity Environment;JOURNAL OF CHEMICAL ENGINEERING OF JAPAN;2018-05-20
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