PubMed Health⌕ Search

PubMed · 16835165

NMAM methods update: a laboratory response to concerns about technologically outdated and problematic methods.

Abstract

The National Institute for Occupational Safety Health (NIOSH) publishes the NIOSH Manual of Analytical Methods (NMAM). The NMAM, although subject to various revisions and the incorporation of supplemental editions over the years, still contains many methods that are technologically outdated or problematic, as identified in a recent survey of the various users of the NMAM. Whereas the survey identified a number of problematic methods based on various chromatographic techniques, those selected for inclusion in this project employed analysis by gas chromatography (GC). The GC methods selected for evaluation were categorized as Phases 1, 2, 3, and 4 based on necessity as determined by the results of the client survey or internal assessment. The Phase 1 methods included: NMAM 1606 (Acetonitrile), NMAM 2005 (Nitroaromatic Compounds), and NMAM 1453 (Vinyl Acetate); the Phase 2 methods: NMAM 1003 (Halogenated Hydrocarbons), NMAM 1501 (Aromatic Hydrocarbons), NMAM 2555 (Ketones I), and NMAM 1403 (Alcohols IV); the Phase 3 methods: NMAM 2552 (Methyl Acrylate), NMAM 2537 (Methyl and Ethyl Methacrylate), and NMAM 2553 (Ketones II), and the Phase 4 methods: NMAM 2556 (Isophorone), NMAM 1460 (Isopropyl Acetate), and NMAM 1618 (Isopropyl Ether). All methods previously specifying packed column chromatography have been evaluated using the appropriate fused silica capillary column. Improvements in individual analyte desorption efficiencies were achieved at concentrations substantially lower than those used in the previous methods. Most analytes evaluated had their respective limit of detection lowered by a factor of ten-to twentyfold. Thirty-day storage stability studies, previously lacking in a number of methods or for new analytes, were successfully completed to meet current method development criteria. Additional benefits resulting from this effort included the incorporation of single analyte methods into chemically related multianalyte methods and the evaluation of certain isomers, such as the methylstyrenes and xylenes, which previously could not be separated.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Stephanie M Pendergrass, Jennifer L Ernst, Donald D Dollberg. 2006. NMAM methods update: a laboratory response to concerns about technologically outdated and problematic methods.. https://doi.org/10.1080/10543400600760446

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Pilot study of indoor radon in Greek workplaces.

Radon and gamma dose rate measurements have been performed in 561 workplaces in 19 prefectures of Greece. The distribution of radon concentration can be well described by a log-normal distribution. Most of the radon concentrations are between 50 and 200 Bq m(-3) with an arithmetic mean of 123 Bq m(-3). The maximum measured value of radon gas concentration is 695 Bq m(-3). About 10% of the workplaces exceed 200 Bq m(-3). Only a small fraction ( approximately 1%) of workplaces exceed the European Commission action level (400 Bq m(-3)). Despite the relative small fraction of workplaces which exceed the value of 400 Bq m(-3), it is clear from the results of the present work that for certain prefectures, further and more extensive research is needed.

Air Pollution, Indoor↗

Health effects of arsenic, fluorine, and selenium from indoor burning of Chinese coal.

China's economy has developed rapidly in the last two decades, leading to an increase in energy consumption and consequently emissions from energy generation. Coal is a primary energy source in China because of its abundance and will continue to be used in the future. The dominance of coal in energy production is expected to result in increasing levels of exposure to environmental pollution in China. Toxic trace elements emitted during coal combustion are the main sources of indoor air pollution. They are released into the atmosphere mainly in the forms of fine ash and vapors and have the potential to adversely affect human health. Those trace elements, which volatilize during combustion, are hazardous air pollutants (HAPs) and are particularly rich in Chinese coals. Among the HAPs, arsenic (As), fluorine (F), and selenium (Se) have already been identified as pollutants that can induce severe health problems. In this review, the geochemical characteristics of As, F, and Se, including their concentration, distribution, and mode of occurrences in Chinese coal, are documented and discussed. Our investigations have confirmed the current As- and F-induced epidemics in Guizhou (Southwest China) and Se epidemic in Hubei (Northeast China). In this study, diagnostic symptoms of arseniasis, fluorosis, and selenosis are also illustrated.

Air Pollution, Indoor↗