- ISBN: 9781847559036 | 1847559034
- Cover: Hardcover
- Copyright: 10/1/2009
Overview of Beryllium Sampling and Analysis: Occupational Hygiene and Environmental Applications | p. 1 |
Introduction | p. 2 |
Goals of this Book | p. 3 |
Background | p. 3 |
Beryllium Sources | p. 3 |
Beryllium Uses | p. 4 |
Health Risks | p. 5 |
Occupational Exposure Limits | p. 6 |
Impact of US Department of Energy Regulation | p. 6 |
Environmental Beryllium and Soil Remediation | p. 8 |
Beryllium in Water | p. 8 |
Sampling Overview | p. 8 |
Air Sampling | p. 8 |
Surface Sampling | p. 9 |
Dermal and Soil Sampling | p. 10 |
Analysis Overview | p. 10 |
Summary of Current Techniques | p. 10 |
Sample Preparation | p. 10 |
Data Evaluation and Reporting | p. 11 |
Future Analytical Challenges | p. 11 |
Acknowledgements | p. 12 |
References | p. 13 |
Air Sampling | p. 17 |
Introduction | p. 18 |
Sampling Strategies | p. 19 |
Sampling for Compliance with a Limit Value | p. 19 |
Sampling to Identify a Group Range of Exposures | p. 21 |
Real-Time Monitoring | p. 22 |
Area Versus Personal Sampling | p. 24 |
Choice of Sampling Time | p. 25 |
Aerosols | p. 26 |
Sources and Types of Beryllium Aerosols | p. 27 |
Aerosol Sampling | p. 28 |
Size-selective Sampling | p. 29 |
The Inhalable Convention | p. 29 |
Thoracic Convention | p. 31 |
Respirable Conventions | p. 32 |
High Volume Sampling | p. 32 |
Ultra-fine Particle Sampling | p. 33 |
Calibration and Quality Control | p. 34 |
Filters | p. 36 |
Glass and Quartz Fiber Filters | p. 37 |
PVC Filters | p. 37 |
MCE Filters | p. 37 |
Polycarbonate Filters | p. 38 |
PTFE Filters | p. 38 |
Filter Support | p. 38 |
Filter "Handedness" | p. 38 |
Samplers for Inhalable Sampling | p. 38 |
IOM Sampler | p. 38 |
Button Sampler | p. 40 |
GSP Sampler | p. 40 |
CFC Sampler | p. 41 |
Evaluating Internal Wail Deposits | p. 41 |
The CFC and the Inhalable Convention | p. 44 |
CIP-10 Sampler | p. 44 |
An Inhalable Convention for Slowly Moving Air | p. 45 |
Very Large Particles | p. 45 |
Samplers for Respirable Sampling | p. 46 |
Comments on Cyclone Design | p. 46 |
The Dorr-Oliver (DO) or "Nylon" Cyclone | p. 47 |
The GS-3 Cyclone | p. 48 |
IOSH Cyclone | p. 48 |
Aluminium Cyclone | p. 49 |
Higgens-Dewell Cyclone | p. 49 |
GK | |
Cyclone | p. 49 |
FSP-10 Cyclone | p. 49 |
Sampling for Different Fractions | p. 49 |
Sampling in Beryllium Facilities | p. 50 |
Sampling Emissions Sources for Beryllium | p. 53 |
Analytical Considerations for Selecting a .Sampling Method | p. 53 |
Air Sampling in Retrospective Exposure Assessments | p. 55 |
Conclusion | p. 55 |
Bibliography | p. 56 |
References | p. 57 |
Surface Sampling: Successful Surface Sampling for Beryllium | p. 68 |
Surface Sampling | p. 68 |
Wipe Sampling | p. 69 |
Bulk Sampling | p. 70 |
Vacuum Sampling | p. 71 |
Locations of Sample Points and Number of Samples | p. 71 |
Randomly Selected Sample Points | p. 71 |
Biased or Judgmental Sample Points | p. 72 |
Sampling Techniques | p. 72 |
Speed and Pressure | p. 72 |
Selection of Sampling Medium | p. 72 |
Determining Surface Area | p. 73 |
Field Analysis | p. 74 |
Protecting Sample Process and Samples from Contamination | p. 74 |
Inappropriate Sampling or Techniques | p. 75 |
Sample Planning | p. 75 |
Determine Needs | p. 75 |
Contaminated Surfaces | p. 76 |
Planning Tools | p. 76 |
Standard Operating Procedure | p. 76 |
Overall Sampling Plan | p. 76 |
Site History | p. 78 |
Sampling Safety | p. 78 |
Personal Protection Equipment | p. 78 |
Personal Factors and Needs | p. 78 |
Sample Protection | p. 80 |
Recordkeeping | p. 81 |
Chain-of-custody | p. 81 |
Oversight of Sampling | p. 81 |
Photography Requirements and Permits | p. 82 |
Selecting and Pre-qualifying the Laboratory | p. 82 |
Quality Control Measures | p. 83 |
Sampling Supplies | p. 83 |
Consumable Supplies | p. 83 |
Non-consumable Supplies | p. 84 |
Summary | p. 85 |
Acknowledgements | p. 86 |
References | p. 86 |
Sample Dissolution Reagents for Beryllium: Applications in Occupational and Environmental Hygiene | p. 89 |
Introduction | p. 90 |
Background | p. 90 |
Beryllium in Geological Media | p. 90 |
