W911SD-22-R-0165 PWS Atch 3 Soil Analysis Results.pdf
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- SOURCES SOUGHT U. S. Army West Point Material Disposal Services Federal contract opportunity
- Solicitation number
- W911SD-22-R-0165
About this file
This sources sought notice seeks information from small businesses interested in providing material disposal services for the U.S. Army at West Point. Specifically, the Army requires disposal of approximately 22,000 cubic yards of stockpiled, contaminated fill material from a construction site. The fill material must be loaded, transported, and disposed of off-site. Respondents should provide company and point of contact information, whether they intend to bid as a prime contractor or subcontractor, relevant experience in similar projects including size and scope, certifications, and pricing information to help determine commercial availability. The Army aims to set aside this requirement for small businesses and requests recommendations to improve competition among small firms. Responses are due by a specified date and should be sent to the point of contact listed in the notice.
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Other files for this federal contract opportunity
| File | Type | Posted |
|---|---|---|
| W911SD-22-R-0165 PWS Atch 1 Location Map.pdf | ||
| W911SD-22-R-0165 PWS CEAC Soil Disposal.pdf | ||
| W911SD-22-R-0165 PWS Atch 2 CEAC Soil Photos.pdf | ||
| W911SD-22-R-0165 MRR Sources Sought Soil Disposal.pdf |
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CEAC Soil Analytical Results Summary from September 2021 Sampling Conducted by EMD BPA
Area L Soil Pile #1: Composite samples collected by USACE exceeded predetermined beneficial reuse standards. Out of four samples collected by EMD, two exceeded predetermined beneficial reuse standards. Two met the limited use standard for reuse under pavement.
Area L Soil Pile #2: Composite samples collected by USACE exceeded predetermined beneficial reuse standards. Three samples collected by EMD exceeded predetermined beneficial reuse standards.
Area L Soil Pile #3: Composite samples collected by USACE exceeded predetermined beneficial reuse standards. Out of five samples collected by EMD, one exceeded predetermined beneficial reuse standards. Four met the limited use standard for reuse under pavement.
Area L Soil Pile #4: Soil pile #4 was not tested by USACE. Out of seven samples collected by EMD, three met the standards for restricted use in transportation corridors or sites where in‐situ fill exceeds restricted or limited use fill. Four met the limited use standard for reuse under pavement.
Soil Pile/Section Physical Criteria Chemical Criteria Predetermined beneficial Reuse?
USACE Area L Composite Sample Results
1‐C‐1 LT 40% non‐putrescible non‐soil constituents
Exceeds residential & GW SCO for semi‐ volatiles.
Limited Use Fill Exceeds industrial & GW SCO for semi‐volatiles.
BAPE exceeds 3.
1‐C‐2 LT 40% non‐putrescible non‐soil constituents
Exceeds industrial & GW SCO for semi‐volatiles.
BAPE exceeds 3.
No
1‐C‐3 LT 40% non‐putrescible non‐soil constituents
Exceeds industrial & GW SCO for semi‐volatiles.
BAPE exceeds 3.
No
1‐C‐4 LT 40% non‐putrescible non‐soil constituents
Exceeds industrial and GW SCO for semi‐ volatiles. BAPE less than 3.
Limited Use Fill
2‐C‐1 LT 40% non‐putrescible non‐soil constituents
Exceeds industrial and GW SCO for semi‐ volatiles. BAPE exceeds
3 PPM.
No Exceeds industrial & GW SCO for semi‐volatiles.
BAPE exceeds 3.
USACE Area L Composite Sample Results
2‐C‐2 LT 40% non‐putrescible non‐soil constituents
Exceeds industrial and GW SCO for semi‐ volatiles. BAPE exceeds
3 PPM.
No
2‐C‐3 LT 40% non‐putrescible non‐soil constituents
Exceeds industrial and GW SCO for semi‐ volatiles. BAPE exceeds
3 PPM.
No
3‐C‐1 LT 40% non‐putrescible non‐soil constituents
Exceeds industrial and GW SCO. BAPE less than
3 PPM.
Limited Use Fill Exceeds industrial & GW SCO for semi‐volatiles.
BAPE exceeds 3.
3‐C‐2 LT 40% non‐putrescible non‐soil constituents
Exceeds industrial and GW SCO. BAPE less than
3 PPM.
Limited Use Fill
3‐C‐3 LT 40% non‐putrescible non‐soil constituents
Exceeds industrial and GW SCO. BAPE less than
3 PPM.
Limited Use Fill
3‐C‐4 LT 40% non‐putrescible non‐soil constituents
Exceeds industrial and GW SCO. BAPE less than
3 PPM.
Limited Use Fill
3‐C‐5 LT 40% non‐putrescible non‐soil constituents
Exceeds industrial and GW SCO for semi‐ volatiles. BAPE exceeds
3 PPM.
No
4‐C‐1 LT 40% non‐putrescible non‐soil constituents
Exceeds residential for semi‐volatiles. Meets GW SCO. BAPE less than 3.
Restricted Use Fill Not tested
4‐C‐2 LT 40% non‐putrescible non‐soil constituents
Meets residential and
GW SCO.
Restricted Use Fill
4‐C‐3 LT 40% non‐putrescible non‐soil constituents
Exceeds residential and GW SCO’s for semi‐
Limited Use Fill
USACE Area L Composite Sample Results volatiles. BAPE less than 3.
4‐C‐4 LT 40% non‐putrescible non‐soil constituents
Exceeds residential for semi‐volatiles. Meets GW SCO. BAPE less than 3.
Restricted Use Fill
4‐C‐5 LT 40% non‐putrescible non‐soil constituents
Exceeds residential and GW SCO’s for semi‐ volatiles. BAPE less than 3.
Limited Use Fill
4‐C‐6 LT 40% non‐putrescible non‐soil constituents
Exceeds residential and GW SCO for zinc.
Limited Use Fill
4‐C‐7 LT 40% non‐putrescible non‐soil constituents
Exceeds residential and GW SCO’s for semi‐ volatiles. BAPE less than 3.
Limited Use Fill
6NYCRR360.13 Acceptable Fill Material Uses
Fill Material Type Fill Material End Use Physical Criteria Maximum Concentration Levels
General Fill Any setting where the fill material meets the engineering criteria, for use, except: 1.
Undeveloped land; and 2.
Agricultural crop land. General Fill may also be used in the same manner as Restricted‐Use Fill and Limited‐Use Fill.
Only soil, sand, gravel or rock; no non‐soil constituents.
Lower of Protection of Public Health‐Residential Land Use and Protection of Groundwater in section 375‐6.8(b) of this Title.
Fill Material Type Fill Material End Use Physical Criteria Maximum Concentration Levels
Restricted‐Use Fill1 Engineered use for embankments or subgrade in transportation corridors, or on sites where in‐ situ materials exceed Restricted‐ Use Fill or Limited‐Use Fill criteria. Must be placed above the seasonal high water table.
May also be used in the same manner as Limited‐Use Fill.
Up to 40 percent by volume inert, non‐putrescible non‐soil constituents.2
General Fill criteria except that up to 3 mg/kg (dry weight) total benzo(a)pyrene (BAP) equivalent.3 No detectable asbestos. In Nassau or Suffolk County – BAP equivalent does not apply. Polycyclic aromatic hydrocarbons must not exceed Protection of Groundwater Soil Cleanup Objectives in section 375‐6.8(b) of this Title.
Limited‐Use Fill1 Engineered use under foundations and pavements above the seasonal high water table.4 Placement in Nassau and Suffolk Counties is prohibited.
No volume limit for inert, non‐ putrescible non‐soil constituents.2
General Fill criteria, except up to Protection of Public Health‐ Commercial SCOs for metals; up to 3 mg/kg (dry weight) benzo(a)pyrene equivalent is allowed.3 No detectable asbestos.
1. Use of restricted or limited use fill material can only occur at a project in accordance with an approved local building permit or other municipal authorization that includes the need for the fill material. Fill material must be used within 30 days of arriving at the project site.
2. Inert, non‐putrescible materials excludes plastic, gypsum wallboard, wood, paper, or other material that may readily degrade or produce odors.
3. Benzo(a)pyrene (BAP) equivalent is calculated using the following formula: BAPE= 1 x conc. Benzo(a)pyrene + 0.1 x [conc. Benz(a)anthracene + conc. Benzo(b)fluoranthene + conc. Benzo(k)fluoranthene + conc. Dibenz(a,h)anthracene + conc. Indeno(1,2,3‐c,d)pyrene] + 0.01 x conc.
Chrysene (All concentrations in mg/kg or ppm, dry weight.)
4. If foundation or pavement is not installed within 365 days of fill material placement, it placement will constitute prohibited disposal.
Notes for Analysis Results Tables
Tables list all detections. All values are in PPM.
Analysis results are compared to the Soil Cleanup Objectives (SCO) from 6 NYCRR 375‐6.8
Yellow highlight: Analyte meets the standard.
Red highlight: Analyte exceeds the standard.
No highlight: Analyte meets the unrestricted SCO.
Benzo(a)pyrene (BAP) equivalent is calculated using the following formula: BAPE= 1 x conc. Benzo(a)pyrene + 0.1 x [conc. Benz(a)anthracene + conc. Benzo(b)fluoranthene + conc. Benzo(k)fluoranthene + conc. Dibenz(a,h)anthracene + conc. Indeno(1,2,3‐c,d)pyrene] + 0.01 x conc.
Chrysene (All concentrations in mg/kg or ppm, dry weight.)
