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Bibliography Includes bibliographical references (p. 527-564) and index. Contents. General Introduction to Species Sensitivity Distributions, L. Posthuma, T.P.
Traas, and G.W. Suter II North American History of Species Sensitivity Distributions, G.
Suter II European History of Species Sensitivity Distributions, N. Van Straalen, K.
Van Leeuwen Theory of Ecological Risk Assessment Based on Species Sensitivity Distributions, Nico M. Van Straalen Normal Species Sensitivity Distributions and Probabilistic Ecological Risk Assessment, T. Aldenberg, J. Jaworska, and T.
Traas Extrapolation Factors for Tiny Toxicity Data Sets from Species Sensitivity Distributions with Known Standard Deviation, T. Aldenberg and R. Luttik Species Sensitivity Distributions in Ecological Risk Assessment: Distributional Assumptions, Alternate Bootstrap Techniques, and Estimation of Adequate Number of Species, M. Christensen, S. Lerberg, B.-A. Anderson, and T. Padma Observed Regularities in SSDs for Aquatic Species, D.
De Zwart The Value of the Species Sensitivity Distribution Concept for Predicting Field Effects: (Non-)Confirmation of the Concept Using Semi-Field Experiments, P. Van den Brink, T. Posthuma Effects Assessment of Fabric Softeners: The DHTDMAC-Case, K. Van Leeuwen, J. Jaworska Use of Species Sensitivity Distributions in the Derivation of Water Quality Criteria for Aquatic life by the U.S. Environmental Protection Agency, C.
Stephan Environmental Risk Limits in the Netherlands, D. Van Wezel, and T. Crommentuijn A Rank-Based Approach to Deriving Canadian Soil and Sediment Quality Guidelines, C.
Adare, and K. Potter Ecotoxicological Soil Quality Criteria in Denmark, J. Scott-Fordsmand, and J. Jensen Probabilistic Risk Assessment Using Species Sensitivity Distributions, K.R. Solomon and P. Takacs The Potentially Affected Fraction as a Measure of Ecological Risk, T.
Van de Meent, L. De Zwart, and T. Aldenberg Methodology for Aquatic Ecological Risk Assessment, W. Warren-Hicks, B.
Parkhurst, and J. Butcher Toxicity-Based Assessment of Water Quality, D. De Zwart and A. Sterkenburg Mapping Risks of Heavy Metals to Birds and Mammals Using Species Sensitivity Distributions, T. Luttik, and H.
Mensink Ecotoxicological Impacts in Life Cycle Assessment, M. Huijbregts, D. Van de Meent, M. Goedkoop, and R.
Spriensma Issues and Practices in the Derivation and Use of Species Sensitivity Distributions, G. Traas, and L.
Posthuma Conceptual and Technical Outlook on Species Sensitivity Distributions, L. De Zwart, and G. Suter II Appendix A: The Interactive Poster Session 'Use of Species Sensitivity Distributions in Ecotoxicology', T. Traas, and L. Posthuma Appendix B: List of programs References Glossary Acronyms Subject Index. (source: Nielsen Book Data)SummaryIn spite of the growing importance of Species Sensitivity Distribution models (SSDs) in ecological risk assessments, the conceptual basis, strengths, and weaknesses of using them have not been comprehensively reviewed.
This book fills that need. Written by a panel of international experts, Species Sensitivity Distributions in Ecotoxicology reviews the current SSD methods from all angles, compiling for the first time the variety of contemporary applications of SSD-based methods.Beginning with an introduction to SSDs, the chapter authors review the issues surrounding SSDs, synthesizing the positions of advocates and critics with their own analysis of each issue. Finally, they discuss the prospects for future development, paving the way for improved future uses. In sum, this book defines the field of SSD modeling and application.
It reveals a lively field, with SSD-applications extending beyond legally adopted quality criteria to other applications such as Life-Cycle Analysis.For anyone developing or revising environmental criteria or standards, this book explores the pros and cons of using the SSD approach. For anyone who needs to apply and interpret SSD-based criteria or standards, the book explains the basis for the numbers, thereby making it possible to correctly apply and defend them.
For anyone performing ecological risk assessments, the book covers when and how to use SSDs including alternative assumptions, data treatments, computational methods, and available resources. Species Sensitivity Distributions in Ecotoxicology provides you with a clear picture of these standard models for estimating ecological risks from laboratory toxicity data.
(source: Nielsen Book Data).
Open Access is an initiative that aims to make scientific research freely available to all. To date our community has made over 100 million downloads. It’s based on principles of collaboration, unobstructed discovery, and, most importantly, scientific progression.
As PhD students, we found it difficult to access the research we needed, so we decided to create a new Open Access publisher that levels the playing field for scientists across the world. By making research easy to access, and puts the academic needs of the researchers before the business interests of publishers. Indian Institute of Chemical Technology, IndiaThis is a good book on upcoming areas of Ecotoxicology. The first chapter describes genotoxicity of heavy metals in plants. The second chapter offer views on chromatographic methodologies for the estimation of mycotoxin.
Chapter three is on effects of xenobiotics on benthic assemblages in different habitats of Australia. Laboratory findings of genotoxins on small mammals are presented in chapter f.This is a good book on upcoming areas of Ecotoxicology. The first chapter describes genotoxicity of heavy metals in plants. The second chapter offer views on chromatographic methodologies for the estimation of mycotoxin. Chapter three is on effects of xenobiotics on benthic assemblages in different habitats of Australia.
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Laboratory findings of genotoxins on small mammals are presented in chapter four. The fifth chapter describes bioindicators of soil quality and assessment of pesticides used in chemical seed treatments. European regulation REACH in marine ecotoxicology is described in chapter six. X-ray spectroscopic analysis for trace metal in invertebrates is presented in chapter seven. The last chapter is on alternative animal model for toxicity testing. In conclusion, this book is an excellent and well organized collection of up dated information on Ecotoxicology. The data presented in it might be a good starting point to develop research in the field of ECOTOXICOLOGY.