Congener group patterns of CHLOROPARAFFIN (cas 108171-26-2)s in marine sediments obtained by chloride attachment chemical ionization and electron capture negative ionization
-
Add time:08/26/2019 Source:sciencedirect.com
Congener group patterns of technical short chain and medium chain chloroparaffins (SCCP and MCCP) were determined by electron capture negative ionization (ECNI) and chloride attachment chemical ionization (CACI) mass spectrometry (MS). In contrast to CACI–MS, congener patterns obtained by ECNI showed always a shift to the next higher chlorinated congener and carbon chain length group. Consequently, the calculated molecular masses and chlorine contents were higher for ECNI (factor 1.10 ± 0.03 and 1.09 ± 0.03, respectively). ECNI/CACI ratios in sediment samples from the North and Baltic Sea were also slightly higher. However, a more pronounced shift of the congener pattern for a given carbon chain length to congeners with 2–3 more chlorine atoms was observed. SCCP and MCCP concentrations obtained by ECNI–MS were in the range of 8–63 ng g−1 (North Sea) and 22–149 ng g−1 dry weight (Baltic Sea). MCCP levels were highest in all samples (MCCP/SCCP factor 1.1–3.2).
We also recommend Trading Suppliers and Manufacturers of CHLOROPARAFFIN (cas 108171-26-2). Pls Click Website Link as below: cas 108171-26-2 suppliers
Prev:Effect of the metal on the mechanism of fire retardance in CHLOROPARAFFIN (cas 108171-26-2)-metal compound-polypropylene mixtures
Next:Thermal degradation of polymer-fire retardant mixtures: Part VI—Mechanism of interaction in polystyrene-CHLOROPARAFFIN (cas 108171-26-2) mixtures) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Thermal degradation of polymer-fire retardant mixtures: Part VII—Products of degradation and mechanism of fire retardance in polystyrene-CHLOROPARAFFIN (cas 108171-26-2) mixtures08/31/2019
- Mechanism of condensed phase action in fire retardant bismuth compound-CHLOROPARAFFIN (cas 108171-26-2)-polypropylene mixtures: Part II—The thermal degradation behaviour08/30/2019
- Thermal degradation of fire retardant CHLOROPARAFFIN (cas 108171-26-2)-metal compound mixtures—Part I: Antimony oxide08/29/2019
- Thermal degradation of fire retardant CHLOROPARAFFIN (cas 108171-26-2)-metal compound mixtures: Part II—Bismuth compounds08/28/2019
- Thermal degradation of polymer-fire retardant mixtures: Part VI—Mechanism of interaction in polystyrene-CHLOROPARAFFIN (cas 108171-26-2) mixtures08/27/2019
- Effect of the metal on the mechanism of fire retardance in CHLOROPARAFFIN (cas 108171-26-2)-metal compound-polypropylene mixtures08/25/2019
- Mechanism of action of a fire retardant CHLOROPARAFFIN (cas 108171-26-2)08/24/2019
- Fourier transformDetermination of pesticides in water using ATR-FTIR spectroscopy on PVC/CHLOROPARAFFIN (cas 108171-26-2) coatings08/23/2019
- Diffusion of a CHLOROPARAFFIN (cas 108171-26-2) in polyethylene☆08/22/2019