Pile #1
Sample 1‐C‐1, 1‐G‐1
Result: Exceeds residential and GW SCO for semi volatiles but BAPE LT 3. Meets limited use fill criteria.
BAPE = 0.944 + 0.1(1.03+1.14+0+0+0)+0.01(0.946) = 0.944+0.217+0.00946= 1.17
Results Unrestricted Residential Residential Restricted
Commercial Industrial ECO GW
Gamma chlordane 0.0053
4 4 DDE 0.041 0.0033 1.8 8.9 62 120 0.0033 17
4,4'‐DDT 0.0388 0.0033 1.7 7.9 47 94 0.0033 136
Endosulfan sulfate 0.0058 2.4 4.8 24 200 920 NS 1,000
Endrin aldehyde 0.0084
PCB‐1254 0.0472 0.1 1 1 1 25 1 3.2
Aluminum 8540 10,000
Commercial Industrial ECO GW
Arsenic 5.5 13 16 16 16 16 13 16
Barium 56.4 350 350 400 400 10,000 433 820
Calcium 35300 10,000 Chromium 11.0 Cobalt 4.5 30 20 Copper 17.2 50 270 270 270 10,000 50 1,720 Iron 10300 2,000 Lead 65.6 63 400 400 1,000 3,900 63 450
Magnesium 4430 Manganese 237 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 8.9 30 140 310 310 10,000 30 130
Potassium 1040 Selenium 0.59 3.9 36 180 1,500 6,800 3.9 4
Sodium 325 Thallium 1.2 Vanadium 17.4 100 39 Zinc 47.6 109 2200 10,000 10,000 10,000 109 2,480
Mercury 0.17 0.18 0.81 0.81 2.8 5.7 0.18 0.73
Benzo(a)anthracene 1.03 1 1 1 5.6 11 NS 1
Benzo(a)pyrene 0.944 1 1 1 1 1.1 2.6 22
Commercial Industrial ECO GW
Benzo(b)fluoranthene 1.14 1 1 1 5.6 11 NS 1.7
Chrysene 0.946 1 1 3.9 56 110 NS 1
Fluoranthene 1.75 100 100 100 500 1,000 NS 1,000
Phenanthrene 0.926 100 100 100 500 1,000 NS 1,000
Pyrene 1.6 100 100 100 500 1,000 NS 1,000
Chromium, Trivalent 11.0 30 36 180 1,500 6,800 41 NS
Sample 1‐C‐2, 1‐G‐2
Result: Exceeds residential and GW SCO for semi‐volatiles. Exceeds industrial SCO for benzo(a)pyrene. BAPE exceeds 3.
BAPE = 2.44 + 0.1(2.65+2.82+1.45+0+1.45)+ 0.01(2.59) = 2.44+0.837+0.0259= 3.3029
Results Unrestricted Residential Residential Restricted
Commercial Industrial ECO GW
4,4’‐ DDE 0.0328 0.0033 1.8 8.9 62 120 0.0033 17
4,4'‐DDT 0.0388 0.0033 1.7 7.9 47 94 0.0033 136
Endosulfan sulfate 0.0053 2.4 4.8 24 200 920 NS 1,000
PCB‐1254 0.821 0.1 1 1 1 25 1 3.2
Commercial Industrial ECO GW
Aluminum 10700 10,000 Arsenic 6.6 13 16 16 16 16 13 16
Barium 50.3 350 350 400 400 10,000 433 820
Calcium 22400 10,000 Chromium 13.4 Cobalt 7.4 30 20 Copper 30.7 50 270 270 270 10,000 50 1,720 Iron 16800 2,000 Lead 231 63 400 400 1,000 3,900 63 450
Magnesium 13600 Manganese 331 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 13.1 30 140 310 310 10,000 30 130
Potassium 1410 Selenium 1.4 3.9 36 180 1,500 6,800 3.9 4
Thallium 1.6
Vanadium 25.9 100 39 Zinc 71.9 109 2200 10,000 10,000 10,000 109 2,480
Mercury 0.22 0.18 0.81 0.81 2.8 5.7 0.18 0.73
Benzo(a)anthracene 2.65 1 1 1 5.6 11 NS 1
Benzo(a)pyrene 2.44 1 1 1 1 1.1 2.6 22
Commercial Industrial ECO GW
Benzo(b)fluoranthene 2.82 1 1 1 5.6 11 NS 1.7
Benzo(g,h,i)perylene 1.29 100 100 100 500 1,000 NS 1,000
Benzo(k)fluoranthene 1.45 0.8 1 3.9 56 110 NS 1.7
Chrysene 2.59 1 1 3.9 56 110 NS 1
Fluoranthene 5.08 100 100 100 500 1,000 NS 1,000
Indeno(1,2,3‐ cd)pyrene
1.45 0.5 0.5 0.5 5.6 11 NS 8.2
Phenanthrene 2.77 100 100 100 500 1,000 NS 1,000
Pyrene 4.4 100 100 100 500 1,000 NS 1,000
Chromium, Trivalent 13.4 30 36 180 1,500 6,800 41 NS
Acetone 0.0071 0.05 100 100 500 1,000 2.2 0.05
2‐Butanone (MEK) 0.0024 0.12 100 100 500 1,000 100 0.12
Sample 1‐C‐3, 1‐G‐3
Result: Exceeds industrial and GW SCO for semi‐volatiles. BAPE exceeds 3
Commercial Industrial ECO GW alpha‐Chlordane 0.0037 0.094 0.91 4.2 24 47 1.3 2.9 Gamma‐chlordane 0.0041
4,4’‐DDD 0.0062 0.0033 2.6 13 92 180 0.0033 14
4,4’‐DDE 0.0222 0.0033 1.8 8.9 62 120 0.0033 17
4,4'‐DDT 0.0215 0.0033 1.7 7.9 47 94 0.0033 136
Endosulfan sulfate 0.0046 2.4 4.8 24 200 920 NS 1,000
PCB‐1254 0.0953 0.1 1 1 1 25 1 3.2
Aluminum 2520 10,000 Arsenic 1.1 13 16 16 16 16 13 16
Barium 14.0 350 350 400 400 10,000 433 820
Calcium 182000 10,000 Chromium 4.1 Copper 7.7 50 270 270 270 10,000 50 1,720 Iron 5340 2,000 Lead 21.2 63 400 400 1,000 3,900 63 450
Magnesium 110000 Manganese 184 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 3.6 30 140 310 310 10,000 30 130
Potassium 346 Selenium 0.55 3.9 36 180 1,500 6,800 3.9 4
Commercial Industrial ECO GW
Silver 0.94 2 36 180 1,500 6,800 2 8.3 Vanadium 7.3 100 39 Zinc 17.6 109 2200 10,000 10,000 10,000 109 2,480
Mercury 0.29 0.18 0.81 0.81 2.8 5.7 0.18 0.73
Anthracene 1.02 100 100 100 500 1,000 NS 1,000
Benzo(a)anthracene 3.37 1 1 1 5.6 11 NS 1
Benzo(a)pyrene 3.13 1 1 1 1 1.1 2.6 22
Benzo(b)fluoranthene 3.79 1 1 1 5.6 11 NS 1.7
Benzo(g,h,i)perylene 1.38 100 100 100 500 1,000 NS 1,000
Benzo(k)fluoranthene 1.92 0.8 1 3.9 56 110 NS 1.7
Chrysene 3.00 1 1 3.9 56 110 NS 1
Fluoranthene 5.89 100 100 100 500 1,000 NS 1,000
Indeno(1,2,3‐ cd)pyrene
1.7 0.5 0.5 0.5 5.6 11 NS 8.2
Phenanthrene 3.8 100 100 100 500 1,000 NS 1,000
Pyrene 5.16 100 100 100 500 1,000 NS 1,000
Chromium, Trivalent 4.1 30 36 180 1,500 6,800 41 NS
Sample 1‐C‐4, 1‐G‐4
Result: Exceeds industrial and GW SCO for semi‐volatiles. BAPE LT 3.
BAPE = 2.04 + 0.1(2.22+2.36+1.22+0+1.11) + 0.01(2.04) = 2.04+.691+ 0.0204= 2.7514
Results Unrestricted Residential Residential Restricted
Commercial Industrial ECO GW
4,4’‐DDD 0.0111 0.0033 2.6 13 92 180 0.0033 14
4,4’‐DDE 0.0556 0.0033 1.8 8.9 62 120 0.0033 17
4,4'‐DDT 0.0358 0.0033 1.7 7.9 47 94 0.0033 136
Endrin aldehyde 0.005
Endrin ketone 0.0042
PCB‐1254 0.0648 0.1 1 1 1 25 1 3.2
Aluminum 10900 10,000 Arsenic 6.1 13 16 16 16 16 13 16
Barium 54.8 350 350 400 400 10,000 433 820
Calcium 18900 10,000 Chromium 13.2 Cobalt 6.8 30 20 Copper 25.3 50 270 270 270 10,000 50 1,720 Iron 15800 2,000 Lead 78.6 63 400 400 1,000 3,900 63 450
Commercial Industrial ECO GW
Magnesium 9260 Manganese 387 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 12.9 30 140 310 310 10,000 30 130
Potassium 1420 Selenium 1.3 3.9 36 180 1,500 6,800 3.9 4
Sodium 385
Thallium 1.7
Vanadium 29.9 100 39 Zinc 91.5 109 2200 10,000 10,000 10,000 109 2,480
Mercury 0.20 0.18 0.81 0.81 2.8 5.7 0.18 0.73
Benzo(a)anthracene 2.22 1 1 1 5.6 11 NS 1
Benzo(a)pyrene 2.04 1 1 1 1 1.1 2.6 22
Benzo(b)fluoranthene 2.36 1 1 1 5.6 11 NS 1.7
Benzo(g,h,i)perylene 0.860 100 100 100 500 1,000 NS 1,000
Benzo(k)fluoranthene 1.22 0.8 1 3.9 56 110 NS 1.7
Chrysene 2.04 1 1 3.9 56 110 NS 1
Fluoranthene 3.96 100 100 100 500 1,000 NS 1,000
Commercial Industrial ECO GW
Indeno(1,2,3‐ cd)pyrene
1.11 0.5 0.5 0.5 5.6 11 NS 8.2
Phenanthrene 2.37 100 100 100 500 1,000 NS 1,000
Pyrene 3.46 100 100 100 500 1,000 NS 1,000
Chromium, Trivalent 13.2 30 36 180 1,500 6,800 41 NS
Pile #2
Sample 2‐C‐1, 2‐G‐1
Result: Exceeds industrial and GW SCO for semi‐volatiles. BAPE exceeds 3 PPM.
