ISO 22854:2021
Liquid petroleum products — Determination of hydrocarbon types and oxygenates in automotive-motor gasoline and in ethanol (E85) automotive fuel — Multidimensional gas chromatography method
Liquid petroleum products — Determination of hydrocarbon types and oxygenates in automotive-motor gasoline and in ethanol (E85) automotive fuel — Multidimensional gas chromatography method
- Статус документа:
- Отменён
- Формат:
- Электронный (PDF)
- Количество страниц:
- 21
- Дата публикации:
- 21 июля 2021 г.
- Издание:
- ISO IS 22854 edition 4 version 1
- ICS:
- 75.080
This document specifies the gas chromatographic (GC) method for the determination of saturated, olefinic and aromatic hydrocarbons in automotive motor gasoline and ethanol (E85) automotive fuel. Additionally, the benzene and toluene content, oxygenated compounds and the total oxygen content can be determined. NOTE 1 For the purposes of this document, the terms % (m/m) and % (V/V) are used to represent respectively the mass fraction, w, and the volume fraction, φ. This document defines two procedures, A and B. Procedure A is applicable to automotive motor gasoline with total aromatics of 19,32 % (V/V) up to 46,29 % (V/V); total olefins from 0,40 % (V/V) up to 26,85 % (V/V); oxygenates from 0,61 % (V/V) up to 9,85 % (V/V); oxygen content from 1,50 % (m/m) to 12,32 % (m/m); benzene content from 0,38 % (V/V) up to 1,98 % (V/V) and toluene content from 5,85 % (V/V) up to 31,65 % (V/V). The method has also been tested for individual oxygenates. A precision has been determined for a total volume of methanol from 1,05 % (V/V) up to 16,96 % (V/V); a total volume of ethanol from 0,50 % (V/V) up to 17,86 % (V/V); a total volume of MTBE from 0,99 % (V/V) up to 15,70 % (V/V), a total volume of ETBE from 0,99 % (V/V) up to 15,49 % (V/V), a total volume of TAME from 0,99 % (V/V) up to 5,92 % (V/V), and a total volume of TAEE from 0,98 % (V/V) up to 15,59 % (V/V). Although this test method can be used to determine higher-olefin contents of up to 50 % (V/V), the precision for olefins was tested only in the range from 0,40 % (V/V) to 26,85 % (V/V). Although specifically developed for the analysis of automotive motor gasoline that contains oxygenates, this test method can also be applied to other hydrocarbon streams having similar boiling ranges, such as naphthas and reformates. NOTE 2 For Procedure A, applicability of this document has also been verified for the determination of n-propanol, acetone, and di-isopropyl ether (DIPE). However, no precision data have been determined for these compounds. Procedure B describes the analysis of oxygenated groups (ethanol, methanol, ethers, C3 – C5 alcohols) in ethanol (E85) automotive fuel containing ethanol between 50 % (V/V) and 85 % (V/V). The gasoline is diluted with an oxygenate-free component to lower the ethanol content to a value below 20 % (V/V) before the analysis by GC. The sample can be fully analysed including hydrocarbons. Precision data for the diluted sample are only available for the oxygenated groups. NOTE 3 For Procedure B, the precision can be used for an ethanol fraction from about 50 % up to 85 % (V/V). For the ether fraction, the precision as specified in Table 6 can be used for samples containing at least 11 % (V/V) of ethers. For the higher alcohol fraction, too few data were obtained to derive a full precision statement and the data presented in Table 6 are therefore only indicative. NOTE 4 An overlap between C9 and C10 aromatics can occur. However, the total is accurate. Isopropyl benzene is resolved from the C8 aromatics and is included with the other C9 aromatics.
Abstract
Overview
ISO 22854:2021 - "Liquid petroleum products - Determination of hydrocarbon types and oxygenates in automotive‑motor gasoline and in ethanol (E85) automotive fuel - Multidimensional gas chromatography method" - specifies a multidimensional gas chromatography (GC) procedure for quantifying hydrocarbon groups and oxygenates in automotive fuels. The standard covers saturated, olefinic and aromatic hydrocarbons, benzene and toluene, individual oxygenates (alcohols and ethers) and total oxygen content, using column‑coupling/column‑switching GC with flame ionization detector (FID).
Key technical topics and requirements
- Analytical principle: multidimensional GC separation (column coupling/switching) with FID detection; results reported as mass fraction (% m/m) and volume fraction (% V/V) after application of relative response factors and density conversion.
- Two procedures defined:
- Procedure A: for automotive gasoline with defined ranges (e.g., total aromatics ≈ 19.32–46.29 % V/V; olefins ≈ 0.40–26.85 % V/V; oxygenates ≈ 0.61–9.85 % V/V; benzene, toluene within stated ranges). Precision data available for common oxygenates (methanol, ethanol, MTBE, ETBE, TAME, TAEE) across specified ranges.
- Procedure B: for ethanol (E85) fuels (ethanol 50–85 % V/V). Sample is diluted with an oxygenate‑free component to <20 % V/V ethanol prior to GC; analysis can include hydrocarbons, but precision data for diluted samples are provided primarily for oxygenated groups.
- Performance notes: method can determine higher‑olefin contents up to 50 % V/V, though precision was validated for olefins only up to ≈26.85 % V/V. Overlap between C9 and C10 aromatics may occur (total remains accurate); isopropyl benzene is resolved and included with C9 aromatics.
- Quality controls: instrument conditioning, verification, validation steps, and chromatogram examples are provided to ensure correct identification - particularly important for oxygenates with variable response factors.
Practical applications
- Routine fuel quality testing in refinery laboratories, independent testing labs and fuel distributors.
- Regulatory and compliance testing for gasoline and E85 specifications (benzene/toluene limits, oxygenate content, total oxygen).
- Research and development where detailed hydrocarbon group composition is required (e.g., blending, additive development).
- Applicable to other hydrocarbon streams with similar boiling ranges such as naphthas and reformates.
Who should use ISO 22854:2021
- Fuel chemists and chromatographers performing hydrocarbon and oxygenate analysis.
- Quality assurance teams in petroleum and biofuel supply chains.
- Accreditation bodies, regulatory agencies and laboratories needing harmonized GC methods for automotive fuels.
Related standards
- ISO 3170 / ISO 3171 (sampling of petroleum liquids)
- Harmonized with ASTM D6839 (method alignment and comparability)
Keywords: ISO 22854:2021, multidimensional gas chromatography, GC method, automotive motor gasoline, E85, oxygenates, benzene, toluene, MTBE, ETBE, methanol, ethanol, fuel analysis.
Технические детали
- Технический комитет
- ISO/TC 28 - Petroleum and related products, fuels and lubricants from natural or synthetic sources
- SKU
- ISO 22854:2021
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