oSIST prEN 16175-1:2026
(Main)Soil, treated biowaste and sludge - Determination of mercury - Part 1: Cold-vapour atomic absorption spectrometry (CV-AAS)
General Information
- Abstract
This European Standard specifies a method for the determination of mercury in digests of soil, treated biowaste and waste, obtained according to EN ISO 54321 (aqua regia digestion) or EN 16173 (nitric acid digestion) or EN 13656 (digestion with a hydrochloric, nitric and tetrafluoroboric or hydrofluoric acid mixture) using cold-vapour atomic absorption spectrometry (CV-AAS). The lower working range limit is at least 0,03 mg/kg (drymatter basis) depending on digestion parameters.
- Status
- Not Published
- Public Enquiry End Date
- 01-Nov-2026
- Technical Committee
- KAT - Soil quality
- Current Stage
- 4020 - Public enquire (PE) (Adopted Project)
- Start Date
- 16-Sep-2026
- Due Date
- 03-Feb-2027
Overview
oSIST prEN 16175-1:2026: Soil, Treated Biowaste and Sludge – Determination of Mercury – Part 1: Cold-vapour Atomic Absorption Spectrometry (CV-AAS) is a draft European Standard developed by the European Committee for Standardization (CEN) Technical Committee CEN/TC 444. This standard specifies the methodology for determining the mercury content in soil, treated biowaste, and sludge samples using cold-vapour atomic absorption spectrometry (CV-AAS). The samples are digested by one of several standard methods, including aqua regia digestion (EN ISO 54321), nitric acid digestion (EN 16173), or a mixed acid digestion (EN 13656).
With a lower working limit of 0.03 mg/kg (dry matter), this standard ensures accurate quantification of trace mercury contaminants, supporting environmental protection, waste management, and regulatory compliance across the European Union.
Key Topics
- Mercury Determination in Environmental Matrices: Provides a validated method for quantifying mercury in diverse environmental samples including municipal sludge, compost, and soils.
- Sample Digestion: Compatible with several established digestion procedures such as aqua regia, nitric acid, and complex acid mixtures for efficient extraction of mercury.
- Analytical Technique (CV-AAS): Utilizes cold-vapour atomic absorption spectrometry, recognized for its sensitivity and selectivity in detecting mercury even at trace levels.
- Interference Mitigation: Addresses potential interferences from other matrix elements and prescribes suitable reagents and procedures to ensure accurate measurements.
- Calibration and Quality Control: Offers guidance on instrument setup, preparation of calibration solutions, and the importance of using appropriate quality controls and blanks.
Applications
oSIST prEN 16175-1:2026 is practically valuable in multiple contexts:
- Environmental Monitoring: Enables laboratories and environmental agencies to monitor mercury levels in soils, compost, and sludge, supporting pollution assessment and remediation efforts.
- Waste Management: Applied in the treatment and disposal of biowaste and sludge to ensure compliance with environmental safety standards by verifying low concentrations of toxic mercury.
- Regulatory Compliance and Reporting: Assists industries and municipalities in meeting European and national regulations related to heavy metal contamination in the environment.
- Soil Quality Assessment: Used for periodic monitoring of agricultural lands, recycling sites, and reclaimed areas where heavy metals could pose risks to ecosystems and human health.
- Validation and Interlaboratory Studies: Forms the basis for proficiency testing, method validation, and interlaboratory comparisons, as demonstrated by studies across various international laboratories.
Related Standards
- EN ISO 54321 – Soil, treated biowaste, sludge and waste: Aqua regia digestion for precursor elemental analysis.
- EN 16173 – Sludge, treated biowaste and soil: Nitric acid digestion for soluble fractions of elements.
- EN 13656 – Soil, treated biowaste, sludge and waste: Digestion with hydrochloric, nitric and tetrafluoroboric or hydrofluoric acid mixtures.
- EN ISO 11465 – Sludge and solid matrices: Determination of dry residue to calculate dry matter fraction.
- ISO 5725-2 – Accuracy of measurement methods: Determination of repeatability and reproducibility.