Commercial Industrial ECO GW
Alpha chlordane 0.0067 0.094 0.91 4.2 24 47 1.3 2.9
4 4 DDE 0.0102 0.0033 1.8 8.9 62 120 0.0033 17
4,4'‐DDT 0.0293 0.0033 1.7 7.9 47 94 0.0033 136
Endosulfan II 0.0049 2.4 4.8 24 200 920 NS 102
Endosulfan sulfate 0.0239 2.4 4.8 24 200 920 NS 1,000
Endrin aldehyde 0.0147 Endrin ketone 0.0316
Commercial Industrial ECO GW
Aluminum 13700 10,000 Arsenic 3.8 13 16 16 16 16 13 16
Barium 399 350 350 400 400 10,000 433 820
Berylium 0.36 7.2 14 72 590 2,700 10 47
Calcium 7880 10,000 Chromium 13.2 Cobalt 8.4 30 20 Copper 28.6 50 270 270 270 10,000 50 1,720 Iron 17700 2,000 Lead 35.7 63 400 400 1,000 3,900 63 450
Magnesium 5350 Manganese 327 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 12.4 30 140 310 310 10,000 30 130
Potassium 1450 Sodium 331 Vanadium 30.4 100 39 Zinc 238 109 2200 10,000 10,000 10,000 109 2,480
Mercury 0.14 0.18 0.81 0.81 2.8 5.7 0.18 0.73
Acenaphthylene 0.742 100 100 100 500 1,000 NS 107
Anthracene 1.21 100 100 100 500 1,000 NS 1,000
Commercial Industrial ECO GW
Benzo(a)anthracene 5.2 1 1 1 5.6 11 NS 1
Benzo(a)pyrene 5.1 1 1 1 1 1.1 2.6 22
Benzo(b)fluoranthene 5.81 1 1 1 5.6 11 NS 1.7
Benzo(g,h,i)perylene 2.67 100 100 100 500 1,000 NS 1,000
Benzo(k)fluoranthene 3.01 0.8 1 3.9 56 110 NS 1.7
Chrysene 4.63 1 1 3.9 56 110 NS 1
Dibenz(a,h)anthracene 0.783 0.33 0.33 0.33 0.56 1.1 NS 1,000
Fluoranthene 7.9 100 100 100 500 1,000 NS 1,000
Indeno(1,2,3‐ cd)pyrene
3.07 0.5 0.5 0.5 5.6 11 NS 8.2
Phenanthrene 3.83 100 100 100 500 1,000 NS 1,000
Pyrene 7.91 100 100 100 500 1,000 NS 1,000
Chromium, Trivalent 13.2 30 36 180 1,500 6,800 41 NS
Sample 2‐C‐2, 2‐G‐2
Result: Exceeds industrial and GW SCO for semi‐volatiles. BAPE exceeds 3 PPM.
Commercial Industrial ECO GW alpha‐Chlordane 0.0025 0.094 0.91 4.2 24 47 1.3 2.9
4,4'‐DDE 0.0292 0.0033 1.8 8.9 62 120 0.0033 17
4,4'‐DDT 0.0184 0.0033 1.7 7.9 47 94 0.0033 136
Endosulfan sulfate 0.0179 2.4 4.8 24 200 920 NS 1,000
Endrin aldehyde 0.0078 Endrin ketone 0.0102 Aluminum 11900 10,000 Arsenic 4.2 13 16 16 16 16 13 16
Barium 44.3 350 350 400 400 10,000 433 820
Calcium 10300 10,000 Chromium 14.3 Cobalt 7 30 20 Copper 24.5 50 270 270 270 10,000 50 1,720 Iron 16900 2,000 Lead 40.8 63 400 400 1,000 3,900 63 450
Magnesium 4000 Manganese 285 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 11.3 30 140 310 310 10,000 30 130
Potassium 1540 Selenium 1.4 3.9 36 180 1,500 6,800 3.9 4
Commercial Industrial ECO GW
Sodium 351 Thallium 1.8 Vanadium 28.5 100 39 Zinc 57.8 109 2200 10,000 10,000 10,000 109 2,480
Mercury 0.1 0.18 0.81 0.81 2.8 5.7 0.18 0.73
Acenaphthylene 0.528 100 100 100 500 1,000 NS 107
Anthracene 0.74 100 100 100 500 1,000 NS 1,000
Benzo(a)anthracene 3.87 1 1 1 5.6 11 NS 1
Benzo(a)pyrene 3.96 1 1 1 1 1.1 2.6 22
Benzo(b)fluoranthene 4.52 1 1 1 5.6 11 NS 1.7
Benzo(g,h,i)perylene 2.14 100 100 100 500 1,000 NS 1,000
Benzo(k)fluoranthene 2.37 0.8 1 3.9 56 110 NS 1.7
Chrysene 3.23 1 1 3.9 56 110 NS 1
Dibenz(a,h)anthracene 0.607 0.33 0.33 0.33 0.56 1.1 NS 1,000
Fluoranthene 5.57 100 100 100 500 1,000 NS 1,000
Indeno(1,2,3‐ cd)pyrene
2.5 0.5 0.5 0.5 5.6 11 NS 8.2
Phenanthrene 1.97 100 100 100 500 1,000 NS 1,000
Commercial Industrial ECO GW
Pyrene 5.51 100 100 100 500 1,000 NS 1,000
Chromium, Trivalent 14.3 30 36 180 1,500 6,800 41 NS
Sample 2‐C‐3, 2‐G‐3
Result: Exceeds industrial & GW SCO for semi‐volatiles. BAPE exceeds 3.
Results Unrestricted Residential Residential Restricted
Commercial Industrial ECO GW delta‐BHC 0.002 0.04 100 100 500 1,000 0.04 0.25 alpha‐Chlordane 0.0035 0.094 0.91 4.2 24 47 1.3 2.9
4,4'‐DDE 0.0237 0.0033 1.8 8.9 62 120 0.0033 17
4,4'‐DDT 0.015 0.0033 1.7 7.9 47 94 0.0033 136
Endosulfan sulfate 0.02 2.4 4.8 24 200 920 NS 1,000
Endrin aldehyde 0.0092 Endrin ketone 0.0228 Aluminum 12400 10,000 Arsenic 4.6 13 16 16 16 16 13 16
Barium 45.4 350 350 400 400 10,000 433 820
Calcium 6640 10,000 Chromium 14.7
Commercial Industrial ECO GW
Cobalt 7 30 20 Copper 24.6 50 270 270 270 10,000 50 1,720 Iron 17100 2,000 Lead 34.6 63 400 400 1,000 3,900 63 450
Magnesium 3860 Manganese 266 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 12.3 30 140 310 310 10,000 30 130
Potassium 1420 Selenium 1.4 3.9 36 180 1,500 6,800 3.9 4
Sodium 615 Thallium 1.8 Vanadium 27.2 100 39 Zinc 63.7 109 2200 10,000 10,000 10,000 109 2,480
Mercury 0.15 0.18 0.81 0.81 2.8 5.7 0.18 0.73
Acenaphthylene 0.857 100 100 100 500 1,000 NS 107
Anthracene 0.846 100 100 100 500 1,000 NS 1,000
Benzo(a)anthracene 5.47 1 1 1 5.6 11 NS 1
Benzo(a)pyrene 5.77 1 1 1 1 1.1 2.6 22
Benzo(b)fluoranthene 6.72 1 1 1 5.6 11 NS 1.7
Commercial Industrial ECO GW
Benzo(g,h,i)perylene 2.65 100 100 100 500 1,000 NS 1,000
Benzo(k)fluoranthene 3.32 0.8 1 3.9 56 110 NS 1.7
Chrysene 4.91 1 1 3.9 56 110 NS 1
Dibenz(a,h)anthracene 0.812 0.33 0.33 0.33 0.56 1.1 NS 1,000
Fluoranthene 7.39 100 100 100 500 1,000 NS 1,000
Indeno(1,2,3‐ cd)pyrene
3.49 0.5 0.5 0.5 5.6 11 NS 8.2
Phenanthrene 2.26 100 100 100 500 1,000 NS 1,000
Pyrene 7.56 100 100 100 500 1,000 NS 1,000
Chromium, Trivalent 14.7 30 36 180 1,500 6,800 41 NS
Pile #3
Sample 3‐C‐1, 3‐G‐1
Result: Exceeds industrial and GW SCO. BAPE less than 3 PPM.
