ASTM D5075-01(2022) PDF
Standard Test Method for Nicotine and 3-Ethenylpyridine in Indoor Air
Standard Test Method for Nicotine and 3-Ethenylpyridine in Indoor Air
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 8
- Дата публикации:
- 1 марта 2022 г.
- Издание:
- D5075
- ICS:
- 65.160
SIGNIFICANCE AND USE 5.1 In order to estimate ETS concentrations, there needs to be a marker or tracer for ETS that is unique or highly specific to tobacco smoke, in sufficient concentrations in air to be measured easily at realistic smoking rates, and in constant proportion to the other components of ETS for a variety of tobacco blends and environmental conditions. Nicotine and 3-ethenylpyridine have been used as tracers of the vapor phase of ETS. Nicotine is the major alkaloid of tobacco and a major constituent of ETS. The determination of nicotine concentration has often been used to estimate the concentration of ETS; however, due to its unpredictable decay kinetics, nicotine may not be an ideal tracer. Because nicotine readily adsorbs to building materials and room furnishings and is depleted from ETS at a rate faster than most other components, some have suggested that nicotine concentrations underestimate ETS concentrations. Although this is true in many environments during the generation of smoke, the converse is true in environments with a recent past history of smoking. The adsorbed nicotine slowly desorbs over time, resulting in an overestimation of ETS concentrations. Thus, measured concentrations of nicotine precisely assess only airborne nicotine and indicate only that smoking has taken place; they do not necessarily indicate the presence, and certainly not the concentrations, of other ETS constituents. 3-Ethenylpyridine, on the other hand, has been shown to track exactly the vapor phase of ETS as measured by CO and FID response (3). It is for these reasons that 3-ethenylpyridine may be a better tracer of ETS (1, 4, 5). The ETS at high concentrations is known to be annoying and irritating to individuals, and concerns over potential health effects have also been expressed. There is a definite need to have reliable methods for the estimation of ETS levels in order to evaluate its effect. The NIOSH has previously set a recommended exposure limit (REL) for nicotine in the workp... SCOPE 1.1 This test method covers the sampling/analysis of nicotine and 3-ethenylpyridine (3-EP) in indoor air. This test method is based upon the collection of nicotine and 3-EP by adsorption on a sorbent resin, extraction of nicotine and 3-EP from the sorbent resin, and determination by gas chromatography (GC) with nitrogen selective detection (1).2 1.2 The active samplers consist of an macroreticular polystyrene-divinylbenzene copolymer (for example, XAD-4) sorbent tube attached to a sampling pump. Macroreticular polystyrene-divinylbenzene copolymer is referred to “sorbent resin” throughout this method. This test method is applicable to personal or area sampling. 1.3 This test method is limited in sample duration by the capacity of the sorbent tube for nicotine (about 300 μg). This test method has been evaluated up to 24-h sample duration; however, samples are typically acquired for at least 1 h (sometimes only 1 h) (2). 1.4 For this test method, limits of detection (LOD) and quantitation (LOQ) for nicotine at a sampling rate of 1.5 L/min are, respectively, 0.11 μg/m3 and 0.37 μg/m 3 for 1-h sample duration and 0.01 μg/m3 and 0.05 μg/m3 for 8-h sample duration. The LOD and LOQ for 3-EP at a sampling rate of 1.5 L/min are, respectively, 0.06 μg/m 3 and 0.19 μg/m3 for 1-h sample duration and 0.01 μg/m3 and 0.02 μg/m3 for 8-h sample duration (2). Both LOD and LOQ can be reduced by increasing the sensitivity of the thermionic specific detector. 1.5 Units—The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard. 1.6 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, health, and environmental practices and determine the applicability of regulatory limitations prior to use. Specific precautionary infor...
Abstract
Overview
ASTM D5075-01(2022), Standard Test Method for Nicotine and 3-Ethenylpyridine in Indoor Air, defines standardized procedures for the sampling and analysis of nicotine and 3-ethenylpyridine (3-EP) in indoor environments. This test method was developed to estimate concentrations of environmental tobacco smoke (ETS), often referred to as secondhand smoke, by targeting marker compounds that are specific to tobacco smoke.
The method involves collecting airborne nicotine and 3-EP on a macroreticular polystyrene-divinylbenzene copolymer sorbent (often XAD-4), extracting the compounds from the sorbent, and quantifying them using gas chromatography (GC) equipped with nitrogen-selective detection. By adopting this standard, organizations can reliably evaluate ETS levels for indoor air quality assessments.
Key Topics
-
Tracers for Environmental Tobacco Smoke (ETS):
- Nicotine and 3-ethenylpyridine are used as markers for the vapor phase of ETS.
- Nicotine is the primary alkaloid in tobacco but may not always accurately represent total ETS due to its behavior on surfaces and furnishings.
- 3-Ethenylpyridine is recognized as closely matching the vapor phase of ETS and may act as a more reliable tracer.
-
Sampling Methodology:
- Use of active samplers with a sorbent tube and sampling pump.
- Collection is typically conducted for at least 1 hour, with sample duration limited by sorbent capacity.
- Analytical detection achieved by GC with a nitrogen-phosphorus detector.
-
Sensitivity and Detection Limits:
- The method delivers low limits of detection and quantitation for both nicotine and 3-EP, suitable for most indoor air environments.
- Capable of detecting trace levels in both personal and area sampling scenarios.
-
Quality Assurance:
- Emphasizes standard operating procedures (SOPs) for all laboratory and field tasks.
- Includes guidelines for calibrating sampling pumps, analytical procedures, and data recording for robust, repeatable results.
-
Limitations:
- The standard does not cover all safety, health, and environmental risks related to its use; users must ensure proper protocols are followed.
- The results precisely reflect only the measured compounds, not necessarily the presence or concentrations of all ETS constituents.
Applications
ASTM D5075-01(2022) is widely applicable in:
- Indoor Air Quality Assessments: Determining levels of nicotine and 3-ethenylpyridine as indicators of environmental tobacco smoke.
- Workplace Exposure Monitoring: Ensuring compliance with occupational exposure limits to tobacco smoke as recommended by agencies such as NIOSH.
- Building and Facility Management: Evaluating and managing exposure risks in public spaces, offices, schools, and residential properties where tobacco smoke may be present or has previously occurred.
- Research and Epidemiological Studies: Supporting studies on the impact of ETS exposure on human health by providing accurate and repeatable quantitative measures.
Related Standards
- ASTM D1356: Terminology Relating to Sampling and Analysis of Atmospheres
- ASTM D1357: Practice for Planning the Sampling of the Ambient Atmosphere
- ASTM D3631: Test Methods for Measuring Surface Atmospheric Pressure
- ASTM D5337: Practice for Flow Rate Adjustment of Personal Sampling Pumps
- ASTM E260: Practice for Packed Column Gas Chromatography
- ASTM E355: Practice for Gas Chromatography Terms and Relationships
This ASTM standard underlines the importance of using reliable, validated methods for indoor air quality testing, especially in relation to environmental tobacco smoke markers. By adhering to D5075-01(2022), laboratories and environmental professionals can ensure high-quality data to support air quality management, regulatory compliance, and public health initiatives.
Технические детали
- Технический комитет
- D22 - Air Quality
- SKU
- ASTM D5075-01(2022)
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