Summary of Practical Value
oSIST prEN 16175-1:2026 provides a robust, harmonized method for the determination of mercury in environmental matrices by CV-AAS, which is essential for environmental safety, regulatory compliance, and quality assurance. By following this standard, laboratories and organizations contribute to more effective environmental monitoring, safer waste practices, and higher confidence in measurement accuracy across the European Union. The standard’s alignment with related digestion and analysis protocols ensures compatibility and comparability of data on mercury contamination in soils, sludge, and treated biowaste.
Relations
- Effective Date
- 01-Oct-2026
Get Certified
Connect with accredited certification bodies for this standard

ECOCERT
Organic and sustainability certification.
CIS Institut d.o.o.
Personal Protective Equipment (PPE) certification body. Notified Body NB-2890 for EU Regulation 2016/425 PPE.

Eurofins Food Testing Global
Global leader in food, environment, and pharmaceutical product testing.
Sponsored listings
Frequently Asked Questions
oSIST prEN 16175-1:2026 is a draft published by the Slovenian Institute for Standardization (SIST). Its full title is "Soil, treated biowaste and sludge - Determination of mercury - Part 1: Cold-vapour atomic absorption spectrometry (CV-AAS)". This standard covers: This European Standard specifies a method for the determination of mercury in digests of soil, treated biowaste and waste, obtained according to EN ISO 54321 (aqua regia digestion) or EN 16173 (nitric acid digestion) or EN 13656 (digestion with a hydrochloric, nitric and tetrafluoroboric or hydrofluoric acid mixture) using cold-vapour atomic absorption spectrometry (CV-AAS). The lower working range limit is at least 0,03 mg/kg (drymatter basis) depending on digestion parameters.
This European Standard specifies a method for the determination of mercury in digests of soil, treated biowaste and waste, obtained according to EN ISO 54321 (aqua regia digestion) or EN 16173 (nitric acid digestion) or EN 13656 (digestion with a hydrochloric, nitric and tetrafluoroboric or hydrofluoric acid mixture) using cold-vapour atomic absorption spectrometry (CV-AAS). The lower working range limit is at least 0,03 mg/kg (drymatter basis) depending on digestion parameters.
oSIST prEN 16175-1:2026 is classified under the following ICS (International Classification for Standards) categories: 13.030.20 - Liquid wastes. Sludge; 13.080.01 - Soil quality and pedology in general; 13.080.10 - Chemical characteristics of soils; 71.040.50 - Physicochemical methods of analysis. The ICS classification helps identify the subject area and facilitates finding related standards.
oSIST prEN 16175-1:2026 has the following relationships with other standards: It is inter standard links to SIST EN 16175-1:2017. Understanding these relationships helps ensure you are using the most current and applicable version of the standard.
oSIST prEN 16175-1:2026 is available in PDF format for immediate download after purchase. The document can be added to your cart and obtained through the secure checkout process. Digital delivery ensures instant access to the complete standard document.
Standards Content (Sample)
SLOVENSKI STANDARD
01-oktober-2026
Tla, obdelani biološki odpadki in blato - Določanje živega srebra - 1. del: Metoda
atomske absorpcijske spektrometrije s tehniko hladnih par (CV-AAS)
Soil, treated biowaste and sludge - Determination of mercury - Part 1: Cold-vapour
atomic absorption spectrometry (CV-AAS)
Schlamm, behandelter Bioabfall und Boden - Bestimmung von Quecksilber - Teil 1:
Kaltdampf-Atomabsorptionsspektrometrie (CV-AAS)
Boues, bio-déchets traités et sols - Détermination du mercure - Partie 1: Spectrométrie
d'absorption atomique de vapeur froide (SAA-VP)
Ta slovenski standard je istoveten z: prEN 16175-1
ICS:
13.030.20 Tekoči odpadki. Blato Liquid wastes. Sludge
13.080.10 Kemijske značilnosti tal Chemical characteristics of
soils
71.040.50 Fizikalnokemijske analitske Physicochemical methods of
metode analysis
2003-01.Slovenski inštitut za standardizacijo. Razmnoževanje celote ali delov tega standarda ni dovoljeno.