BAP Equivalent: 1.57 + 0.1 (1.67+1.79+0.884+0+0.954) + 0.01 x 1.72 = 1.57 + 0.5298 + .0172 = 2.117
Commercial Industrial ECO GW
4,4'‐DDD 0.014 0.0033 2.6 13 92 180 0.0033 14
4,4'‐DDE 0.0297 0.0033 1.8 8.9 62 120 0.0033 17
4,4'‐DDT 0.0269 0.0033 1.7 7.9 47 94 0.0033 136
Endosulfan sulfate 0.011 2.4 4.8 24 200 920 NS 1,000
Endrin aldehyde 0.0052 Aluminum 12300 10,000 Arsenic 3 13 16 16 16 16 13 16
Barium 36.8 350 350 400 400 10,000 433 820
Beryllium 0.36 7.2 14 72 590 2,700 10 47
Calcium 6570 10,000 Chromium 12.8 Cobalt 8.5 30 20 Copper 15.2 50 270 270 270 10,000 50 1,720 Iron 17900 2,000 Lead 18.4 63 400 400 1,000 3,900 63 450
Magnesium 5060 Manganese 675 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 13.3 30 140 310 310 10,000 30 130
Potassium 1210 Selenium 1.4 3.9 36 180 1,500 6,800 3.9 4
Commercial Industrial ECO GW
Sodium 509 Vanadium 22.7 100 39 Zinc 65.7 109 2200 10,000 10,000 10,000 109 2,480
Lead (TCLP) 0.087
Mercury 0.00012 0.18 0.81 0.81 2.8 5.7 0.18 0.73
Benzo(a)anthracene 1.67 1 1 1 5.6 11 NS 1
Benzo(a)pyrene 1.57 1 1 1 1 1.1 2.6 22
Benzo(b)fluoranthene 1.79 1 1 1 5.6 11 NS 1.7
Benzo(g,h,i)perylene 0.878 100 100 100 500 1,000 NS 1,000
Benzo(k)fluoranthene 0.884 0.8 1 3.9 56 110 NS 1.7
Chrysene 1.72 1 1 3.9 56 110 NS 1
Fluoranthene 3.91 100 100 100 500 1,000 NS 1,000
Indeno(1,2,3‐ cd)pyrene
0.954 0.5 0.5 0.5 5.6 11 NS 8.2
Phenanthrene 2.11 100 100 100 500 1,000 NS 1,000
Pyrene 3.18 100 100 100 500 1,000 NS 1,000
Chromium, Trivalent 12.8 30 36 180 1,500 6,800 41 NS
Commercial Industrial ECO GW
Acetone 0.0173 0.05 100 100 500 1,000 2.2 0.05
Methylene Chloride 0.0024 0.05 51 100 500 1,000 12 0.05
Sample 3‐C‐2, 3‐G‐2
Result: Exceeds industrial and GW SCO. BAPE less than 3 PPM.
BAP Equivalent = 1.12 + 0.1(1.09+1.27+0+0+0) + 0.01(0.969) = 1.12+0.236+0.00969 = 1.36569
Results Unrestricted Residential Residential Restricted
Commercial Industrial ECO GW
4,4'‐DDD 0.0115 0.0033 2.6 13 92 180 0.0033 14
4,4'‐DDE 0.0249 0.0033 1.8 8.9 62 120 0.0033 17
4,4'‐DDT 0.0139 0.0033 1.7 7.9 47 94 0.0033 136
Endosulfan sulfate 0.0124 2.4 4.8 24 200 920 NS 1,000
Endrin aldehyde 0.005 Aluminum 14700 10,000 Arsenic 4.5 13 16 16 16 16 13 16
Barium 54 350 350 400 400 10,000 433 820
Commercial Industrial ECO GW
Beryllium 0.32 7.2 14 72 590 2,700 10 47
Calcium 11500 10,000 Chromium 15.7 Cobalt 7.9 30 20 Copper 23.4 50 270 270 270 10,000 50 1,720 Iron 18200 2,000 Lead 27.5 63 400 400 1,000 3,900 63 450
Magnesium 8390 Manganese 323 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 13.2 30 140 310 310 10,000 30 130
Potassium 1560 Selenium 1.1 3.9 36 180 1,500 6,800 3.9 4
Sodium 506 Vanadium 32.4 100 39 Zinc 66.7 109 2200 10,000 10,000 10,000 109 2,480
Lead (TCLP) 0.074 Mercury 0.11 0.18 0.81 0.81 2.8 5.7 0.18 0.73
Benzo(a)anthracene 1.09 1 1 1 5.6 11 NS 1
Benzo(a)pyrene 1.12 1 1 1 1 1.1 2.6 22
Benzo(b)fluoranthene 1.27 1 1 1 5.6 11 NS 1.7
Commercial Industrial ECO GW
Chrysene 0.969 1 1 3.9 56 110 NS 1
Fluoranthene 1.8 100 100 100 500 1,000 NS 1,000
Phenanthrene 0.769 100 100 100 500 1,000 NS 1,000
Pyrene 1.72 100 100 100 500 1,000 NS 1,000
Chromium, Trivalent 15.7 30 36 180 1,500 6,800 41 NS
Acetone 0.0372 0.05 100 100 500 1,000 2.2 0.05
2‐Butanone (MEK) 0.0083 0.12 100 100 500 1,000 100 0.12 p‐Isopropyltoluene 0.0098 Methylene Chloride 0.0021 0.05 51 100 500 1,000 12 0.05
Naphthalene 0.0066 12 100 100 500 1,000 NS 12
Sample 3‐C‐3, 3‐G‐3
Result: Exceeds industrial and GW SCO. BAPE less than 3 PPM.
BAP Equivalent = 1.68 + 0.1(1.93+1.99+0.813+0+0.97) + 0.01 (1.87) = 1.68 + 0.4703+ .0187 = 2.169
Commercial Industrial ECO GW
4,4'‐DDD 0.0136 0.0033 2.6 13 92 180 0.0033 14
4,4'‐DDE 0.0274 0.0033 1.8 8.9 62 120 0.0033 17
4,4'‐DDT 0.0141 0.0033 1.7 7.9 47 94 0.0033 136
Endosulfan sulfate 0.0144 2.4 4.8 24 200 920 NS 1,000
Endrin aldehyde 0.0075 Aluminum 12400 10,000 Arsenic 3.3 13 16 16 16 16 13 16
Barium 50.3 350 350 400 400 10,000 433 820
Calcium 5330 10,000 Chromium 11 Cobalt 6.7 30 20 Copper 17.2 50 270 270 270 10,000 50 1,720 Iron 17800 2,000 Lead 19 63 400 400 1,000 3,900 63 450
Magnesium 4000 Manganese 253 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 9.2 30 140 310 310 10,000 30 130
Potassium 1640 Selenium 1.1 3.9 36 180 1,500 6,800 3.9 4
Sodium 397 Vanadium 25.5 100 39
Commercial Industrial ECO GW
Zinc 64 109 2200 10,000 10,000 10,000 109 2,480
Lead (TCLP) 0.060 Mercury 0.17 0.18 0.81 0.81 2.8 5.7 0.18 0.73
Anthracene 1.05 100 100 100 500 1,000 NS 1,000
Benzo(a)anthracene 1.93 1 1 1 5.6 11 NS 1
Benzo(a)pyrene 1.68 1 1 1 1 1.1 2.6 22
Benzo(b)fluoranthene 1.99 1 1 1 5.6 11 NS 1.7
Benzo(g,h,i)perylene 0.792 100 100 100 500 1,000 NS 1,000
Benzo(k)fluoranthene 0.813 0.8 1 3.9 56 110 NS 1.7
Chrysene 1.87 1 1 3.9 56 110 NS 1
Fluoranthene 4.37 100 100 100 500 1,000 NS 1,000
Indeno(1,2,3‐ cd)pyrene
0.97 0.5 0.5 0.5 5.6 11 NS 8.2
Phenanthrene 3.58 100 100 100 500 1,000 NS 1,000
Pyrene 3.68 100 100 100 500 1,000 NS 1,000
Chromium, Trivalent 11 30 36 180 1,500 6,800 41 NS
Commercial Industrial ECO GW
Naphthalene 0.0117 12 100 100 500 1,000 NS 12
Sample 3‐C‐4, 3‐G‐4
Result: Exceeds industrial and GW SCO. BAPE less than 3 PPM.
