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Passive Sampling Techniques in Environmental Monitoring

Passive Sampling Techniques in Environmental Monitoring
Author: Richard Greenwood
Publisher: Elsevier
Total Pages: 487
Release: 2007-07-03
Genre: Science
ISBN: 0080489508

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Monitoring pollutants in air, soil and water is a routine requirement in the workplace, and in the wider environment. Passive samplers can provide a representative picture of levels of pollutants over a period of time from days to months by measuring the average concentrations to which they have been exposed. Air monitors are widely used, for instance to measure the exposure of workers to volatile compounds, but also for monitoring the fate of pollutants in the atmosphere. Passive sampling devices are now becomining increasingly used to monitor pollutants in rivers, coastal waters and ground water where contamination results from sources such as domestic and industrial discharges, and the use of agrochemicals. Passive Sampling Techniques in Environmental Monitoring provides a timely collection of information on a set of techniques that help monitor the quality of air, surface and ground waters. Passive sampling can provide an inexpensive means of obtaining a representative picture of quality over a period of time, even where levels of pollutants fluctuate due to discontinuous discharges or seasonal application of chemicals such as pesticides. Recent changes in legislation have increased the pressure to obtain better information than that provided by classical infrequent spot sampling.Brought together in one source, this book looks at the performance of a range of devices for the passive sampling of metals, and of non-polar and polar organic chemicals in air and in water. The strengths and weaknesses and the range of applicability of the technology are considered. * Comprehensive review of passive sampling - covering air, water and majority of available technologies in one volume* Chapters written by international specialist experts * Covers theory and applications, providing background information and guidelines for use in the field


Quantitative Microbial Risk Assessment

Quantitative Microbial Risk Assessment
Author: Charles N. Haas
Publisher: John Wiley & Sons
Total Pages: 439
Release: 2014-06-09
Genre: Technology & Engineering
ISBN: 1118910028

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Provides the latest QMRA methodologies to determine infection risk cause by either accidental microbial infections or deliberate infections caused by terrorism • Reviews the latest methodologies to quantify at every step of the microbial exposure pathways, from the first release of a pathogen to the actual human infection • Provides techniques on how to gather information, on how each microorganism moves through the environment, how to determine their survival rates on various media, and how people are exposed to the microorganism • Explains how QMRA can be used as a tool to measure the impact of interventions and identify the best policies and practices to protect public health and safety • Includes new information on genetic methods • Techniques use to develop risk models for drinking water, groundwater, recreational water, food and pathogens in the indoor environment


Development and Evaluation of Passive Sampling Devices to Characterize the Sources, Occurrence, and Fate of Polar Organic Contaminants in Aquatic Systems

Development and Evaluation of Passive Sampling Devices to Characterize the Sources, Occurrence, and Fate of Polar Organic Contaminants in Aquatic Systems
Author: Jonathan K. Challis
Publisher:
Total Pages: 0
Release: 2018
Genre:
ISBN:

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The primary goal of this dissertation was to develop and evaluate an improved aquatic passive sampling device (PSD) for measurement of polar organic contaminants. Chemical uptake of current polar-PSDs (e.g., POCIS - polar organic chemical integrative sampler) is dependent on the specific environmental conditions in which the sampler is deployed (flow-rate, temperature), leading to large uncertainties when applying laboratory-derived sampling rates in-situ. A novel configuration of the diffusive gradients in thin-films (DGT) passive sampler was developed to overcome these challenges. The organic-DGT (o-DGT) configuration comprised a hydrophilic-lipophilic balance® sorbent binding phase and an outer agarose diffusive gel (thickness = 0.5-1.5 mm), notably excluding a polyethersulfone protective membrane which is used with all other polar-PSDs. Sampler calibration exhibited linear uptake and sufficient capacity for 34 pharmaceuticals and pesticides over typical environmental deployment times, with measured sampling rates ranging from 9-16 mL/d. Measured and modelled diffusion coefficients (D) through the outer agarose gel provided temperature-specific estimates of o-DGT sampling rates within 20% (measured-D) and 30% (modelled-D) compared to rates determined through full-sampler calibration. Boundary layer experiments in lab and field demonstrated that inclusion of the agarose diffusive gel negated boundary layer effects, suggesting that o-DGT uptake is largely insensitive to hydrodynamic conditions. The utility of o-DGT was evaluated under a variety of field conditions and performance was assessed in comparison to POCIS and grab samples. o-DGT was effective at measuring pharmaceuticals and pesticides in raw wastewater effluents, small creeks, large fast-flowing rivers, open-water lakes, and under ice at near-zero water temperatures. Concentrations measured by o-DGT were more accurate than POCIS when compared to grab samples, likely resulting from the influence in-situ conditions have on POCIS. Modelled sampling rates were successfully used to estimate semi-quantitative water concentrations of suspect wastewater contaminants using high-resolution mass spectrometry, demonstrating the unique utility of this o-DGT technique. This dissertation establishes o-DGT as a more accurate, user-friendly, and widely applicable passive sampler compared to current-use polar-PSDs. The o-DGT tool will help facilitate more accurate and efficient monitoring efforts and ultimately lead to more appropriate exposure data and environmental risk assessment.


Air Sampling Instruments for Evaluation of Atmospheric Contaminants

Air Sampling Instruments for Evaluation of Atmospheric Contaminants
Author: Beverly S. Cohen
Publisher: American Conference of Governmental Industrial Hygenists
Total Pages: 778
Release: 1995
Genre: Science
ISBN:

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This is a comprehensive guide to the sampling of airborne contaminants. Addresses both occupational and environmental air sampling issues and presents measurement methods for both gaseous and particulate air contaminants. This guide also shows available air sampling instruments and provides information for their use.


Sampling Systems for Process Analysers

Sampling Systems for Process Analysers
Author: K. G. Carr-Brion
Publisher:
Total Pages: 426
Release: 1996
Genre: Technology & Engineering
ISBN:

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The use of sampling systems in on-line analysis has spread to almost all areas of the process industries and extends increasingly to safety, process efficiency and environmental control applications. This book presents a comprehensive information resource on the concepts, design, manufacture, installation, operation, validation and maintenance of sampling and sample conditioning systems for use with process analysers. This book subdivides sampling in two ways; firstly in terms of the material sampled - gases, liquids, solids and combinations of these as heterogeneous materials, and secondly into sampling operations - sampling, sample conditioning and sample transport. This treatment provides a systematic approach to sampling, taking the reader through each stage of the process. At all times a range of practical illustrations is given alongside the necessary theory. The importance of validation is emphasised throughout. This new edition has been thoroughly updated to ensure that the information is readily accessible to a readership from a wide range of technical backgrounds interested in process analysis. Written under the auspices of the UK's Department of Trade and Industry's Valid Analytical Measurement Programme (VAM) on sampling, this is an essential practical reference for engineers and scientists who are designing, building or using sampling systems for process analysers. It should also be of value to instrument manufacturers, systems designers and plant contractors. This is the first book in the series on sampling produced by the VAM initiative on sampling, and collectively they provide a comprehensive reference to automatic sampling systems.