EN 15853:2010

Ambient air quality - Standard method for the determination of mercury deposition

Publication date:   Aug 20, 2010

General information

90.93 Standard confirmed   Jun 5, 2020

CEN

CEN/TC 264 Air quality

European Norm

13.040.20   Ambient atmospheres

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Scope

This European Standard specifies a method for the determination of the total deposition of mercury. This standard can be used within the framework of the European Council Directive on Ambient Air Quality Assessment and Management and Directive 2004/107/EC. Performance requirements with which the method should comply are specified in this European Standard. The performance characteristics of the method were determined in comparative field validation tests carried out at two European locations.
This European Standard is applicable to background sites that are in accordance with the requirements of Directive 2004/107/EC and to urban and industrial sites.
This standard allows the sampling of deposition using cylindrical deposition gauges, and analysis using Cold Vapour Atomic Absorption Spectrometry (CVAAS) or Cold Vapour Atomic Fluorescence Spectrometry (CVAFS) following existing harmonised and standardised procedures. The standard is applicable for the measurement of mercury in deposition between 1 ng/(m2•d) and 100 ng/(m2•d).
The standard is validated for the deposition range listed in Table 1.

NOTE The range given is based upon the values measured in the field validation test. The upper and lower limits are the observed minimum and maximum values measured during the field validation tests. The actual lower limits of the working range depends on the variability of the laboratory blank, for bulk and wet-only collectors, and the precipitation. The method can be applied to higher and lower deposition rates provided that the collection characteristics are not compromised.

Related legislation

Legislation related to this standard

96/62/EC

Ambient air quality assessment and management

Life cycle

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PUBLISHED
EN 15853:2010
90.93 Standard confirmed
Jun 5, 2020