BAP Equivalent = 2.01 + 0.1(1.87+2.26+1.06+0+1.29)+0.01x1.9 = 2.01+0.648+0.019= 2.677
Results Unrestricted Residential Residential Restricted
Commercial Industrial ECO GW
4,4'‐DDD 0.0142 0.0033 2.6 13 92 180 0.0033 14
4,4'‐DDE 0.0337 0.0033 1.8 8.9 62 120 0.0033 17
4,4'‐DDT 0.0288 0.0033 1.7 7.9 47 94 0.0033 136
Endosulfan sulfate 0.014 2.4 4.8 24 200 920 NS 1,000
Endrin aldehyde 0.0063 Aluminum 14800 10,000 Arsenic 4.1 13 16 16 16 16 13 16
Barium 80.1 350 350 400 400 10,000 433 820
Calcium 20900 10,000 Chromium 22.1 Cobalt 12.4 30 20
Commercial Industrial ECO GW
Copper 27 50 270 270 270 10,000 50 1,720 Iron 20400 2,000 Lead 27.6 63 400 400 1,000 3,900 63 450
Magnesium 15800 Manganese 280 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 15.1 30 140 310 310 10,000 30 130
Potassium 4480 Selenium 1.3 3.9 36 180 1,500 6,800 3.9 4
Sodium 558 Vanadium 52.8 100 39 Zinc 67.6 109 2200 10,000 10,000 10,000 109 2,480
Lead (TCLP) 0.052 Mercury 0.13 0.18 0.81 0.81 2.8 5.7 0.18 0.73
Benzo(a)anthracene 1.87 1 1 1 5.6 11 NS 1
Benzo(a)pyrene 2.01 1 1 1 1 1.1 2.6 22
Benzo(b)fluoranthene 2.26 1 1 1 5.6 11 NS 1.7
Benzo(g,h,i)perylene 1.11 100 100 100 500 1,000 NS 1,000
Benzo(k)fluoranthene 1.06 0.8 1 3.9 56 110 NS 1.7
Chrysene 1.9 1 1 3.9 56 110 NS 1
Commercial Industrial ECO GW
Fluoranthene 3.33 100 100 100 500 1,000 NS 1,000
Indeno(1,2,3‐ cd)pyrene
1.29 0.5 0.5 0.5 5.6 11 NS 8.2
Phenanthrene 1.25 100 100 100 500 1,000 NS 1,000
Pyrene 3.03 100 100 100 500 1,000 NS 1,000
Chromium, Trivalent 22.1 30 36 180 1,500 6,800 41 NS
Methylene Chloride 0.0017 0.05 51 100 500 1,000 12 0.05
Sample 3‐C‐5, 3‐G‐5
Result: Exceeds industrial and GW SCO for semi‐volatiles. BAPE exceeds 3 PPM.
BAP Equivalent = 2.62+0.1(2.53+2.91+1.45+0+1.67)+0.01(2.26) = 2.62 + 0.856+0.0226 = 3.4986, GT 3 PPM
Results Unrestricted Residential Residential Restricted
Commercial Industrial ECO GW delta‐BHC 0.0056 0.04 100 100 500 1,000 0.04 0.25 gamma‐BHC (Lindane)
0.0249 0.1 0.28 1.3 9.2 23 6 0.1
4,4'‐DDD 0.0225 0.0033 2.6 13 92 180 0.0033 14
Commercial Industrial ECO GW
4,4'‐DDE 0.028 0.0033 1.8 8.9 62 120 0.0033 17
4,4'‐DDT 0.0278 0.0033 1.7 7.9 47 94 0.0033 136
Endosulfan sulfate 0.0246 2.4 4.8 24 200 920 NS 1,000
Endrin aldehyde 0.0147 Heptachlor 0.0057 0.042 0.42 2.1 15 29 0.14 0.38
Aluminum 16000 10,000 Arsenic 5.3 13 16 16 16 16 13 16
Barium 56.9 350 350 400 400 10,000 433 820
Beryllium 0.44 7.2 14 72 590 2,700 10 47
Calcium 7770 10,000 Chromium 16.7 Cobalt 9.1 30 20 Copper 26.7 50 270 270 270 10,000 50 1,720 Iron 21400 2,000 Lead 30.6 63 400 400 1,000 3,900 63 450
Magnesium 5720 Manganese 372 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 14.9 30 140 310 310 10,000 30 130
Potassium 1390 Selenium 1.2 3.9 36 180 1,500 6,800 3.9 4
Commercial Industrial ECO GW
Sodium 553 Vanadium 34.9 100 39 Zinc 80.2 109 2200 10,000 10,000 10,000 109 2,480
Lead (TCLP) 0.064 Mercury 0.12 0.18 0.81 0.81 2.8 5.7 0.18 0.73
Phenanthrene 1.22 100 100 100 500 1,000 NS 1,000
Fluoranthene 3.72 100 100 100 500 1,000 NS 1,000
Pyrene 3.64 100 100 100 500 1,000 NS 1,000
Benzo(a)anthracene 2.53 1 1 1 5.6 11 NS 1
Chrysene 2.26 1 1 3.9 56 110 NS 1
Benzo(b)fluoranthene 2.91 1 1 1 5.6 11 NS 1.7
Benzo(k)fluoranthene 1.45 0.8 1 3.9 56 110 NS 1.7
Benzo(a)pyrene 2.62 1 1 1 1 1.1 2.6 22
Indeno(1,2,3‐ cd)pyrene
1.67 0.5 0.5 0.5 5.6 11 NS 8.2
Benzo(g,h,i)perylene 1.54 100 100 100 500 1,000 NS 1,000
Chromium, Trivalent 16.7 30 36 180 1,500 6,800 41 NS
Commercial Industrial ECO GW
Acetone 0.0421 0.05 100 100 500 1,000 2.2 0.05
2‐Butanone (MEK) 0.0077 0.12 100 100 500 1,000 100 0.12
Naphthalene 0.0017 12 100 100 500 1,000 NS 12
Pile #4
Sample 4‐C‐1, 4‐G‐1
Result: Exceeds residential for semi‐volatiles. Meets GW SCO. BAPE less than 3.
BAP Equivalent = 0.781 + 0.1(0.914 + 1.01 + 0.412 + 0.116 + 0.394) + 0.01 (0.857) = 0.781 + 0.2845 + 0.00857 = 1.07407
Results Unrestricted Residential Residential Restricted
Commercial Industrial ECO GW
4,4'‐DDT 0.0392 0.0033 1.7 7.9 47 94 0.0033 136
PCB‐1254 0.368 0.1 1 1 1 25 1 3.2
Aluminum 16900 10,000 Arsenic 5.2 13 16 16 16 16 13 16
Barium 62.9 350 350 400 400 10,000 433 820
Berylium 0.42 7.2 14 72 590 2,700 10 47
Calcium 6820 10,000 Chromium 17.2
Commercial Industrial ECO GW
Cobalt 9.9 30 20 Copper 25.5 50 270 270 270 10,000 50 1,720 Iron 22100 2,000 Lead 112 63 400 400 1,000 3,900 63 450
Magnesium 6530 Manganese 539 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 21.1 30 140 310 310 10,000 30 130
Potassium 938 Selenium 1.2 3.9 36 180 1,500 6,800 3.9 4
Thalium 0.78 Vanadium 25 100 39 Zinc 82.1 109 2200 10,000 10,000 10,000 109 2,480
Lead (TCLP) 0.34
Mercury 0.19 0.18 0.81 0.81 2.8 5.7 0.18 0.73
Acenaphthene 0.079 20 100 100 500 1,000 20 98
Acenaphthylene 0.0927 100 100 100 500 1,000 NS 107
Anthracene 0.338 100 100 100 500 1,000 NS 1,000
Benzo(a)anthracene 0.914 1 1 1 5.6 11 NS 1
Benzo(a)pyrene 0.781 1 1 1 1 1.1 2.6 22
Commercial Industrial ECO GW
Benzo(b)fluoranthene 1.01 1 1 1 5.6 11 NS 1.7
Benzo(g,h,i)perylene 0.351 100 100 100 500 1,000 NS 1,000
Benzo(k)fluoranthene 0.412 0.8 1 3.9 56 110 NS 1.7
Carbazole 0.117
Chrysene 0.857 1 1 3.9 56 110 NS 1
Dibenz(a,h)anthracene 0.116 0.33 0.33 0.33 0.56 1.1 NS 1,000
Dibenzofuran 0.0792 7 14 59 350 1,000 NS 210
Fluoranthene 1.8 100 100 100 500 1,000 NS 1,000
Fluorene 0.123 30 100 100 500 1,000 30 386 Indeno(1,2,3‐ cd)pyrene
0.394 0.5 0.5 0.5 5.6 11 NS 8.2
Naphthalene 0.0879 12 100 100 500 1,000 NS 12
Phenanthrene 1.18 100 100 500 1,000 NS 1,000 100
Pyrene 1.48 100 100 500 1,000 NS 1,000 100
Chromium trivalent 17.2 30 36 180 1,500 6,800 41 NS
Methylene Chloride 0.0019 0.05 51 100 500 1,000 12 0.05
Sample 4‐C‐2, 4‐G‐2
Result: Meets residential and GW SCO.
Results Unrestricted Residential Residential Restricted
Commercial Industrial ECO GW alpha‐ Chlordane
0.0035 0.094 0.91 4.2 24 47 1.3 2.9
4,4'‐DDT 0.0282 0.0033 1.7 7.9 47 94 0.0033 136
PCB‐1254 0.154 0.1 1 1 1 25 1 3.2
Aluminum 13100 10,000 Arsenic 4 13 16 16 16 16 13 16
Barium 50.4 350 350 400 400 10,000 433 820
Berylium 0.41 7.2 14 72 590 2,700 10 47
Calcium 6660 10,000
Chromium 14.3
Cobalt 9.3 30 20 Copper 27.3 50 270 270 270 10,000 50 1,720 Iron 26000 2,000 Lead 58 63 400 400 1,000 3,900 63 450
Magnesium 5250
Manganese 498 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 19.6 30 140 310 310 10,000 30 130
Potassium 822 Selenium 0.54 3.9 36 180 1,500 6,800 3.9 4
Thalium 0.57 Vanadium 17.5 100 39 Zinc 78.2 109 2200 10,000 10,000 10,000 109 2,480
Lead (TCLP) 0.14 5 (HW)
Mercury 0.12 0.18 0.81 0.81 2.8 5.7 0.18 0.73
Fluoranthene 1.23 100 100 100 500 1,000 NS 1,000
Phenanthrene 1.05 100 100 500 1,000 NS 1,000 100
Pyrene 1.04 100 100 500 1,000 NS 1,000 100
Chromium, Trivalent
143(? 14.3) 30 36 180 1,500 6,800 41 NS
Sample 4‐C‐3, 4‐G‐3
Result: Exceeds residential and GW SCO’s for semi‐volatiles. BAPE less than 3.
