Household and similar electrical air cleaning appliances - Method for measuring performance - Part 2-2: Particular requirements for determination of gas-phase pollutant reduction

Elektrische Luftreinigungsgeräte für den Hausgebrauch und ähnliche Zwecke – Messung der Gebrauchseigenschaften – Teil 2-2: Besondere Anforderungen für die Bestimmung der chemischen Gasreduktion

Appareils d'épuration d'air électriques domestiques et appareils similaires - Méthodes de mesure de l'aptitude à la fonction - Partie 2-2: Exigences particulières pour la détermination de la réduction des polluants en phase gazeuse

Gospodinjski in podobni električni aparati za čiščenje zraka - Metode za merjenje učinkovitost delovanja - 2-2. del: Posebne zahteve za določanje zmanjšanja onesnaževal v plinski fazi

General Information

Status
Not Published
Public Enquiry End Date
29-Jun-2025
Current Stage
4020 - Public enquire (PE) (Adopted Project)
Start Date
08-May-2025
Due Date
25-Sep-2025
Completion Date
30-Jun-2025
Draft
prEN IEC 63086-2-2:2025
English language
34 pages
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Standards Content (Sample)


SLOVENSKI STANDARD
01-junij-2025
Gospodinjski in podobni električni aparati za čiščenje zraka - Metode za merjenje
učinkovitost delovanja - 2-2. del: Posebne zahteve za določanje zmanjšanja
onesnaževal v plinski fazi
Household and similar electrical air cleaning appliances - Method for measuring
performance - Part 2-2: Particular requirements for determination of gas-phase pollutant
reduction
Appareils d'épuration d'air électriques domestiques et appareils similaires - Méthodes de
mesure de l'aptitude à la fonction - Partie 2-2: Exigences particulières pour la
détermination de la réduction des polluants en phase gazeuse
Ta slovenski standard je istoveten z: prEN IEC 63086-2-2:2025
ICS:
23.120 Zračniki. Vetrniki. Klimatske Ventilators. Fans. Air-
naprave conditioners
97.030 Električni aparati za dom na Domestic electrical
splošno appliances in general
2003-01.Slovenski inštitut za standardizacijo. Razmnoževanje celote ali delov tega standarda ni dovoljeno.

59N/69/CDV
COMMITTEE DRAFT FOR VOTE (CDV)
PROJECT NUMBER:
IEC 63086-2-2 ED1
DATE OF CIRCULATION: CLOSING DATE FOR VOTING:
2025-04-25 2025-07-18
SUPERSEDES DOCUMENTS:
59N/39/CD, 59N/67/CC
IEC SC 59N : ELECTRICAL AIR CLEANERS FOR HOUSEHOLD AND SIMILAR PURPOSES
SECRETARIAT: SECRETARY:
United States of America Mr Wayne Morris
OF INTEREST TO THE FOLLOWING COMMITTEES: HORIZONTAL FUNCTION(S):
TC 34,TC 59
ASPECTS CONCERNED:
Environment
SUBMITTED FOR CENELEC PARALLEL VOTING NOT SUBMITTED FOR CENELEC PARALLEL VOTING
Attention IEC-CENELEC parallel voting
The attention of IEC National Committees, members of
CENELEC, is drawn to the fact that this Committee Draft for
Vote (CDV) is submitted for parallel voting.
The CENELEC members are invited to vote through the
CENELEC online voting system.
This document is still under study and subject to change. It should not be used for reference purposes.
Recipients of this document are invited to submit, with their comments, notification of any relevant patent rights of which
they are aware and to provide supporting documentation.
Recipients of this document are invited to submit, with their comments, notification of any relevant “In Some Countries”
clauses to be included should this proposal proceed. Recipients are reminded that the CDV stage is the final stage for
submitting ISC clauses. (SEE AC/22/2007 OR NEW GUIDANCE DOC).

