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Homepage>BS ISO 17721-2:2021 Quantitative determination of antibacterial activity of ceramic tile surfaces. Test methods Ceramic tile surfaces with incorporated photocatalytic antibacterial agents
sklademVydáno: 2021-08-25
BS ISO 17721-2:2021 Quantitative determination of antibacterial activity of ceramic tile surfaces. Test methods Ceramic tile surfaces with incorporated photocatalytic antibacterial agents

BS ISO 17721-2:2021

Quantitative determination of antibacterial activity of ceramic tile surfaces. Test methods Ceramic tile surfaces with incorporated photocatalytic antibacterial agents

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Označení normy:BS ISO 17721-2:2021
Počet stran:18
Vydáno:2021-08-25
ISBN:978 0 580 52077 8
Status:Standard
DESCRIPTION

BS ISO 17721-2:2021


This standard BS ISO 17721-2:2021 Quantitative determination of antibacterial activity of ceramic tile surfaces. Test methods is classified in these ICS categories:
  • 91.100.23 Ceramic tiles

This document specifies test methods for evaluating the antibacterial activity of glazed and unglazed ceramic tile surfaces with incorporated photocatalytic antibacterial agents.

Secondary effects on ceramic tile surfaces due to photocatalytic antibacterial treatments, such as changes in chemical resistance, stain resistance or small colour differences, are not covered by this document. For chemical resistance refer to ISO 10545-13 , for stain resistance refer to ISO 10545-14 and for colour differences refer to ISO 10545-16 .

Other types of performance of photocatalytic ceramics, i.e. decomposition of water contaminants, self-cleaning, antifogging and air purification, are not covered by this document. It is also not intended to be used to evaluate ceramic surfaces that have been treated with topical disinfectants or agents that can offer residual activity for limited periods.

Any results obtained with this document will always refer to this document and the conditions used. Results obtained with this document indicate antibacterial activity under the specified experimental conditions used herein, and do not reflect activity under other circumstances where a variety of factors, such as temperature, humidity, different bacterial species, nutrient conditions, etc., are considered.