BAP Equivalent = 0.973 + 0.1(1.09+1.26+0.559+ 0.129+0.459)+ 0.01(1.06) = 0.973 + 0.3497 + 0.0106 = 1.3333
Commercial Industrial ECO GW gamma‐Chlordane 0.0021
4,4'‐DDE 0.0373 0.0033 1.8 8.9 62 120 0.0033 17
4,4’‐DDT 0.0461 0.0033 1.7 7.9 47 94 0.0033 136
Dieldrin 0.0045 0.005 0.039 0.2 1.4 2.8 0.006 0.1
PCB‐1254 0.312 0.1 1 1 1 25 1 3.2
Aluminum 12200 10,000 Arsenic 4.1 13 16 16 16 16 13 16
Barium 66.6 350 350 400 400 10,000 433 820
Berylium 0.31 7.2 14 72 590 2,700 10 47
Calcium 12300 10,000
Chromium 13.7
Cobalt 8.9 30 20 Copper 24.1 50 270 270 270 10,000 50 1,720 Iron 18000 2,000 Lead 60.6 63 400 400 1,000 3,900 63 450
Magnesium 5840 Manganese 551 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 17.1 30 140 310 310 10,000 30 130
Potassium 1030 Sodium 371 Vanadium 18.1 100 39
Commercial Industrial ECO GW
Zinc 83 109 2200 10,000 10,000 10,000 109 2,480
Lead (TCLP) 0.059 5
Mercury 0.11 0.18 0.81 0.81 2.8 5.7 0.18 0.73
Acenaphthene 0.183 20 100 100 500 1,000 20 98
Acenaphthylene 0.0854 100 100 100 500 1,000 NS 107
Anthracene 0.511 100 100 100 500 1,000 NS 1,000
Benzo(a)anthracene 1.09 1 1 1 5.6 11 NS 1
Benzo(a)pyrene 0.973 1 1 1 1 1.1 2.6 22
Benzo(b)fluoranthene 1.26 1 1 1 5.6 11 NS 1.7
Benzo(g,h,i)perylene 0.368 100 100 100 500 1,000 NS 1,000
Benzo(k)fluoranthene 0.559 0.8 1 3.9 56 110 NS 1.7
Carbazole 0.226
Chrysene 1.06 1 1 3.9 56 110 NS 1 Dibenz(a,h)anthracene 0.129 0.33 0.33 0.33 0.56 1.1 NS 1,000
Dibenzofuran 0.153
Fluoranthene 2.16 100 100 100 500 1,000 NS 1,000
Commercial Industrial ECO GW
Fluorene 0.222 30 100 100 500 1,000 30 386 Indeno(1,2,3‐ cd)pyrene
0.459 0.5 0.5 0.5 5.6 11 NS 8.2
2‐Methylnaphthalene 0.0824
Naphthalene 0.151 12 100 100 500 1,000 NS 12 Phenanthrene 1.76 100 100 100 500 1,000 NS 1,000 Pyrene 1.92 100 100 100 500 1,000 NS 1,000 Chromium, Trivalent 13.7 30 36 180 1,500 6,800 41 NS
Sample 4‐C‐4, 4‐G‐4
Result: Exceeds residential for semi‐volatiles. Meets GW SCO. BAPE less than 3.
BAP Equivalent = 0.821 + 0.1(0.889+1.13+0.44+0.108+0.389)+0.01(0.836) = 0.821+0.2956+0.00836 = 1.12496
Commercial Industrial ECO GW alpha‐Chlordane 0.0033 0.094 0.91 4.2 24 47 1.3 2.9 Gamma‐chlordane 0.0036
4,4'‐DDE 0.03 0.0033 1.8 8.9 62 120 0.0033 17
4,4’‐DDT 0.023 0.0033 1.7 7.9 47 94 0.0033 136
PCB‐1254 0.154 0.1 1 1 1 25 1 3.2
Aluminum 12800 10,000 Arsenic 4.6 13 16 16 16 16 13 16
Commercial Industrial ECO GW
Barium 69.5 350 350 400 400 10,000 433 820
Berylium 0.41 7.2 14 72 590 2,700 10 47
Calcium 8500 10,000
Chromium 14.7
Cobalt 9.9 30 20 Copper 27.3 50 270 270 270 10,000 50 1,720 Iron 20200 2,000 Lead 66.6 63 400 400 1,000 3,900 63 450
Magnesium 5360 Manganese 573 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 18.7 30 140 310 310 10,000 30 130
Potassium 822
Thallium 0.62
Vanadium 19.0 100 39 Zinc 87.3 83 109 2200 10,000 10,000 10,000 109
Lead (TCLP) 0.029 5
Mercury 0.10 0.18 0.81 0.81 2.8 5.7 0.18 0.73 Acenaphthene 0.107 20 100 100 500 1,000 20 98 Anthracene 0.331 100 100 100 500 1,000 NS 1,000 Benzo(a)anthracene 0.889 1 1 1 5.6 11 NS 1
Commercial Industrial ECO GW
Benzo(a)pyrene 0.821 1 1 1 1 1.1 2.6 22
Benzo(b)fluoranthene 1.130 1 1 1 5.6 11 NS 1.7
Benzo(g,h,i)perylene 0.297 100 100 100 500 1,000 NS 1,000
Benzo(k)fluoranthene 0.440 0.8 1 3.9 56 110 NS 1.7
Carbazole 0.138 Chrysene 0.836 1 1 3.9 56 110 NS 1 Dibenz(a,h)anthracene 0.108 0.33 0.33 0.33 0.56 1.1 NS 1,000
Dibenzofuran 0.0752 Fluoranthene 1.69 100 100 100 500 1,000 NS 1,000
Fluorene 0.123 30 100 100 500 1,000 30 386 Indeno(1,2,3‐ cd)pyrene
0.389 0.5 0.5 0.5 5.6 11 NS 8.2
Naphthalene 0.0851 12 100 100 500 1,000 NS 12 Phenanthrene 1.180 100 100 100 500 1,000 NS 1,000 Pyrene 1.5 100 100 100 500 1,000 NS 1,000 Chromium, Trivalent 14.7 30 36 180 1,500 6,800 41 NS Methylene Chloride 0.0037 0.05 51 100 500 1,000 12 0.05
Sample 4‐C‐5, 4‐G‐5
BAP Equivalent = 0.884 + 0.1(1.03+0.994+0+0+0)+ 0.01(0.956)= 0.884+0.2024+0.00956= 1.09596
Commercial Industrial ECO GW alpha‐Chlordane 0.0785 0.094 0.91 4.2 24 47 1.3 2.9 Gamma‐chlordane 0.0736
4,4'‐DDE 0.0566 0.0033 1.8 8.9 62 120 0.0033 17
4,4’‐DDT 0.0702 0.0033 1.7 7.9 47 94 0.0033 136
Aluminum 13200 10,000 Arsenic 5.1 13 16 16 16 16 13 16
Barium 62.9 350 350 400 400 10,000 433 820
Berylium 0.33 7.2 14 72 590 2,700 10 47
Calcium 7750 10,000
Chromium 13.4
Cobalt 7.1 30 20 Copper 26.9 50 270 270 270 10,000 50 1,720 Iron 17800 2,000 Lead 109 63 400 400 1,000 3,900 63 450
Magnesium 4080 Manganese 327 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 15.4 30 140 310 310 10,000 30 130
Potassium 794
Commercial Industrial ECO GW
Selenium 0.63 3.9 36 180 1,500 6,800 3.9 4
Silver 1.2 2 36 180 1,500 6,800 2 8.3 Sodium 305
Vanadium 17.9 100 39 Zinc 86.7 83 109 2200 10,000 10,000 10,000 109
Lead (TCLP) 0.053 5
Mercury 0.31 0.18 0.81 0.81 2.8 5.7 0.18 0.73 Benzo(a)anthracene 1.03 1 1 1 5.6 11 NS 1 Benzo(a)pyrene 0.884 1 1 1 1 1.1 2.6 22
Benzo(b)fluoranthene 0.994 1 1 1 5.6 11 NS 1.7
Chrysene 0.956 1 1 3.9 56 110 NS 1 Fluoranthene 2.08 100 100 100 500 1,000 NS 1,000
Phenanthrene 1.59 100 100 100 500 1,000 NS 1,000 Pyrene 1.74 100 100 100 500 1,000 NS 1,000 Chromium, Trivalent 13.4 30 36 180 1,500 6,800 41 NS Methylene Chloride 0.0016 0.05 51 100 500 1,000 12 0.05
Sample 4‐C‐6, 4‐G‐6
Result: Exceeds residential and GW SCO for zinc.
