| Literature DB >> 24729915 |
Abstract
The research was performed to study the simultaneous detection of a homologous series of α , ω -dicarboxylic acids (C2-C10), oxalic, malonic, succinic, glutaric, adipic, pimelic, suberic, azelaic, and sebacic acids, with capillary electrophoresis using indirect UV detection. Good separation efficiency in 2,6-pyridinedicarboxylic acid as background electrolyte modified with myristyl trimethyl ammonium bromide was obtained. The dicarboxylic acids were ionised and separated within five minutes. For the study, authentic samples were collected onto dry cellulose membrane filters of a cascade impactor (12 stages) from outdoor spring aerosols in an urban area. Hot water and ultrasonication extraction methods were used to isolate the acids from membrane filters. Due to the low concentrations of acids in the aerosols, the extracts were concentrated with solid-phase extraction (SPE) before determination. The enrichment of the carboxylic acids was between 86 and 134% with sample pretreatment followed by 100-time increase by preparation of the sample to 50 μ L. Inaccuracy was optimised for all the sample processing steps. The aerosols contained dicarboxylic acids C2-C10. Then, mostly they contained C2, C5, and C10. Only one sample contained succinic acid. In the study, the concentrations of the acids in aerosols were lower than 10 ng/m(3).Entities:
Year: 2014 PMID: 24729915 PMCID: PMC3963120 DOI: 10.1155/2014/498168
Source DB: PubMed Journal: J Anal Methods Chem ISSN: 2090-8873 Impact factor: 2.193
Method optimization data: the calibration of the DCAs. Experimental conditions: 4 mM PDA + 0.5 mM MTAH, pH 11.0; indirect detection at 310/266 nm (pilot/reference wavelength); sample injection for 6 sec. at 50 mbar; separation voltage −24 kV; analysis time 5 min.
| Dicarboxylic acids | Concentration calibration equation |
| Calibration range* [pg] | Minimum amounts (MDL)** [pg] |
|---|---|---|---|---|
| Oxalic acid (C2) |
| 0.9996 | 1.03*–102.6 | 18.3** |
| Malonic acid (C3) |
| 0.9337 | 1.19–118.9 | 20.1 |
| Succinic acid (C4) |
| 0.9994 | 1.02–102.6 | 15.2 |
| Glutaric acid (C5) |
| 0.9367 | 1.02–101.6 | 11.4 |
| Adipic acid (C6) |
| 0.9989 | 1.01–100.8 | 11.9 |
| Pimelic acid (C7) |
| 0.9989 | 1.02–102.0 | 12.2 |
| Suberic acid (C8) |
| 0.9978 | 1.0–100.0 | 15.2 |
| Azelaic acid (C9) |
| 0.9991 | 1.07–107.3 | 17.4 |
| Sebacic acid (C10) |
| 0.9993 | 1.03–103.0 | 30.5 |
| Mandelic acid (MA, IS1) |
| 0.9908 | nd | nd |
| Trichloroacetic acid (TCA, IS2) |
| 0.9778 | nd | nd |
*Example about the calculations: Injection of 0.5 p.s.i. for 6 sec. 6 nL sample into the capillary, calculated with program CE Expert Lite; corresponds: 0.167 mg/L standard sample that is injected for 6 s at 0.5 p.s.i.; signal-to-noise ratio (S/N) used is 3. Oxalic acid in detection: 1.03 pg.
**Calculation made by similar ways as in calibration; signal-to-noise ratios (S/N) is 3; Oxalic acid in the filter sample: 3.05 mg/L.
Figure 1Electropherogram of standard after SPE. The standard mixture contained C4–C10, TCA, and nonidentified long-chain dicarboxylic acids (C12–C18). The analyses were performed with two replicates and six repetitions. Experimental conditions: 4 mM PDA + 0.5 mM MTAH, pH 11.0; indirect detection at 310/266 nm; sample injection for 6 sec at 50 mbar; separation voltage −24 kV; analysis time 5 min. DCAs marked in the figure as C4–C10. IS is the internal standard. After IS migrating peaks are C14–C18 DCAs. They were not included in the main study. Other experimental details in Experimental.
