Significance and Use

American National Standards Institute Inc.

5.1 Gas or vapor sampling is often accomplished by actively pumping air through a collection medium such as activated charcoal. Problems associated with a pump – inconvenience, inaccuracy, and expense – are inextricable from this type of sampling. The alternative covered by this practice is to use diffusion for moving the compound of interest onto the collection medium. This approach to sampling is attractive because of the convenience of use and low total monitoring cost.

5.2 However, previous studies have found significant problems with the accuracy of some samplers. Therefore, although diffusive samplers may provide a plethora of data, inaccuracies and misuse of diffusive samplers may yet affect research studies. Furthermore, worker protections may be based on faulty assumptions. The aim of this practice is to counter the uncertainties in diffusive sampling through achieving a broadly accepted set of performance tests and acceptance criteria for proving the efficacy of any given diffusive sampler intended for use.

Scope

1.1 This practice covers the evaluation of the performance of diffusive samplers of gases and vapors for use over sampling periods from 4 to 12 h and for wind speeds less than 0.5 m/s. Such sampling periods and wind speeds are the most common in the indoor workplace setting. This practice does not apply to static or area sampling in wind speeds less than 0.1 m/s, when diffusion outside the sampler may dominate needed convection from the ambient air to the vicinity of the sampler. Given a suitable exposure chamber, the practice can be extended to cover sampler use for other sampling periods and conditions. The aim is to provide a concise set of experiments for classifying samplers primarily in accordance with a single sampler accuracy figure. Accuracy is defined (3.2.2) in this standard so as to take into account both imprecision and uncorrected bias. Accuracy estimates refer to conditions of sampler use which are normally expected in a workplace setting. These conditions may be characterized by the temperature, atmospheric pressure, humidity, and ambient wind speed, none of which may be constant or accurately known when the sampler is used in the field. Furthermore, the accuracy accounts for the effects of diffusive loss of analyte on the estimation of time-weighted averages of concentrations which may not be constant in time. Aside from accuracy, the samplers are tested for compliance with the manufacturer’s stated limits on capacity, possibly in the presence of interfering compounds.

1.2 This practice is an extension of previous research on diffusive samplers (1-14)2 as well as Practices D4597, D4598, D4599, and MDHS 27. An essential advance here is the estimation of sampler accuracy under actual conditions of use. Furthermore, the costs of sampler evaluation are reduced.

1.3 Knowledge gained from similar analytes expedites sampler evaluation. For example, interpolation of data characterizing the sampling of analytes at separated points of a homologous series of compounds is recommended. At present the procedure of (9) is suggested. Following evaluation of a sampler in use at a single homologous series member according to the present practice, higher molecular weight members would receive partial validations considering sampling rate, capacity, analytical recovery, and interferences. The test for diffusive analyte loss can be omitted if the effect is found negligible for a given sampler or analyte series.

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

1.5 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.

1.6 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

Go to ASTM D6246 at ASTM.org

Add your thoughts about the standard.

5935 - Connectors, Electrical (4357) 8455 - Badges and Insignia (3093) 8010 - Paints, Dopes, Varnishes, and Related Products (2046) 6515 - Medical and Surgical Instruments, Equipment, and Supplies (1907) ISDF (1827) 4730 - Hose, Pipe, Tube, Lubrication, and Railing Fittings (1823) ISDA (1776) FACR (1647) 5960 - Electron Tubes and Associated Hardware (1630) 6145 - Wire and Cable, Electrical (1629) 6505 - Drugs and Biologicals (1343) 6625 - Electrical and Electronic Properties Measuring and Testing Instruments (1241) 6640 - Laboratory Equipment and Supplies (1187) 5120 - Hand Tools, Nonedged, Nonpowered (1124) 6810 - Chemicals (1114) MISC (1045) 5930 - Switches (1012) 5306 - Bolts (996) 5340 - Hardware, Commercial (953) 8305 - Textile Fabrics (910) 5310 - Nuts and Washers (864) 5950 - Coils and Transformers (856) 8140 - Ammunition and Nuclear Ordnance Boxes, Packages and Special Containers (797) 6520 - Dental Instruments, Equipment, and Supplies (790) ISDD (786) 5910 - Capacitors (783) 5305 - Screws (781) 9330 - Plastics Fabricated Materials (759) 5905 - Resistor (753) 6530 - Hospital Furniture, Equipment, Utensils, and Supplies (745) 5945 - Relays and Solenoids (733) 5961 - Semiconductor Devices and Associated Hardware (707) 6240 - Electric Lamps (662) 8415 - Clothing, Special Purpose (660) 5330 - Packing and Gasket Materials (583) SESS (581) ISDN (581) 5940 - Lugs, Terminals, and Terminal Strips (564) 8030 - Preservative and Sealing Compounds (554) 4720 - Hose and Flexible Tubing (552) 1375 - Demolition Materials (549) 6610 - Flight Instruments (540) PACK (539) 8915 - Fruits and Vegetables (531) 1377 - Cartridge and Propellant Actuated Devices and Components (524)
Steel (908) GUN (640) (621) Demolition Materials (549) Cartridge and Propellant Actuated Devices and Components (524) Paint and Related Coating (456) Fuzes and Primers (454) Optical Sighting and Ranging Equipment (451) Medical Device and Implant (427) Building (414) Petroleum (378) Rockets, Rocket Ammunition and Rocket Components (368) Nonferrous Metal and Nonferrous Alloy (367) Ammunition, through 30mm (349) Fire Control Computing Sights and Devices (338) Aircraft Air Conditioning, Heating, and Pressurizing Equipment (334) Parachutes; Aerial Pick Up, Delivery, Recovery Systems; and Cargo Tie Down Equipment (324) Sports and Recreation (316) Land Mines (276) Nuclear Technology (274) Consumer Product Evaluation (267) Aircraft Hydraulic, Vacuum, and De-icing System Components (263) Bulk Explosives (261) Torpedos and Components, Inert (258) Plastic Pipe (248) Nondestructive Testing (246) Miscellaneous Aircraft Accessories and Components (231) Aerospace Material (225) Geotechnical Engineering (217) Miscellaneous Fire Control Equipment (216) Ammunition, over 30mm up to 75mm (208) Fire Control Radar Equipment, except Airborne (197) Ammunition, 75mm through 125mm (192) Bombs (192) Copper (192) Environmental Toxicology (187) Analytical Chemistry (180) Road and Paving (177) Pyrotechnics (175) Rubber (166) Electrical and Magnetic Conductor (162) Security System Pedestrian and Walkway Safety (157) Military Chemical Agents (156) Electronics (153) Specialized Test and Handling Equipment, Nuclear Ordnance (150)