Commercial Industrial ECO GW alpha‐Chlordane 0.0110 0.094 0.91 4.2 24 47 1.3 2.9 Gamma‐chlordane 0.0128
4,4'‐DDE 0.0263 0.0033 1.8 8.9 62 120 0.0033 17
4,4’‐DDT 0.0186 0.0033 1.7 7.9 47 94 0.0033 136
PCB‐1254 0.102 0.1 1 1 1 25 1 3.2
Aluminum 12900 10,000 Arsenic 5.0 13 16 16 16 16 13 16
Barium 64.4 350 350 400 400 10,000 433 820
Berylium 0.39 7.2 14 72 590 2,700 10 47
Calcium 8550 10,000
Chromium 13.9
Cobalt 8.3 30 20 Copper 29.0 50 270 270 270 10,000 50 1,720 Iron 21400 2,000 Lead 97.7 63 400 400 1,000 3,900 63 450
Magnesium 4450 Manganese 485 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 17.1 30 140 310 310 10,000 30 130
Potassium 839
Vanadium 20.2 100 39
Commercial Industrial ECO GW
Zinc 129 83 109 2200 10,000 10,000 10,000 109
Lead (TCLP) 0.039 5
Mercury 0.15 0.18 0.81 0.81 2.8 5.7 0.18 0.73 Fluoranthene 1.46 100 100 100 100 500 1,000 NS Naphthalene 0.942 12 100 100 500 1,000 NS 12 Phenanthrene 0.778 100 100 100 500 1,000 NS 1,000 Pyrene 1.25 100 100 100 500 1,000 NS 1,000 Chromium, Trivalent 13.9 30 36 180 1,500 6,800 41 NS Methylene Chloride 0.0026 0.05 51 100 500 1,000 12 0.05
Sample 4‐C‐7, 4‐G‐7
BAP Equivalent =0.93+0.1(1.15+1.12+0+0+0)+0.01(1.11) = 0.93+0.227+0.0111 = 1.1681
Commercial Industrial ECO GW
4,4’‐DDT 0.0329 0.0033 1.7 7.9 47 94 0.0033 136
PCB‐1254 0.301 0.1 1 1 1 25 1 3.2
Aluminum 10200 10,000 Arsenic 3.4 13 16 16 16 16 13 16
Barium 55.7 350 350 400 400 10,000 433 820
Commercial Industrial ECO GW
Berylium 0.31 7.2 14 72 590 2,700 10 47
Calcium 9030 10,000
Chromium 11.9
Cobalt 7.4 30 20 Copper 20.6 50 270 270 270 10,000 50 1,720 Iron 16300 2,000 Lead 66.5 63 400 400 1,000 3,900 63 450
Magnesium 4240 Manganese 349 1600 2,000 2,000 10,000 10,000 1600 2,000
Nickel 16.4 30 140 310 310 10,000 30 130
Potassium 741
Selenium 0.60 3.9 36 180 1,500 6,800 3.9 4
Vanadium 15.5 100 39 Zinc 73.0 83 109 2200 10,000 10,000 10,000 109
Lead (TCLP) 0.037 5
Mercury 0.12 0.18 0.81 0.81 2.8 5.7 0.18 0.73 Benzo(a)anthracene 1.15 1 1 1 5.6 11 NS 1 Benzo(a)pyrene 0.93 1 1 1 1 1.1 2.6 22
Benzo(b)fluoranthene 1.12 1 1 1 5.6 11 NS 1.7
Commercial Industrial ECO GW
Chrysene 1.11 1 1 3.9 56 110 NS 1 Fluoranthene 2.34 100 100 100 500 1,000 NS 1,000
Phenanthrene 1.72 100 100 100 500 1,000 NS 1,000 Pyrene 2.03 100 100 100 500 1,000 NS 1,000 Chromium, Trivalent 11.9 30 36 180 1,500 6,800 41 NS Methylene Chloride 0.002 0.05 51 100 500 1,000 12 0.05
Environmental
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420 COLUMBUS AVENEUE
VALHALLA, NY 10595
TEL.: (914) 769-6333
FAX: (914) 769-1137
10/19/21
USMA At West Point
Solid and Hazardous Waste Management, Environmental Division
Directorate of Public Works
Building 1236 Ordnance Road
USAG West Point
Attn: Bob Bailey
Environmental Protection Specialist/COR
Robert.r.bailey20civ@mail.mil
845-938-4074
Re: CEAC Soil Stockpile Training Area L Sampling and analysis
EMS of NY provided two field sampling technicians to collect soil samples from stock piled material that was located at Training area L. The material was removed and transported to the site from the CEAC Building site which is located on the main campus of West Point Military Academy. Samples were collected in the following manner:
At each stock pile, for every 1,000 cubic yards one, (1) 5-point composite sample, including a grab sample for volatile organic compounds (VOCs) was collected.
Soil stockpile is located in Training Area L accessed via Mineral Springs Road.
Stock Pile #1 4,000 cubic yards
Stock pile #2 3,000 cubic yards
Stock pile #3 5,000 cubic yards
Stock Pile #4 7,000 cubic yards
Sample grab locations and depths were selected randomly at the discretion of the sampler, which was biased towards visual and/or olfactory evidence of contamination and/or elevated photoionization detector (PID) readings. Each of the discrete samples was screened by a technician in the field with a PID and for observable signs of contamination (stains and/or odors).Diagrams of the soil piles showing approximate sample locations are included at the end of the report.
Samples were collected and analyzed for Target Compound List (TCL) volatile organic compounds (VOCs) via
EPA Method 8260D. All discrete point samples were mixed together to form a uniform composite sample and analyzed for semi-volatile organic compounds (SVOCs) via EPA Method 8270E, pesticides via EPA Method
8081A, herbicides via EPA Method 8151A, hex/trivalent chromium via EPA Method 7196A/3060A, EPH, TAL
Metals via EPA Method 6010D/7471B, RCRA List TCLP Metals via EPA Method 1311/6010D/7470A, ignitability, corrosivity, and reactivity via EPA Methods 1030A/9045D/SW846, and PCBs via EPA Method
8082A.
Stockpile samples were collected via hand tools (shovel, auger, trowel, bang-rod ) to a depth of 1 to 2 feet.
Material was stockpiled on 6-mil poly and the stockpile was divided into individual 1,000 cubic yard segments based on the length, width, and height. Samples were never secured from depths less than 1-foot from the stockpile surface. All sampling equipment was decontaminated between sample points utilizing an Alconox solution. Grab samples were collected at random depth intervals based on field observations of possible indicators of contamination. Once sample collection was completed, excess material recovered from the borings or excavated during test pit advancement was returned to the boring/test pit of origin on the same day.
Samples collected from each stock pile were as follows:
Stock pile #1 4,000 cubic yards, required 4 composite samples for all analytes except VOC’s and 4 grab samples for VOC’s.
mailto:Robert.r.bailey20civ@mail.mil
EMS OF NY, INC
420 COLUMBUS AVENUE
VALHALLA, NY 10595
TEL.: (914) 769-6333
FAX: (914) 769-1137
West Point CEAC Soil Stockpile
October 19, 2021
Stock pile #2 3,000 cubic yards, required 3 composite samples for all analytes except VOC’s and 3 grab samples for VOC’s
Stock pile #3 5,000 cubic yards, required 5 composite samples for all analytes except VOC’s and 5 grab samples
Stock pile #4 7,000 cubic yards, required 7 composite samples for all analytes except VOC’s and 7 grab samples
Should you need any further information regarding this please do not hesitate to contact me.
Sincerely
Environmental Management Solutions of New York, Inc.
Bob Friedl
Range L Stock Pile Location Diagram
Stock Pile #1 Stock Pile #2 Stock Pile #3
Stock Pile #4
NORTH
Stock Pile #1 Sample Locations
1-C-1
1-C-1
1-C-1
1-C-2
1-C-2
1-C-2
1-C-2 1-C-3
1-C-3
1-C-3
1-C-3
1-C-4
1-C-4
1-C-4
1-C-4
1-G-1
1-G-2
1-G-3
1-G-4
1-C-2
1-C-3 1-C-4
Stock Pile #2 Sample Locations
2-C-1
2-C-1
2-C-1
2-C-1
2-C-1
2-C-2
2-C-2
2-C-2
2-C-2
2-C-2
2-C-3
2-C-3
2-C-3
2-C-3
2-C-3
2-G-1
2-G-2
2-G-3
Stock Pile #3 Sample Locations
3-C-1 3-C-1 3-C-1 3-C-1 3-C-1
3-C-5 3-C-5 3-C-5 3-C-5 3-C-5
3-C-3 3-C-3 3-C-3 3-C-3 3-C-3
3-C-4 3-C-4 3-C-4 3-C-4 3-C-4
3-C-2 3-C-2 3-C-2 3-C-2 3-C-2
3-G-1
3-G-2
3-G-3
3-G-4
3-G-5
Stock Pile #4 Sample Locations
4—C-1
4-C-7
4-C-4
4-C-2
4-C-3
4-C-5
4-C-6
4-C-1 4-C-1 4-C-1 4-C-1
4-C-2 4-C-2 4-C-2 4-C-2
4-C-3 4-C-3 4-C-3 4-C-3
4-C-4 4-C-4 4-C-4 4-C-4
4-C-5 4-C-5 4-C-5 4-C-5
4-C-6 4-C-6 4-C-6 4-C-6
4-C-7 4-C-7 4-C-7 4-C-7
4-G-7
4-G-6
4-G-5
4-G-4
4-G-3
4-G-2
4-G-1
#=CL#
September 21, 2021
LIMS USE: FR -
LIMS OBJECT ID: 70186396
70186396 Project:
Pace Project No.:
RE:
EMS of NY 420 Columbus Avenue Valhalla, NY 10595
WEST POINT CEAC 9/3
Dear :
Enclosed are the analytical results for sample(s) received by the laboratory on September 03, 2021. The results relate only to the samples included in this report. Results reported herein conform to the applicable TNI/NELAC Standards and the laboratory's Quality Manual, where applicable, unless otherwise noted in the body of the report.
The test results provided in this final report were generated by each of the following laboratories within the Pace Network:
• Pace Analytical Services - Melville
• Pace National - Mt. Juliet
If you have any questions concerning this report, please feel free to contact me.
