USGS ScienceSearch

Geology topics

Todd Gouin

Publications and source records attributed to Todd Gouin.

2 recordsLinked to original sources

The influence of global climate change on the scientific foundations and applications of Environmental Toxicology and Chemistry: Introduction to a SETAC international workshop

This is the first of seven papers resulting from a Society of Environmental Toxicology and Chemistry (SETAC) international workshop titled “The Influence of Global Climate Change on the Scientific Foundations and Applications of Environmental Toxicology and Chemistry.” The workshop involved 36 scientists from 11 countries and was designed to answer the following question: How will global climate change influence the environmental impacts of chemicals and other stressors and the way we assess and manage them in the environment? While more detail is found in the complete series of articles, some key consensus points are as follows: (1) human actions (including mitigation of and adaptation to impacts of global climate change [GCC]) may have as much influence on the fate and distribution of chemical contaminants as does GCC, and modeled predictions should be interpreted cautiously; (2) climate change can affect the toxicity of chemicals, but chemicals can also affect how organisms acclimate to climate change; (3) effects of GCC may be slow, variable, and difficult to detect, though some populations and communities of high vulnerability may exhibit responses sooner and more dramatically than others; (4) future approaches to human and ecological risk assessments will need to incorporate multiple stressors and cumulative risks considering the wide spectrum of potential impacts stemming from GCC; and (5) baseline/reference conditions for estimating resource injury and restoration/rehabilitation will continually shift due to GCC and represent significant challenges to practitioners.

Environmental Toxicology and Chemistry

Towards quantitative monitoring of semivolatile organic compounds using passive air samplers: Chapter 6

Passive air samplers can be used to measure the air concentration of various semivolatile organic compounds (SOCs) with reasonable reliability. To use passive air samplers to measure atmospheric concentrations of pollutants, calibration data are required. Calibration data include parameters such as sampling rates, sampler/air partition coefficients and loss rate constants. These parameters are usually determined in the laboratory, at a reference site or in situ . When using passive sampler data to estimate the air concentration of SOCs, investigators commonly assume that sampling follows first-order exchange kinetics. Thus, during the first stage of sampler uptake, chemicals are accumulated linearly relative to time. The accumulation of many pollutants in passive air samplers is influenced by factors such as changes in wind speed and temperature. The use of performance reference compounds (PRCs) holds considerable promise for assessing the effects of wind speed and temperature on passive sampler performance. The use of PRCs in semipermeable membrane devices (SPMDs) has also shown that photolysis of accumulated polyaromatic hydrocarbons (PAHs) occurs without adequate shading.

Book chapter