Figure 2Comparison of enrichment in ME after circulating the samples twice with those made with SPE (Oasis HLB). Sample 25 × 25 cm2. The order of the analytes C1–C10 is from left to right. The DCA concentration is 5 mg/L. The results are averages of six replicates. The calculations are based on electropherograms of the standard mixture that were analysed after sample collection from the acceptor solution. 100% is normal recycling (see Experimental) and 2x recycling is twice the same sample volume (limited with timing). Analysis conditions as described in Experimental.
Figure 3Comparison of enrichment in ME after circulating the samples twice with those made with SPE (Oasis HLB). Sample 25 × 25 cm2. The order of the analytes C1–C10 is from left to right. The DCA concentration is 5 mg/L. The results are averages of six replicates. The calculations are based on electropherograms of the standard mixture that were analysed after sample collection from the acceptor solution. 100% is normal recycling (see Experimental) and 2x recycling is twice the same sample volume (limited with timing). Analysis conditions as described in Experimental.
Figure 4Comparison of the performance enrichment of SPE materials in extraction of the C2–C10 DCAs. The DCA concentration is 5 mg/L. The results are averages of six replicates. Analysis conditions as described in Experimental and in Figure 1.
Figure 5Electropherograms of (a) the air sample 2 and (b) the air sample 3 after solid-phase extraction. Sample collected with a cascade impactor (12 stages). The analyses were performed with two replicates and six repetitions. Electrolyte: 4 mM PDA + 0.5 mM MTAH, pH 11.0; indirect detection at 310/266 nm; sample injection for 6 sec at 50 mbar; separation voltage −24 kV; analysis time 5 min. Analysis conditions as described in Experimental.
The intraday and interday results of the aerosol samples separated and determined under optimized capillary electrophoresis conditions (see Table 1).
| Dicarboxylic acids | Intraday RSD% ( | Interday RSD% ( | ||
|---|---|---|---|---|
| Migration time | Peak area | Migration time | Peak area | |
| Oxalic acid (C2) | 0.18 | 3.56 | 0.38 | 3.11 |
| Malonic acid (C3) | 0.0 | 7.50 | 0.15 | 5.62 |
| Succinic acid (C4) | 0.03 | 8.95 | 0.31 | 6.63 |
| Glutaric acid (C5) | 0.04 | 3.99 | 0.42 | 2.78 |
| Adipic acid (C6) | 0.05 | 5.86 | 0.45 | 5.20 |
| Pimelic acid (C7) | 0.05 | 10.0 | 0.50 | 8.70 |
| Suberic acid (C8) | 0.05 | 5.89 | 0.53 | 4.67 |
| Azelaic acid (C9) | 0.04 | 5.76 | 0.51 | 4.93 |
| Sebacic acid (C10) | 0.08 | 8.06 | 0.43 | 7.36 |
| Trichloroacetic acid (TCA, IS2) | 0.16 | 19.7 | 0.76 | 17.5 |
DCAs in the aerosol samples studied. Samples were pretreated following the optimized concept informed in the experimental. Separation conditions as in Table 1.
| Atmospheric aerosols | C2(ng/m3) | C3 (ng/m3) | C4 (ng/m3) | C5 (ng/m3) | C6 (ng/m3) | C7 (ng/m3) | C8 (ng/m3) | C9 (ng/m3) | C10 (ng/m3) |
|---|---|---|---|---|---|---|---|---|---|
| Air sample 1 (1st lot) | 2.64 | <MDL* | 1.85 | 2.73 | nd | nd | <MDL**** | nd | nd |
| Air sample 2 (2nd lot) | 3.66 | 4.21 | nd | nd | nd | 1.71 | nd | nd | 1.94 |
| Air sample 3 (3rd lot) | 3.80 | 1.16 | nd | 4.35 | 6.25 | nd | 2.92 | nd | 1.85 |
| Air sample 4 (4th lot) | <MDL** | <MDL* | nd | 0.472 | nd | <MDL*** | nd | nd | 0.477 |
*MDL 0.551 ng/m3; **MDL 0.477 ng/m3; ***MDL 0.472 ng/m3; ****MDL 0.463 ng/m3; signal-to-noise ratios (S/N) is 3.
aThe samples were taken on different days.
bUS + SPE means after ultrasonication of the sample it was treated with solid-phase extraction (Oasis).