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RESEARCH PRODUCT

Determination of metal concentrations in certified plastic reference materials after small-size autoclave and microwave-assisted digestion followed with inductively coupled plasma optical emission spectrometry

Ari VäisänenEsa Lehtimäki

subject

microwavedigestion010402 general chemistry01 natural sciencesAnalytical ChemistryAutoclavechemistry.chemical_compounddeterminationDigestion (alchemy)plasticta116InstrumentationSpectroscopyPolypropyleneautoclaveChromatographyAcrylonitrile butadiene styreneruoansulatus010401 analytical chemistryAtomic and Molecular Physics and Optics0104 chemical sciencesPolyvinyl chlorideCertified reference materialschemistrymuoviInductively coupled plasma atomic emission spectroscopyICP-OESInductively coupled plasma

description

Abstract The digestion methods for the determination of As, Cd, Cr, Pb, Sb, Sn and Zn concentrations in plastic samples using microwave-assisted digestion (MW-AD) and small-size autoclave digestion was developed. The certified polyethylene, polypropylene, polyvinyl chloride and acrylonitrile butadiene styrene certified reference materials were used in order to find digestion method working properly for several sample matrices. Efficiency of the digestion methods was evaluated by analyzing the residual carbon in digests by TOC analyzer. MW-AD using a mixture of 7 mL of HNO 3 and 3 mL of H 2 O 2 as a digestion solution resulted in excellent recoveries for As, Cd, Pb, Sb and Zn, and were in the range of 92–107% for all the analytes except Pb in polyethylene material. Autoclave digestion using 5 mL of concentrated HNO 3 as a digestion solution resulted in similar recoveries with the exception of a higher As recovery (98%). Tin recovery resulted in low level after both MW-AD and autoclave digestion. Autoclave digestion was further developed resulting in a partially open two-step digestion process especially for the determination of Sn and Cr. The method resulted in higher recoveries of Sn and Cr (87 and 76%) but with the lower concentration of easily volatile As, Cd and Sb.

https://doi.org/10.1016/j.sab.2016.11.011