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DIN EN 17200:2024-05

Construction products: Assessment of release of dangerous substances - Analysis of inorganic substances in eluates and digests - Analysis by inductively coupled plasma mass spectrometry (ICP-MS); German version EN 17200:2023

Fecha edición: 2024-05-01
En Vigor
Idiomas disponibles: Inglés, Alemán
Resumen: This European Standard specifies the method for the determination of major, minor and trace elements in aqua regia and nitric acid digests and in eluates of construction products by Inductively Coupled Plasma - Mass Spectrometry (ICP-MS). It refers to the following 67 elements: aluminium (Al), antimony (Sb), arsenic (As), barium (Ba), beryllium (Be), bismuth (Bi), boron (B), cadmium (Cd), calcium (Ca), cerium (Ce), caesium (Cs), chromium (Cr), cobalt (Co), copper (Cu), dysprosium (Dy), erbium (Er), europium (Eu), gadolinium (Gd), gallium (Ga), germanium (Ge), gold (Au), hafnium (Hf), holmium (Ho), indium (In), iridium (Ir), iron (Fe), lanthanum (La), lead (Pb), lithium (Li), lutetium (Lu), magnesium (Mg), manganese (Mn), mercury (Hg), molybdenum (Mo), neodymium (Nd), nickel (Ni), palladium (Pd), phosphorus (P), platinum (Pt), potassium (K), praseodymium (Pr), rubidium (Rb), rhenium (Re), rhodium (Rh), ruthenium (Ru), samarium (Sm), scandium (Sc), selenium (Se), silicon (Si), silver (Ag), sodium (Na), strontium (Sr), sulphur (S), tellurium (Te), terbium (Tb), thallium (Tl), thorium (Th), thulium (Tm), tin (Sn), titanium (Ti), tungsten (W), uranium (U), vanadium (V), ytterbium (Yb), yttrium (Y), zinc (Zn), and zirconium (Zr). The method in this Standard is applicable to construction products and validated for the product types listed in Annex A. The working range depends on the matrix and the interferences encountered. Construction products include e. g. mineral-based products (S); bituminous products (B); metals (M); wood-based products (W); plastics and rubbers (P); sealants and adhesives (A); paints and coatings (C), see also CEN/TR 16045. The limit of detection of most elements will be affected by their natural abundance, ionization behaviour, on abundance of isotope(s) free from isobaric interferences and by contamination (e. g. handling and airborne). Handling contaminations are in many cases more important than airborne ones.The limit of detection will be higher in cases where the determination is likely to be interfered or in case of memory effects (see e. g. EN ISO 17294-1:2006).

Keywords: Aluminium|Aluminium inorganic compounds|Ammonium inorganic compounds|Analysis|Antimony|Antimony inorganic compounds|Arsenic|Arsenic inorganic compounds|Barium|Barium inorganic compounds|Beryllium|Beryllium inorganic compounds|Bismuth|Bismuth inorganic compounds|Boron|Boron inorganic compounds|Cadmium|Cadmium inorganic compounds|Caesium|Caesium inorganic compounds|Calcium|Calcium inorganic compounds|Cerium|Cerium inorganic compounds|Chemical substances|Chromium|Chromium inorganic compounds|Cobalt|Cobalt inorganic compounds|Construction|Construction materials|Constructional products|Copper|Copper inorganic compounds|Dangerous materials|Dangerous stuffs|Definitions|Elements|Eluate|Emission|Evaluations|Extracting behaviour|Extracts|Gadolinium|Gallium|Gallium inorganic compounds|Germanium|Germanium inorganic compounds|Gold|Gold inorganic compounds|Hafnium|Hafnium inorganic compounds|Health protection|Hydrochloric acid|ICP|Indium|Indium inorganic compounds|Inductively Coupled Plasma|Inner atmosphere|Inorganic materials|Iridium|Iridium inorganic compounds|Iron|Iron inorganic compounds|Lanthanide inorganic compounds|Lanthanides|Lanthanum inorganic compounds|Leaching|Lead|Lead inorganic compounds|Lithium|Lithium inorganic compounds|Magnesium|Magnesium inorganic compounds|Manganese|Manganese inorganic compounds|Mass spectrometry|Mercury|Mercury inorganic compounds|Metals|Molybdenum|Molybdenum inorganic compounds|Neodymium|Nickel|Nickel inorganic compounds|Nitric acid|Occupational safety|Palladium|Palladium inorganic compounds|Phosphorus|Phosphorus inorganic compounds|Platinum|Platinum inorganic compounds|Pollutants|Potassium|Potassium inorganic compounds|Praseodymium|Rare earth metals|Release|Rhenium|Rhenium inorganic compounds|Rhodium|Rhodium inorganic compounds|Rubidium|Rubidium inorganic compounds|Ruthenium|Ruthenium inorganic compounds|Samarium|Sampling methods|Scandium|Scandium inorganic compounds|Selenium|Selenium inorganic compounds|Silicon|Silicon inorganic compounds|Silver|Silver inorganic compounds|Sodium|Sodium inorganic compounds|Strontium|Strontium inorganic compounds|Substances|Sulphur|Sulphur inorganic compounds|Tellurium|Tellurium inorganic compounds|Testing|Thallium|Thallium inorganic compounds|Thorium|Thorium inorganic compounds|Tin|Tin inorganic compounds|Titanium|Titanium inorganic compounds|Trace elements|Tungsten|Tungsten inorganic compounds|Uranium|Uranium inorganic compounds|Vanadium|Vanadium inorganic compounds|Water|Yttrium|Yttrium inorganic compounds|Zinc|Zinc inorganic compounds|Zircon|Zirconium|Zirconium inorganic compounds
ICS: 91.100.01 - Materiales de construcción en general
CTN:

Equivalencia Internacional

Idéntica EN 17200:2023

Reemplazo Normas

Reemplaza a DIN EN 17200:2022-06

Reemplaza a DIN CEN/TS 17200:2019-03;DIN SPEC 18484:2019-03

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