Sincerely, Nicolette M. Lovari nicolette.lovari@pacelabs.com
Project Manager (631)694-3040
Enclosures cc: Edison Dudley, EMS of NY Bob Friedl, EMS of NY Fabio Pedone, EMS of NY Kim Trapanese, EMS of NY Rob Vintayen, EMS of NY
REPORT OF LABORATORY ANALYSIS
This report shall not be reproduced, except in full, without the written consent of Pace Analytical Services, LLC.
Pace Analytical Services, LLC 575 Broad Hollow Road
Melville, NY 11747 (631)694-3040
#=CP#
CERTIFICATIONS
Pace Project No.:
Project:
70186396
WEST POINT CEAC 9/3
Pace Analytical Services Long Island 575 Broad Hollow Rd, Melville, NY 11747 Connecticut Certification #: PH-0435 Delaware Certification # NY 10478 Maryland Certification #: 208 Massachusetts Certification #: M-NY026 New Hampshire Certification #: 2987
New Jersey Certification #: NY158 New York Certification #: 10478 Primary Accrediting Body Pennsylvania Certification #: 68-00350 Rhode Island Certification #: LAO00340 Virginia Certification # 460302
Pace Analytical Services National 12065 Lebanon Road, Mt. Juliet, TN 37122 Alabama Certification #: 40660 Alaska Certification 17-026 Arizona Certification #: AZ0612 Arkansas Certification #: 88-0469 California Certification #: 2932 Canada Certification #: 1461.01 Colorado Certification #: TN00003 Connecticut Certification #: PH-0197 DOD Certification: #1461.01
EPA# TN00003
Florida Certification #: E87487 Georgia DW Certification #: 923 Georgia Certification: NELAP Idaho Certification #: TN00003 Illinois Certification #: 200008 Indiana Certification #: C-TN-01 Iowa Certification #: 364 Kansas Certification #: E-10277 Kentucky UST Certification #: 16 Kentucky Certification #: 90010 Louisiana Certification #: AI30792 Louisiana DW Certification #: LA180010 Maine Certification #: TN0002 Maryland Certification #: 324 Massachusetts Certification #: M-TN003 Michigan Certification #: 9958 Minnesota Certification #: 047-999-395 Mississippi Certification #: TN00003 Missouri Certification #: 340 Montana Certification #: CERT0086 Nebraska Certification #: NE-OS-15-05
Nevada Certification #: TN-03-2002-34 New Hampshire Certification #: 2975 New Jersey Certification #: TN002 New Mexico DW Certification New York Certification #: 11742 North Carolina Aquatic Toxicity Certification #: 41 North Carolina Drinking Water Certification #: 21704 North Carolina Environmental Certificate #: 375 North Dakota Certification #: R-140 Ohio VAP Certification #: CL0069 Oklahoma Certification #: 9915 Oregon Certification #: TN200002 Pennsylvania Certification #: 68-02979 Rhode Island Certification #: LAO00356 South Carolina Certification #: 84004 South Dakota Certification Tennessee DW/Chem/Micro Certification #: 2006 Texas Certification #: T 104704245-17-14 Texas Mold Certification #: LAB0152 USDA Soil Permit #: P330-15-00234 Utah Certification #: TN00003 Virginia Certification #: VT2006 Vermont Dept. of Health: ID# VT-2006 Virginia Certification #: 460132 Washington Certification #: C847 West Virginia Certification #: 233 Wisconsin Certification #: 998093910 Wyoming UST Certification #: via A2LA 2926.01 A2LA-ISO 17025 Certification #: 1461.01 A2LA-ISO 17025 Certification #: 1461.02 AIHA-LAP/LLC EMLAP Certification #:100789
REPORT OF LABORATORY ANALYSIS
This report shall not be reproduced, except in full, without the written consent of Pace Analytical Services, LLC.
Pace Analytical Services, LLC 575 Broad Hollow Road
Melville, NY 11747
#=SA#
SAMPLE ANALYTE COUNT
Pace Project No.:
Project:
70186396
WEST POINT CEAC 9/3
Lab ID Sample ID Method Analytes Reported LaboratoryAnalysts
70186396001 1-C-1 EPA 8151A 11 PANJMB
EPA 8081B 23 PACE-MVNJS
EPA 8082A 9 PACE-MVJMD
EPA 6010C 22 PACE-MVCAM
EPA 6010C 7 PACE-MVCAM
EPA 7470A 1 PACE-MVAKS
EPA 7471B 1 PACE-MVAKS
EPA 8270D 73 PACE-MVTJD
ASTM D2216-05M 1 PACE-MVIT1
1030 1 PACE-MVHMB
SM 2540G 1 PANCMK
EPA 7196A 1 PACE-MVHMH
SW-846 7.3.4.2 1 PACE-MVHA1
EPA 9045D 2 PACE-MVDJM
Trivalent Chromium Calculation 1 PACE-MVMEM1
SW-846 7.3.3.2 1 PACE-MVHA1
70186396002 1-G-1 EPA 8260C 70 PACE-MVKGG
EPA 8260 1 PACE-MVBBL
ASTM D2216-05M 1 PACE-MVIT1
70186396003 1-C-2 EPA 8151A 11 PANJMB
EPA 8081B 23 PACE-MVNJS
EPA 8082A 9 PACE-MVJMD
EPA 6010C 22 PACE-MVCAM
EPA 6010C 7 PACE-MVCAM
EPA 7470A 1 PACE-MVAKS
EPA 7471B 1 PACE-MVAKS
EPA 8270D 74 PACE-MVTJD
ASTM D2216-05M 1 PACE-MVIT1
1030 1 PACE-MVHMB
SM 2540G 1 PANCMK
EPA 7196A 1 PACE-MVHMH
SW-846 7.3.4.2 1 PACE-MVHA1
EPA 9045D 2 PACE-MVDJM
Trivalent Chromium Calculation 1 PACE-MVMEM1
SW-846 7.3.3.2 1 PACE-MVHA1
70186396004 1-G-2 EPA 8260C 70 PACE-MVKGG
EPA 8260 1 PACE-MVBBL
REPORT OF LABORATORY ANALYSIS
This report shall not be reproduced, except in full, without the written consent of Pace Analytical Services, LLC.
Pace Analytical Services, LLC 575 Broad Hollow Road
Melville, NY 11747
Pace Project No.:
Project:
70186396
WEST POINT CEAC 9/3
Lab ID Sample ID Method Analytes Reported LaboratoryAnalysts
ASTM D2216-05M 1 PACE-MVIT1
70186396005 1-C-3 EPA 8151A 11 PANJMB
EPA 8081B 23 PACE-MVNJS
EPA 8082A 9 PACE-MVJMD
EPA 6010C 22 PACE-MVCAM
EPA 6010C 7 PACE-MVCAM
EPA 7470A 1 PACE-MVAKS
EPA 7471B 1 PACE-MVAKS
EPA 8270D 75 PACE-MVTJD
ASTM D2216-05M 1 PACE-MVIT1
1030 1 PACE-MVHMB
SM 2540G 1 PANCMK
EPA 7196A 1 PACE-MVHMH
SW-846 7.3.4.2 1 PACE-MVHA1
EPA 9045D 2 PACE-MVDJM
Trivalent Chromium Calculation 1 PACE-MVMEM1
SW-846 7.3.3.2 1 PACE-MVHA1
70186396006 1-G-3 EPA 8260C 70 PACE-MVKGG
EPA 8260 1 PACE-MVBBL
ASTM D2216-05M 1 PACE-MVIT1
70186396007 1-C-4 EPA 8151A 11 PANJMB
EPA 8081B 23 PACE-MVNJS
EPA 8082A 9 PACE-MVJMD
EPA 6010C 22 PACE-MVCAM
EPA 6010C 7 PACE-MVCAM
EPA 7470A 1 PACE-MVAKS
EPA 7471B 1 PACE-MVAKS
EPA 8270D 74 PACE-MVTJD
ASTM D2216-05M 1 PACE-MVIT1
1030 1 PACE-MVHMB
SM 2540G 1 PANCMK
EPA 7196A 1 PACE-MVHMH
SW-846 7.3.4.2 1 PACE-MVHA1
EPA 9045D 2 PACE-MVDJM
Trivalent Chromium Calculation 1 PACE-MVMEM1
SW-846 7.3.3.2 1 PACE-MVHA1
70186396008 1-G-4 EPA 8260C 70 PACE-MVKGG
REPORT OF LABORATORY ANALYSIS
This report shall not be reproduced, except in full, without the written consent of Pace Analytical Services, LLC.
Pace Analytical Services, LLC 575 Broad Hollow Road
Melville, NY 11747
Pace Project No.:
Project:
70186396
WEST POINT CEAC 9/3
Lab ID Sample ID Method Analytes Reported LaboratoryAnalysts
EPA 8260 1 PACE-MVBBL
ASTM D2216-05M 1 PACE-MVIT1
PACE-MV = Pace Analytical Services - Melville PAN = Pace National - Mt. Juliet
REPORT OF LABORATORY ANALYSIS
This report shall not be reproduced, except in full, without the written consent of Pace Analytical Services, LLC.
Pace Analytical Services, LLC 575 Broad Hollow Road
Melville, NY 11747
#=AR#
ANALYTICAL RESULTS
Pace Project No.:
Project:
70186396
WEST POINT CEAC 9/3
Sample: 1-C-1 Lab ID: 70186396001 Collected: 09/03/21 09:00 Received: 09/03/21 14:32 Matrix: Solid Results reported on a "dry weight" basis and are adjusted for percent moisture, sample size and any dilutions.
Parameters Results Units DF Prepared Analyzed CAS No. QualReport Limit
Analytical Method: EPA 8151A Preparation Method: 8151A Pace National - Mt. Juliet
Chlorinated…
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