TY - JOUR A1 - Mönch, Bettina A1 - Becker, Roland A1 - Nehls, Irene T1 - Determination of ethyl glucuronide in hair: a rapid sample pretreatment involving simultaneous milling and extraction JF - International journal of legal medicine N2 - A combination of simultaneous milling and extraction known as micropulverized extraction was developed for the quantification of the alcohol marker ethyl glucuronide (EtG) in hair samples using a homogeneous reference material and a mixer mill. Best extraction results from 50 mg of hair were obtained with 2-mL plastic tubes containing two steel balls (Ø = 5 mm), 0.5 mL of water and with an oscillating frequency of 30 s-1 over a period of 30 min. EtG was quantified employing a validated GC-MS procedure involving derivatization with pentafluoropropionic acid anhydride. This micropulverization procedure was compared with dry milling followed by separate aqueous extraction and with aqueous extraction after manual cutting to millimeter-size snippets. Micropulverization yielded 28.0±1.70 pg/mg and was seen to be superior to manually cutting (23.0±0.83 pg/mg) and equivalent to dry grinding (27.7±1.71 pg/mg) with regard to completeness of EtG extraction. The option to process up to 20 samples simultaneously makes micropulverization especially valuable for the high throughput of urgent samples. KW - Ethyl glucuronide KW - Hair KW - Micropulverized extraction KW - GC-MS PY - 2014 DO - https://doi.org/10.1007/s00414-013-0939-z SN - 0937-9827 SN - 1437-1596 VL - 128 IS - 1 SP - 69 EP - 72 PB - Springer CY - Berlin ; Heidelberg AN - OPUS4-30063 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Dorgerloh, Ute A1 - Becker, Roland A1 - Nehls, Irene T1 - Determination of volatile organic sulfur compounds in contaminated groundwater JF - Environmental chemistry letters N2 - A practical method for the quantification of total purgeable organic sulfur (POS) in highly contaminated groundwater is described. Volatile organic sulfur compounds (VOSC) are purged from the water samples by a stream of oxygen and combusted. The emerging sulfur dioxide is absorbed in H2O2 and converted to sulfate which is quantified by ion chromatography and reported as mass sulfur equivalent. The overall limit of quantification is 0.03 mg l–1. The content of POS is balanced with the total VOSC determined by GC-AED after liquid–liquid extraction. Separate determination of the non-volatile organic sulfur compounds by direct combustion of the water sample and adsorption to charcoal yielded a mass balance of the total sulfur content. Semi-quantitative GC-MS after purge & trap accumulation revealed that the VOSC mixture is composed of C1–C4 alkyl sulfides. The implementation of the developed methodology for the quantification of VOSC as potential catalyst poison in a cleaning plant for groundwater contaminated with volatile haloorganics (VOX) is presented. KW - Contamination KW - Remediation KW - Summation parameter KW - Combustion KW - Ion chromatography KW - GC-AED KW - GC-MS PY - 2008 UR - http://www.springerlink.com/content/8612g42hwj7130g8/fulltext.pdf DO - https://doi.org/10.1007/s10311-007-0117-y SN - 1610-3653 SN - 1610-3661 VL - 6 IS - 2 SP - 101 EP - 106 PB - Springer CY - Berlin AN - OPUS4-16360 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -