The treatment and removal of oil and grease from wastewater is imperative because it can negatively affect the biological and aquatic life that encounter it. Not only that, but since the oil and grease are not miscible with water, it leaves an unappealing layer on top of the water. Even before the oil and grease can reach the aquatic life, it will solidify on the inner walls of pipes, causing blockage over time.
EPA Method 1664B was developed for measuring oil and grease in wastewater with Hexane Extractable Material (HEM) concentrations ranging from 5 to 1000 mg/L. However, samples containing high oil and grease content (> 500 mg/L HEM) are challenging to extract and therefore the method allows for a smaller sample to be collected. To run reduced sample volumes, laboratories must be able to demonstrate the ability to meet the method detection limit (MDL) requirements at the reduced sample volume level. This application note provides a full solution for EPA method 1664B that meets the method detection limits at 250 mL sample volumes.
Table 1. Reduced Sample Volumes on the Biotage® Horizon 5000 with 47 mm Pacific® Premium Disks
|
Step |
Solvent |
Volume |
Purge |
Pump |
Saturate |
Soak |
Drain/Elute |
Done Loading |
|
|
|
(mL) |
(s) |
Speed |
(s) |
(s) |
(s) |
Delay (s) |
|
Condition SPE Disk |
Hexane |
11 |
60 |
2 |
1 |
60 |
60 |
|
|
Condition SPE Disk |
Methanol |
11 |
60 |
2 |
1 |
60 |
2 |
|
|
Load Sample |
|
|
|
5 |
|
|
|
45 |
|
Air Dry |
|
|
|
6 |
|
|
180 |
|
|
Elute Sample Container |
Hexane |
16 |
35 |
5 |
1 |
10 |
15 |
|
|
Elute Sample Container |
Hexane |
10 |
35 |
5 |
1 |
45 |
45 |
|
|
Elute Sample Container |
Hexane |
10 |
60 |
6 |
1 |
45 |
60 |
|
|
Wash Sample Container |
Methanol |
8 |
60 |
6 |
1 |
20 |
60 |
|
|
Elute Sample Container |
Hexane |
9 |
35 |
5 |
1 |
45 |
45 |
|
|
Elute Sample Container |
Hexane |
9 |
35 |
5 |
1 |
45 |
45 |
|
|
Elute Sample Container |
Hexane |
9 |
60 |
6 |
1 |
45 |
60 |
|
Table 2. Reduced Sample Volumes on the Biotage® Horizon 3100 with 47 mm Pacific® Premium Disks.
|
Step |
Step Description |
Solvent |
Dispense (s) |
Saturate (s) |
Soak (s) |
Drain Solvent (s) |
|
1 |
Condition |
Hexane |
6 |
1 |
30 |
30 |
|
2 |
Condition |
Methanol |
6 |
1 |
30 |
3 |
|
3 |
Load Sample |
|
|
|
|
|
|
4 |
Air dry 180s |
|
|
|
|
|
|
Step |
Step Description |
Solvent |
Rinse (s) |
Saturate Elute (s) |
Soak (s) |
Elute (s) |
|
5 |
Rinse and Elute |
Hexane |
9 |
1 |
10 |
15 |
|
6 |
Rinse and Elute |
Hexane |
6 |
1 |
45 |
45 |
|
7 |
Rinse and Elute |
Hexane |
6 |
1 |
45 |
30 |
|
Step |
Step Description |
Solvent |
Rinse (s) |
Saturate (s) |
Soak (s) |
Drain Solvent (s) |
|
8 |
Wash |
Methanol |
2 |
1 |
20 |
60 |
|
Step |
Step Description |
Solvent |
Rinse (s) |
Saturate Elute (s) |
Soak (s) |
Elute (s) |
|
9 |
Rinse and Elute |
Hexane |
2 |
1 |
45 |
45 |
|
10 |
Rinse and Elute |
Hexane |
2 |
1 |
45 |
30 |
|
11 |
Rinse and Elute |
Hexane |
2 |
1 |
45 |
60 |
The extraction process for quality control samples on the Biotage® Horizon 5000 takes approximately 25 minutes, drying time for samples takes about 10 minutes, and the evaporation time takes approximately 25 minutes. With one system, three quality control samples can be extracted and evaporated in about an hour. When using the Biotage® Horizon 3100, the extraction time is reduced to about 15 minutes while all the other steps remain the same. Both instruments yielded about 40 mL of extract.
On both instruments, all results are well within the passing range for each test completed. The blank extractions pass EPA Method 1664B requirements all recovering below the minimum level of quantitation (5.0 mg/L), indicating clean instrumentation.
The recoveries for the four IPRs are well within the acceptable range of 83–101% recovery per EPA Method 1664B as well. The IPR resulted in a precision value of 1.50 for the Biotage® Horizon 5000 and 2.22 for the Biotage® Horizon 3100, which are both well below the method requirement of 11.0.
The seven replicate samples on each instrument used for the MDL calculation show little variation, keeping the calculated MDL below the method requirement of 1.4 mg/L. The MDLs were calculated using 6 degrees of freedom and a student t-value of 3.142 with a 99% confidence interval.
Each table below contains the results for all of the Biotage® Horizon 5000 and Biotage® Horizon 3100 extractions outlined in the method summary.
Table 3. Speed-Vap® Evaporation Parameters.
|
Temperature (˚C) |
40 |
|
Compressed Air Inlet Pressure (psi) |
80 |
Table 4. Blank results on the Biotage® Horizon 5000
|
Sample |
HEM (mg/L) |
|---|---|
|
1 L Blank |
0.2 |
|
250 mL Blank (1) |
0.0 |
|
250 mL Blank (2) |
0.0 |
|
250 mL Blank (3) |
0.0 |
|
All blanks < 5.0 mg/L |
|
Table 5. IPR Results on the Horizon 5000
|
Sample |
HEM (mg/L) |
Percent Recovery (%) |
|---|---|---|
|
1 |
39.6 |
99.0 |
|
2 |
38.4 |
96.0 |
|
3 |
39.6 |
99.0 |
|
4 |
39.6 |
99.0 |
|
Average Percent Recovery (X) |
98.2% |
|
|
Precision (s): |
1.50 |
|
Table 6. MDL Results on the Biotage® Horizon 5000
|
Sample |
HEM (mg/L) |
|---|---|
|
1 |
3.2 |
|
2 |
3.2 |
|
3 |
2.8 |
|
4 |
3.6 |
|
5 |
3.2 |
|
6 |
3.6 |
|
7 |
2.8 |
|
Precision (s): |
0.33 |
|
MDL Value < 1.4 mg/L: |
1.03 |
Table 7. Blank results on the Biotage® Horizon 3100
|
Sample |
HEM (mg/L) |
|---|---|
|
1 L Blank |
0.4 |
|
250 mL Blank (1) |
1.2 |
|
250 mL Blank (2) |
1.2 |
|
250 mL Blank (3) |
1.2 |
|
All blanks < 5.0 mg/L |
|
Table 8. IPR Results on the Horizon 3100.
|
Sample |
HEM (mg/L) |
Percent Recovery (%) |
|---|---|---|
|
1 |
39.6 |
93.0 |
|
2 |
38.4 |
88.0 |
|
3 |
39.6 |
90.0 |
|
4 |
39.6 |
92.0 |
|
Average Percent Recovery (X) |
90.7% |
|
|
Precision (s): |
2.22 |
|
Table 9. MDL Results on the Biotage® Horizon 3100.
|
Sample |
HEM (mg/L) |
|---|---|
|
1 |
2.8 |
|
2 |
2.8 |
|
3 |
3.2 |
|
4 |
3.2 |
|
5 |
3.2 |
|
6 |
2.8 |
|
7 |
3.2 |
|
Precision (s): |
0.21 |
|
MDL Value < 1.4 mg/L: |
0.67 |
The results are consistent across the board, resulting into little variability between instrument runs. Please note: the dilution factor of 4 was taken into account for calculating the 250 mL sample blanks.
This application note demonstrates that HEM can be effectively recovered from 250 mL samples within the guidelines of EPA Method 1664B with the use of the use of Biotage® automated extraction systems and the Speed-Vap®. In addition to that, the blanks indicate virtually no contamination of HEM from consumables or instrumentation.
The route of extracting 100 mL samples was explored with this application note, however, it was deemed unsuccessful. When the samples were weighed to determine recovery, the accuracy of a decimal place were not existent. For example, values for the MDLs would return as 0.0004 g or 0.4 mg. Since the sample was reduced 10x, that value needed to be multiplied by 10, equating to a value of 4 mg. This occurred with the IPR samples as well. In order to get an accurate measurement of HEM including a decimal place for 100 mL samples, a balance capable of measuring to 0.00001 g is required. Due to this discovery, the reduced sample volume was increased to 250 mL. When the recoveries using a 250 mL sample were measured and multiplied by 4, the dilution factor, the recovery yielded more accurate measurements of HEM.
Automated solid-phase extraction improves the precision of HEM recoveries by eliminating operator bias and the use of the Speed-Vap® provides an even evaporation over each extract. When the Horizon 5000 and Horizon 3100 are used in conjunction with the Speed-Vap® to extract samples, especially 250 mL samples, the productivity within the laboratory greatly improves.
EPA Method 1664, Revision B: n-Hexane Extractable Material (HEM; Oil and Grease) and Silica Gel Treated n-Hexane Extractable Material (SGT-HEM; Non-polar Material) by Extraction and Gravimetry, available at www.epa.gov, (2010).
Literature number: AN965