DRAFT
EUROPEAN STANDARD
NORME EUROPÉENNE
EUROPÄISCHE NORM
September 2026
ICS 13.080.10 Will supersede EN 16175-1:2016
English Version
Soil, treated biowaste and sludge - Determination of
mercury - Part 1: Cold-vapour atomic absorption
spectrometry (CV-AAS)
Sols, biodéchets traités et boues - Détermination du Schlamm, behandelter Bioabfall und Boden -
mercure - Partie 1: Spectrométrie d'absorption Bestimmung von Quecksilber - Teil 1: Kaltdampf-
atomique à vapeur froide (SAA VF) Atomabsorptionsspektrometrie (CV-AAS)
This draft European Standard is submitted to CEN members for enquiry. It has been drawn up by the Technical Committee
CEN/TC 444.
If this draft becomes a European Standard, CEN members are bound to comply with the CEN/CENELEC Internal Regulations
which stipulate the conditions for giving this European Standard the status of a national standard without any alteration.
This draft European Standard was established by CEN in three official versions (English, French, German). A version in any other
language made by translation under the responsibility of a CEN member into its own language and notified to the CEN-CENELEC
Management Centre has the same status as the official versions.
CEN members are the national standards bodies of Austria, Belgium, Bulgaria, Croatia, Cyprus, Czech Republic, Denmark, Estonia,
Finland, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, Netherlands, Norway,
Poland, Portugal, Republic of North Macedonia, Romania, Serbia, Slovakia, Slovenia, Spain, Sweden, Switzerland, Türkiye and
United Kingdom.
Recipients of this draft are invited to submit, with their comments, notification of any relevant patent rights of which they are
aware and to provide supporting documentation.
Warning : This document is not a European Standard. It is distributed for review and comments. It is subject to change without
notice and shall not be referred to as a European Standard.
EUROPEAN COMMITTEE FOR STANDARDIZATION
COMITÉ EUROPÉEN DE NORMALISATION
EUROPÄISCHES KOMITEE FÜR NORMUNG
CEN-CENELEC Management Centre: Rue de la Science 23, B-1040 Brussels
© 2026 CEN All rights of exploitation in any form and by any means reserved Ref. No. prEN 16175-1:2026 E
worldwide for CEN national Members.
Contents Page
European foreword . 3
Introduction . 4
1 Scope . 5
2 Normative references . 5
3 Terms and definitions . 5
4 Principle . 5
5 Interferences . 5
6 Reagents . 6
7 Apparatus . 7
7.1 Usual laboratory apparatus . 7
7.2 Automated system with sample introduction, cold-vapour generator, flow injection
analysis and atom absorption spectrometer . 7
8 Procedure . 8
8.1 Test solution . 8
8.2 Test blank solution . 8
8.3 Preparation of the calibration solutions . 8
8.4 Instrumental set-up . 8
8.5 Calibration . 8
8.6 Measurement of test sample . 8
9 Calculation and expression of results . 9
9.1 Calculation . 9
9.2 Expression of results . 9
10 Performance data . 9
11 Test report . 10
Annex A (informative) Repeatability and reproducibility data . 11
Bibliography . 13
European foreword
This document (prEN 16175-1:2026) has been prepared by Technical Committee CEN/TC 444 “Test
methods for environmental characterization of solid matrices”, the secretariat of which is held by NEN.
This document is currently submitted to the-CEN Enquiry.
This document will supersede EN 16175-1:2016.
prEN 16175:2026 includes the following significant technical changes with respect to EN 16175-1:2016:
— EN ISO 54321 and EN 13656 digestion standards were added to the scope and EN 16174 is removed.
—- Calibration range and stabilization reagents were opened to customer belongings.
— Clause 6 Apparatus has been revised.
EN 16175, Sludge, treated biowaste and soil — Determination of mercury comprises the following parts:
— Part 1: Cold-vapour atomic absorption spectrometry (CV-AAS);
— Part 2: Cold-vapour atomic fluorescence spectrometry (CV-AFS).
Introduction
This document is applicable and validated for several types of matrices as indicated in Table 1 (see
Annex A for the results of validation).
