ISO 8691:1994 PDF
Petroleum products — Low levels of vanadium in liquid fuels — Determination by flameless atomic absorption spectrometry after ashing
Petroleum products — Low levels of vanadium in liquid fuels — Determination by flameless atomic absorption spectrometry after ashing
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 4
- Дата публикации:
- 1 декабря 1994 г.
- Издание:
- ISO IS 8691 edition 1 version 1
- ICS:
- 75.160.20
Specifies a method for determining the vanadium content in the range of 0,4 mg/kg to 4,0 mg/kg in gas turbine fuels and domestic fuel oils by means of flameless atomic absorption spectrometry.
Abstract
Overview
ISO 8691:1994 is an international standard developed by the International Organization for Standardization (ISO) that specifies a precise analytical method for determining low levels of vanadium in liquid petroleum fuels. Specifically, it covers the quantification of vanadium content ranging from 0.4 mg/kg to 4.0 mg/kg in gas turbine fuels and domestic fuel oils. The method involves flameless atomic absorption spectrometry (AAS) after an ashing process, which ensures accurate detection of vanadium in complex liquid fuel matrices.
This standardized test method plays a critical role in fuel quality control to prevent operational issues related to vanadium contamination, such as deposits or corrosion in turbine engines and heating systems.
Key Topics
-
Scope Applies to the measurement of low vanadium concentrations in liquid fuels including gas turbine fuels and domestic fuel oils, focusing on a range of 0.4 to 4.0 mg/kg.
-
Analytical Principle The fuel sample is first incinerated (ashed) in a platinum or silica crucible at approximately 500°C. The resulting ash is dissolved in dilute hydrochloric acid to prepare a solution suitable for analysis by flameless atomic absorption spectrometry. This technique uses a graphite furnace to atomize the vanadium for precise absorbance measurements at a wavelength of 318.3 nm.
-
Sample Preparation Homogenization of the fuel sample followed by precise weighing and controlled ashing is required. The dissolution of the ash is done in 1 mol/L hydrochloric acid.
-
Instrumentation and Reagents Key equipment includes a graphite furnace atomic absorption spectrometer with a vanadium hollow cathode lamp, platinum or silica crucibles, and a muffle furnace. High purity reagents such as hydrochloric acid, sulfuric acid, and ammonium metavanadate are used for calibration and acid digestion.
-
Calibration and Measurement Calibration standards are prepared from vanadium stock solutions to create a calibration curve between 0.4 and 4.0 mg/kg. The absorbance readings of the samples are compared against this curve to quantify vanadium.
-
Accuracy and Precision The method demonstrates good repeatability (difference less than 0.1 mg/kg on consecutive tests by the same operator) and reproducibility (difference less than 0.2 mg/kg across different laboratories). These performance characteristics ensure reliable monitoring of vanadium content.
-
Safety and Handling The standard highlights the importance of adhering to safety practices due to the involvement of high-temperature incineration, strong acids, and potentially hazardous materials.
Applications
-
Fuel Quality Control Monitoring and controlling vanadium levels in gas turbine fuels helps avoid operational problems such as nozzle fouling and corrosion caused by vanadium compounds during combustion.
-
Domestic Fuel Oils Accurate vanadium measurements ensure that fuel oils used for heating do not exceed contamination levels that could lead to equipment damage or inefficiency.
-
Environmental Compliance Tracking vanadium concentrations supports compliance with environmental regulations and industry standards focused on emissions and residue management.
-
Research and Development Laboratories engaged in fuel formulation and additive development use this reliable method for assessing trace vanadium to optimize product performance and stability.
Related Standards
- ISO 3170:1988 - Petroleum liquids - Manual sampling
- ISO 3171:1988 - Petroleum liquids - Automatic pipeline sampling
- ISO 3696:1987 - Water for analytical laboratory use - Specifications and test methods
- ISO 1042:1983 - Laboratory glassware - Volumetric flasks
- ISO 385-1:1984 - Laboratory glassware - Burettes
These standards complement ISO 8691:1994 by providing guidelines on sample handling, preparation, and quality control of reagents, ensuring the accuracy and reliability of vanadium determination in liquid fuels.
Keywords: ISO 8691, vanadium determination, liquid fuels, petroleum products, atomic absorption spectrometry, gas turbine fuel analysis, fuel oil quality, trace metal analysis, fuel contamination, flameless atomic absorption.
Технические детали
- Технический комитет
- ISO/TC 28 - Petroleum and related products, fuels and lubricants from natural or synthetic sources
- SKU
- ISO 8691:1994
Похожие стандарты
Стандарты, упомянутые в описании
ISO 3170:1988
ОтменёнPetroleum liquids — Manual sampling
ISO 3171:1988
ДействующийPetroleum liquids — Automatic pipeline sampling
Overview ISO 3171:1988 - Petroleum liquids - Automatic pipeline sampling provides internationally accepted guidance for obtaining representative automatic samples of crude oil and liquid petroleum pr…
ISO 3696:1987
ДействующийWater for analytical laboratory use — Specification and test methods
Overview ISO 3696:1987 is an international standard established by the International Organization for Standardization (ISO) that specifies the requirements and test methods for water used in analytic…
ISO 1042:1983
ОтменёнLaboratory glassware — One-mark volumetric flasks
ISO 385-1:1984
ОтменёнLaboratory glassware — Burettes — Part 1: General requirements
SIST ISO 8691:1996
ДействующийPetroleum products -- Low levels of vanadium in liquid fuels -- Determination by flameless atomic absorption…
Overview SIST ISO 8691:1996 is an international standard developed by the International Organization for Standardization (ISO) that specifies a precise analytical method for determining low levels of…