ASTM D7757-22 PDF
Standard Test Method for Silicon in Gasoline and Related Products by Monochromatic Wavelength Dispersive X-ray Fluorescence Spectrometry
Standard Test Method for Silicon in Gasoline and Related Products by Monochromatic Wavelength Dispersive X-ray Fluorescence Spectrometry
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 10
- Дата публикации:
- 1 ноября 2022 г.
- Издание:
- D7757
- ICS:
- 75.160.20
SIGNIFICANCE AND USE 5.1 This test method provides rapid and precise measurement of total silicon in naphthas, gasoline, gasoline-ethanol blends, RFG, ethanol and ethanol-fuel blends, and toluene with minimum sample preparation. Typical analysis time is 5 min to 10 min per sample. 5.2 Excitation by monochromatic X-rays reduces background, simplifies matrix correction, and increases the signal/background ratio compared to polychromatic excitation used in conventional WDXRF techniques.3 5.3 Silicone oil defoamer can be added to coker feedstocks to minimize foaming in the coker. Residual silicon in the coker naphtha can adversely affect downstream catalytic processing of the naphtha. This test method provides a means to determine the silicon content of the naphtha. 5.4 Silicon contamination of gasoline, gasoline-ethanol blends, denatured ethanol, and their blends has led to fouled vehicle components (for example, spark plugs, exhaust oxygen sensors, catalytic converters) requiring parts replacement and repairs. Finished gasoline, gasoline-ethanol blends, and ethanol-fuel blends can come into contact with silicon a number of ways. Waste hydrocarbon solvents such as toluene can be added to gasoline. Such solvents can contain soluble silicon compounds. Silicon-based antifoam agents can be used in ethanol plants, which then pass silicon on to the finished ethanol-fuel blend. This test method can be used to determine if gasoline, gasoline-ethanol blends, and ethanol-fuel blends meet specifications with respect to silicon content of the fuel, and for resolution of customer problems. 5.5 Some silicon compounds covered by this test method are significantly more volatile than the silicon compounds typically used for the preparation of the calibration standards. Volatile compounds may not meet the stated precision from this test method because of selective loss of light materials during the analysis. SCOPE 1.1 This test method covers the determination of total silicon by monochromatic, wavelength-dispersive X-ray fluorescence (MWDXRF) spectrometry in naphthas, gasoline, gasoline-ethanol blends, reformulated gasoline (RFG), ethanol and ethanol-fuel blends, and toluene at concentrations of 3 mg/kg to 100 mg/kg. The precision of this test method was determined by an interlaboratory study using representative samples of the liquids described in 1.1 and 1.2. The pooled limit of quantitation (PLOQ) was estimated to be 3 mg/kg. Note 1: Volatile samples such as high-vapor-pressure gasolines or light hydrocarbons might not meet the stated precision because of the evaporation of light components during the analysis. Note 2: Aromatic compounds such as toluene are under the jurisdiction of Committee D16 on Aromatic Hydrocarbons and Related Chemicals. However, toluene can be a contributor to silicon contamination in gasoline (see 5.4), thus its inclusion in this test method. 1.2 Gasoline samples containing ethanol and other oxygenates may be analyzed with this test method provided the matrix of the calibration standards is either matched to the sample matrices or the matrix correction described in Annex A1 is applied to the results. The conditions for matrix matching and matrix correction are provided Section 6, Interferences. 1.3 Samples with silicon concentrations above 100 mg/kg can be analyzed after dilution with appropriate solvent. The precision and bias of silicon determinations on diluted samples have not been determined and may not be the same as shown for neat samples (Section 17). 1.4 A fundamental assumption in this test method is that the standard and sample matrices are well matched, or that the matrix differences are accounted for (see 14.5). Matrix mismatch can be caused by C/H ratio differences between samples and standards or by the presence of other interfering heteroatoms; observe the cautions and recommendations in Section 6. 1.5 The values stated in SI units are to be regarded as standard...
Abstract
Overview
ASTM D7757-22 sets the standard test method for determining total silicon in gasoline, gasoline-ethanol blends, naphthas, reformulated gasoline (RFG), ethanol, ethanol-fuel blends, and toluene using monochromatic wavelength dispersive X-ray fluorescence spectrometry (MWDXRF). The method provides rapid, precise analysis with minimal sample preparation, supporting accurate silicon measurement at concentrations from 3 mg/kg up to 100 mg/kg. This test is essential for monitoring silicon contamination that can negatively impact fuel quality and automotive components.
Key Topics
- Rapid, Precise Silicon Measurement: Analysis can be completed within 5 to 10 minutes per sample, making it suitable for high-throughput environments.
- Applicable Fuels and Solvents: The method covers naphthas, gasoline, gasoline-ethanol blends, RFG, ethanol, ethanol-fuel blends, and toluene.
- Monochromatic X-ray Excitation: This technology reduces background interference, improves the signal-to-noise ratio, and simplifies matrix corrections compared to conventional WDXRF methods.
- Matrix Matching and Corrections: Proper matrix matching or correction is crucial for accurate results, especially when testing oxygenate-rich fuels or when sample composition differs significantly from calibration standards.
- Detection Range: The test method quantifies silicon content within 3 mg/kg to 100 mg/kg, with capabilities for higher concentrations through sample dilution.
- Quality Assurance: The method includes detailed guidance for calibration, drift correction, and use of quality control samples to ensure consistent, reliable measurements.
Applications
- Fuel Quality Control: Routine use in refineries and blending facilities to ensure that gasoline, gasoline-ethanol blends, and ethanol-fuel blends meet regulatory specifications for silicon content.
- Contamination Troubleshooting: Identifies silicon contamination sources that can cause engine and vehicle component failures, such as spark plug fouling or catalytic converter damage.
- Process Monitoring: Evaluates the impact of silicon-based antifoam agents or waste solvents (like toluene), which can introduce silicon to fuels.
- Downstream Protection: Prevents adverse effects of residual silicon from coker units on downstream catalytic processing by controlling silicon in naphthas.
- Compliance: Assists laboratories in demonstrating compliance with fuel specifications and in resolving customer or regulatory concerns regarding silicon content.
- Research and Development: Supports development of new fuel formulations and quality assurance plans that minimize silicon risks.
Related Standards
- ASTM D4057: Manual Sampling of Petroleum and Petroleum Products
- ASTM D4175: Terminology for Petroleum Products, Liquid Fuels, and Lubricants
- ASTM D4177: Automatic Sampling of Petroleum and Petroleum Products
- ASTM D4806: Specification for Denatured Fuel Ethanol for Blending with Gasolines
- ASTM D5798: Specification for Ethanol Fuel Blends for Flexible-Fuel Engines
- ASTM D6299: Statistical Quality Assurance and Control Charting in Laboratories
- ASTM D6300: Precision and Bias Data for Test Methods
- ASTM D7343: Optimization and Validation of X-ray Fluorescence Spectrometry Methods
Practical Value
The ASTM D7757-22 standard is critical for laboratories, fuel producers, and quality control specialists concerned with maintaining the performance, reliability, and compliance of modern fuels. Its adoption helps minimize vehicle maintenance costs, supports effective troubleshooting of silicon-related issues, and ensures adherence to international fuel quality standards. The use of MWDXRF provides a precise, robust, and efficient tool for managing silicon in complex hydrocarbon matrices, making ASTM D7757-22 an essential resource for fuel testing and quality management programs.
Технические детали
- Технический комитет
- D02 - Petroleum Products, Liquid Fuels, and Lubricants
- SKU
- ASTM D7757-22
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