TITLE:
Household and similar electrical air cleaning appliances - Method for measuring performance - Part
2-2: Particular requirements for determination of gas-phase pollutant reduction

PROPOSED STABILITY DATE: 2030
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IEC 63086-2-2 ED1 © IEC 2025 – 3 – 59N/69/CDV

CONTENTS
FOREWORD . 6
INTRODUCTION . 8
1 Scope . 9
2 Normative references . 9
3 Terms, definitions and abbreviated terms . 9
3.1 Terms and definitions . 9
3.2 Terms defined in IEC 63086-1:2020. 10
3.3 Abbreviated terms . 12
4 Test gases and initial concentrations for testing . 12
4.1 General . 12
4.2 Representative test gases . 13
4.2.1 Formaldehyde . 13
4.2.2 Toluene . 13
4.2.3 n-Heptane . 13
4.2.4 d-Limonene . 14
4.2.5 Ammonia . 14
4.2.6 Nitrogen dioxide . 14
5 Measurement method for test gas concentration . 14
5.1 General . 14
5.2 Measurement and analysis method for formaldehyde . 14
5.3 Measurement and analysis method for toluene, n-heptane, and d-limonene
.................................................................................................................. 14
5.4 Measurement and analysis method for ammonia . 14
5.5 Measurement and analysis method for nitrogen dioxide . 14
6 Generation of initial gas concentrations . 15
6.1 General . 15
6.1.1 Gas cylinder method . 15
6.1.2 Temperature-controlled vaporization method . 15
7 Test chamber . 15
8 Measurement of the CADR in maximum performance operation mode . 15
8.1 General . 15
8.2 Natural decay test . 15
8.2.1 General . 15
8.2.2 Setting the sampling point . 15
8.2.3 Cleaning of the test chamber . 15
8.2.4 Test chamber conditions . 16
8.2.5 Test gas emission . 16
8.2.6 Measurement of the initial concentration . 16
8.2.7 Measurement of the natural decay rate . 16
8.2.8 Calculation of the natural decay rate . 17
8.2.9 Acceptability of the run . 17
8.3 Total decay test . 17
8.3.1 Pre-treatment and Placement of the DUT . 17
8.3.2 Setting the sampling point . 17

IEC 63086-2-2 ED1 © IEC 2025 – 4 – 59N/69/CDV

8.3.3 Cleaning of the test chamber . 17
8.3.4 Test chamber conditions . 17
8.3.5 Test gas emission . 18
8.3.6 Measurement of the initial concentration . 18
8.3.7 Operation of the DUT . 18
8.3.8 Measurement of the total decay rate . 18
8.3.9 Calculation of the total decay rate . 18
8.3.10 Acceptability of the run . 18
8.4 Calculation of the clean air delivery rate . 18
9 Calculation Procedures . 18
9.1 Criteria for the acceptance of data points . 18
9.1.1 Outliers from the regression line . 18
9.1.2 Concentration below 3 % of the initial concentration . 18
9.2 Calculation of decay constants . 19
9.3 Sample standard deviation of the slope of the regression line . 19
9.4 Calculation of the clean air delivery rate . 20
9.5 Sample standard deviation of the clean air delivery rate . 20
Annex A (informative) Test gases used in this test procedure . 21
A.1 Representative test gases . 21
A.1.1 Formaldehyde . 21
A.1.2 Toluene . 21
A.1.3 n-Heptane . 21
A.1.4 d-Limonene . 21
A.1.5 Ammonia . 21
A.1.6 Nitrogen dioxide . 21
A.2 Optional gases . 22
A.2.1 Acetaldehyde . 22
A.2.2 α-Pinene . 22
A.2.3 Acetic acid . 22
A.2.4 Isovaleric acid . 22
A.2.5 Hydrogen sulphide . 22
A.2.6 Methyl mercaptan . 22
A.2.7 Indole . 23
A.3 Alternative instruments used for measurement of test gas reduction . 23
Annex B (informative) Calculation of the 99 % prediction interval of the regression line
.......................................................................................................................... 24
Annex C (informative) Test report information. 26
C.1 General . 26
C.2 General data . 26
C.3 Description of the DUT . 26
C.4 Test chamber . 26
C.5 Generation method of test gases . 26
C.6 Test gas measurement instrumentation . 26
C.7 Test conditions . 27
C.8 Test execution . 27
C.9 Results . 27
Annex D (informative) Background and initial concentration . 28

IEC 63086-2-2 ED1 © IEC 2025 – 5 – 59N/69/CDV

D.1 Background concentration . 28
D.2 Initial concentration . 28
Annex E (normative) Limits of measurability . 29
E.1 General . 29
E.2 Maximum clean air delivery rate . 29
E.3 The sample standard deviation of the slope of the regression line . 30
E.4 Minimum clean air delivery rate . 30
E.5 Limit for the sample standard deviation of the slope of th
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