• ASTM D5185-09

ASTM D5185-09

Standard Test Method for Determination of Additive Elements, Wear Metals, and Contaminants in Used Lubricating Oils and Determination of Selected Elements in Base Oils by Inductively Coupled Plasma Atomic Emission Spectrometry (ICP-AES)

ASTM International , 04/15/2009

Publisher: ASTM

File Format: PDF

$30.00$60.00


1.1 This test method covers the determination of additive elements, wear metals, and contaminants in used lubricating oils by inductively coupled plasma atomic emission spectrometry (ICP-AES). The specific elements are listed in Table 1.

1.2 This test method covers the determination of selected elements, listed in Table 1, in re-refined and virgin base oils.

1.3 For analysis of any element using wavelengths below 190 nm, a vacuum or inert-gas optical path is required. The determination of sodium and potassium is not possible on some instruments having a limited spectral range.

1.4 This test method uses oil-soluble metals for calibration and does not purport to quantitatively determine insoluble particulates. Analytical results are particle size dependent, and low results are obtained for particles larger than a few micrometers.

1.5 Elements present at concentrations above the upper limit of the calibration curves can be determined with additional, appropriate dilutions and with no degradation of precision.

1.6 For elements other than calcium, sulfur, and zinc, the low limits listed in Table 2 and Table 3 were estimated to be ten times the repeatability standard deviation. For calcium, sulfur, and zinc, the low limits represent the lowest concentrations tested in the interlaboratory study.

1.7 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

1.8 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use. Specific warning statements are given in 6.1, 8.2, and 8.4.

TABLE 1 Elements Determined and Suggested WavelengthsA

Element Wavelength, nm
Aluminum 308.22, 396.15, 309.27
Barium 233.53, 455.40, 493.41
Boron 249.77
Calcium 315.89, 317.93, 364.44, 422.67
Chromium 205.55, 267.72
Copper 324.75
Iron 259.94, 238.20
Lead 220.35
Magnesium 279.08, 279.55, 285.21
Manganese 257.61, 293.31, 293.93
Molybdenum 202.03, 281.62
Nickel 231.60, 227.02, 221.65
Phosphorus 177.51, 178.29, 213.62, 214.91, 253.40
Potassium 766.49
Sodium 589.59
Silicon 288.16, 251.61
Silver 328.07
Sulfur 180.73, 182.04, 182.62
Tin 189.99, 242.95
Titanium 337.28, 350.50, 334.94
Vanadium 292.40, 309.31, 310.23, 311.07
Zinc 202.55, 206.20, 213.86, 334.58, 481.05

A These wavelengths are only suggested and do not represent all possible choices.

TABLE 2 Repeatability

Element Range, mg/kg Repeatability, μg/gA
Aluminum 6-40 0.71 X0.41
Barium 0.5-4 0.24 X0.66
Boron 4-30 0.26 X
Calcium 40-9000 0.0020 X1.4
Chromium 1-40 0.17 X0.75
Copper 2-160 0.12 X0.91
Iron 2-140 0.13 X0.80
Lead 10-160 1.6 X0.32
Magnesium 5-1700 0.16 X0.86
Manganese 5-700 0.010 X1.3
Molybdenum 5-200 0.29 X0.70
Nickel 5-40 0.52 X0.49
Phosphorus 10-1000 1.3 X0.58
Potassium 40-1200 3.8 X0.33
Silicon 8-50 1.3 X0.26
Silver 0.5-50 0.15 X0.83
Sodium 7-70 0.49 X0.66
Sulfur 900-6000 0.49 X0.81
Tin 10-40 2.4 X0.17
Titanium 5-40 0.54 X0.37
Vanadium 1-50 0.061 X
Zinc 60-1600 0.15 X0.88

A where: X = mean concentration, μg/g.

TABLE 3 Reproducibility

Element Range, mg/kg Reproducibility, μg/gA
Aluminum 6-40 3.8 X0.26
Barium 0.5-4 0.59 X0.92
Boron 4-30 13 X0.01
Calcium 40-9000 0.015 X1.3
Chromium 1-40 0.81 X0.61
Copper 2-160 0.24 X
Iron 2-140 0.52 X0.80
Lead 10-160 3.0 X0.36
Magnesium 5-1700 0.72 X0.77
Manganese 5-700 0.13 X1.2
Molybdenum 5-200 0.64 X0.71
Nickel 5-40 1.5 X0.50
Phosphorus 10-1000 4.3 X0.50
Potassium 40-1200 6.6 X0.29
Silicon 8-50 2.9 X0.39
Silver 0.5-50 0.35 X
Sodium 7-70 1.1 X0.71
Sulfur 900-6000 1.2 X0.75
Tin 10-40 2.1 X0.62
Titanium 5-40 2.5 X0.47
Vanadium 1-50 0.28 X1.1
Zinc 60-1600 0.083 X1.1

A where: X = mean concentration, μg/g.

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