Table 1 — Matrices for which this document is applicable and validated
Matrix Materials used for validation
Sludge Municipal sludge
Biowaste Compost
Soil Soil
WARNING — Persons using this document should be familiar with usual laboratory practice. This
document does not purport to address all of the safety problems, if any, associated with its use. It
is the responsibility of the user to establish appropriate safety and health practices and to ensure
compliance with any national regulatory conditions.
IMPORTANT — It is absolutely essential that tests conducted according to this document be
carried out by suitably trained staff.
1 Scope
This document specifies a method for the determination of mercury in digests of soil, treated biowaste,
sludge and waste, obtained according to EN 16173 (nitric acid digestion), EN ISO 54321 (aqua regia
digestion) or EN 13656 (digestion with a hydrochloric (HCl), nitic (HNO ) and tetrafluoroboric (HBF ) or
3 4
hydrofluoric (HF) acid mixture) with using cold-vapour atomic absorption spectrometry (CV-AAS). The
lower working range limit is at least 0,03 mg/kg (dry matter basis) depending on digestion parameters.
2 Normative references
There are no normative references in this document.
3 Terms and definitions
No terms and definitions are listed in this document.
ISO and IEC maintain terminology databases for use in standardization at the following addresses:
— ISO Online browsing platform: available at https://www.iso.org/obp/
— IEC Electropedia: available at https://www.electropedia.org/
4 Principle
Mono- and divalent mercury is reduced to the elemental form by tin(II) chloride or sodium borohydride
in acid medium. Elemental mercury is stripped off from the solution in a closed system. The mercury
vapour, in the form of an atomic gas, passes through a cell positioned in the light path of an atomic
absorption spectrometer. Its absorbance at a wavelength of 253,7 nm is measured. The absorbance signal
is a function of mercury concentration, and the concentrations are calculated using a calibration curve.
The matrix of the solution analysed is dominated by the acids used in the digestion step. Tin(II) chloride
as a reduction substance is recommended in this document, because sodium borohydride reduces many
elements commonly found in soil, sludge and waste extract solutions, to the elemental state, which might
cause matrix problems under particular circumstances. However, it is still possible to use sodium
borohydride as reduction agent.
5 Interferences
Because the samples are digested with oxidizing, strong acids before determination of mercury starts,
there are no interferences with organic substances in the gas phase that can absorb in the UV range.
Neither are there any interferences with mercury compounds which cannot be fully reduced with tin(II)
chloride alone. The interferences due to the presence of other elements in the matrix depend on their
concentrations. Element concentrations exceeding those listed in Table 2 may cause negative bias.
Fewer interferences arise from heavy metals when tin(II) chloride is used rather than sodium
borohydride. When flow systems are used, interference effects due to heavy metals may be less than
indicated in Table 2.
Table 2 — Tolerable concentrations of some matrix elements
Element Acceptable
concentration in the test
solution
mg/l
Cu(II) 500
Ni(II) 500
Ag(I) 1
6 Reagents
For the determination of mercury at trace and ultra-trace level, the reagents shall be of adequate purity.
The concentration of mercury or interfering substances in the reagents and the water should be negligible
compared to the lowest concentration of mercury to be determined.
−1
6.1 Water, with an electrical conductivity less than 0,1 mS m (equivalent to resistivity greater than
0,01 MΩ m at 25°C). For all sample preparations and dilutions.
6.2 Carrier gas, argon or nitrogen, with a purity of ≥ 99,99 %.
6.3 Hydrochloric acid, HCl, ρ(HCl) = 1,15 g/ml - 1,18 g/ml, w(HCl) = 300 g/kg - 370 g/kg.
The same batch of hydrochloric acid shall be used throughout the procedure.
6.4 Nitric acid, HNO3, ρ(HNO3) = 1,4 g/ml, w(HNO3) = 650 g/kg.
The same batch of nitric acid shall be used throughout the procedure.
6.5 Nitric acid, diluted solution.
Dilute the digestion reagents (EN 16173) in the same way as the test solutions are diluted.
6.6 Nitric acid, c(HNO3) = 2 mol/l, rinsing solution for glassware.
Add 150 ml of nitric acid (6.4) to ab
...