Beryllium Ores | p. 91 |
Soils and Silicates | p. 91 |
Occupational Hygiene Samples | p. 92 |
Workplace Air Samples | p. 93 |
Surface Samples | p. 95 |
Bulk Samples | p. 96 |
Summary | p. 97 |
Acknowledgements | p. 97 |
References | p. 98 |
Heating Sources for Beryllium Sample Preparation: Applications in Occupational and Environmental Hygiene | p. 102 |
Introduction | p. 103 |
Background | p. 103 |
Beryllium in Geological Media and Soils | p. 105 |
Occupational Hygiene Samples | p. 107 |
Workplace Air Samples | p. 107 |
Surface Samples | p. 109 |
Summary | p. 110 |
References | p. 111 |
Beryllium Analysis by Inductively Coupled Plasma Atomic Emission Spectrometry and Inductively Coupled Plasma Mass Spectrometry | p. 113 |
Introduction | p. 114 |
Preparation of Samples | p. 114 |
Methods Available for Sample Analysis by ICP-AES orlCP-MS | p. 115 |
Analytical Considerations for Selecting a Sample Preparation Method | p. 115 |
Challenges with Beryllium Samples for Analysis by ICP-AES or ICP-MS | p. 116 |
Quality Control and Quality Assurance | p. 118 |
ICP Overview | p. 119 |
Analysis by ICP-AES | p. 121 |
Interferences | p. 121 |
Considerations when Working With Beryllium | p. 123 |
Analysis by ICP-MS | p. 124 |
Selectivity and Interferences | p. 125 |
Considerations when Working with Beryllium | p. 129 |
References | p. 329 |
Beryllium Analysis by Non-Plasma Based Methods | p. 131 |
Introduction | p. 131 |
Fluorescence | p. 132 |
Background | p. 132 |
Applications | p. 132 |
Atomic Absorption | p. 136 |
Background | p. 136 |
Applications | p. 137 |
UV-Visible Spectroscopy | p. 138 |
Electrochemistry | p. 140 |
Adsorptive Stripping Voitammetric Measurements of Trace Beryllium at the Mercury Film Electrode | p. 140 |
Beryllium-Selective Membrane Electrode Based on Benzo-9-crown-3 | p. 141 |
New Diamino Compound as Neutral Ionophore for Highly Selective and Sensitive PVC Membrane Electrode for Be(II) Ion | p. 142 |
Beryllium-Selective Membrane Sensor Based on 3, 4-Di[2-(2-Tetrahydro-2H-Pyranoxy)] Ethoxy Styrene-Styrene Copolymer | p. 142 |
New Diamino Compound as Neutral Ionophore for Highly Selective and Sensitive PVC Membrane Electrode for Be(II) Ion | p. 142 |
Other Methods | p. 143 |
Utilization of Solid Phase Spectrophotometry for Determination of Trace Amounts of Beryllium in Natural Water | p. 143 |
Selective Determination of Beryllium(II) Ion at Picomole per Decimeter Cubed Levels by Kinetic Differentiation Mode Reversed-Phase High-Performance Liquid Chromatography with Fluorometric Detection Using 2-(2'-Hydroxyphenyl)-10-hydroxybenzo[h]qui-noline as Precolumn Chelating Reagent | p. 143 |
References | p. 144 |
Data Use, Quality, Reporting, and Communication | p. 147 |
Introduction and Overview | p. 148 |
Laboratory Reports | p. 148 |
"Reporting Limits" and "Detection Limits" | p. 149 |
Uses of Beryllium Data | p. 151 |
"Detection Limits" and Related Concepts | p. 152 |
Currie's Detection and Quantitation Concepts | p. 152 |
Implementations of Currie's Concepts: the US EPA MDL | p. 162 |
Recent Advances: ASTM Contributions | p. 165 |
"Reporting Limits" | p. 166 |
Data and Measurement Quality Objectives | p. 167 |
Evaluation of Data Quality Objectives | p. 167 |
Alternatives to "Detection Limits" | p. 173 |
Total Measurement Uncertainty | p. 174 |
Using Uncensored Data | p. 175 |
Using Uncensored Data: Technical Issues | p. 176 |
Using Uncensored Data: Non-technical Issues | p. 177 |
Summary | p. 178 |
References | p. 179 |
Applications, Future Trends, and Opportunities | p. 182 |
Introduction | p. 183 |
Monitoring | p. 183 |
Baseline Monitoring | p. 183 |
Compliance Monitoring | p. 184 |
Diagnostic Monitoring | p. 185 |
Exposure Monitoring | p. 185 |
Future Trends | p. 185 |
Air Sampling | p. 186 |
Analytical Methods | p. 187 |
Speciation | p. 187 |
Making Use of Censored Data | p. 188 |
Dermal Sampling | p. 188 |
Surface Dust Sampling | p. 189 |
Real-Time/Near Real-Time Measurement | p. 189 |
Research History | p. 189 |
Future Research Directions | p. 191 |
References | p. 192 |
Subject Index | p. 194 |
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