Protocol for the Characterization of Explosives-contaminated Sites

Protocol for the Characterization of Explosives-contaminated Sites

Author:

Publisher:

Published: 1998

Total Pages: 73

ISBN-13:

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This protocol will serve as a reference guide for future sampling campaigns on sites that are potentially contaminated with explosives. The protocol is based on Defence Research Establishment Valcartier research efforts and expertise in the chemistry of energetic materials, on the current literature, and on experience gained in practical field sampling. The protocol detailed in this report covers all aspects related to surface and subsurface sampling, extraction, analysis, field screening methods, and environmental fate of explosive-related contaminants. Safety procedures are also described that take into account the explosive and toxic nature of those compounds.


Contaminants in the Subsurface

Contaminants in the Subsurface

Author: National Research Council

Publisher: National Academies Press

Published: 2005-04-23

Total Pages: 371

ISBN-13: 030909447X

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At hundreds of thousands of commercial, industrial, and military sites across the country, subsurface materials including groundwater are contaminated with chemical waste. The last decade has seen growing interest in using aggressive source remediation technologies to remove contaminants from the subsurface, but there is limited understanding of (1) the effectiveness of these technologies and (2) the overall effect of mass removal on groundwater quality. This report reviews the suite of technologies available for source remediation and their ability to reach a variety of cleanup goals, from meeting regulatory standards for groundwater to reducing costs. The report proposes elements of a protocol for accomplishing source remediation that should enable project managers to decide whether and how to pursue source remediation at their sites.


Ecotoxicology of Explosives

Ecotoxicology of Explosives

Author: Geoffrey I. Sunahara

Publisher: CRC Press

Published: 2009-06-01

Total Pages: 336

ISBN-13: 1420004344

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Managing sites contaminated with munitions constituents is an international challenge. Although the choice of approach and the use of Ecological Risk Assessment (ERA) tools may vary from country to country, the assurance of quality and the direction of ecotoxicological research are universally recognized as shared concerns. Drawing on a multidiscip


Energetic Materials and Munitions

Energetic Materials and Munitions

Author: Adam Stewart Cumming

Publisher: John Wiley & Sons

Published: 2019-05-13

Total Pages: 272

ISBN-13: 3527344837

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Provides a hands-on approach to demilitarization and environmental aspects of energetic materials and munitions This book gives an overview of the environmental impact of the production, use, and cleanup of energetic materials and munitions. It provides scientists, engineers, environmental specialists, and users with the understanding of environmental issues for munitions and of the ways to improve design and manage potential risks. It covers the various aspects of how chemical properties influence fate, transport, and toxicity of new formulations and prescribes tools for reducing or alleviating environmental risks. In addition, it discusses pyrotechnics and the problem of dealing with munitions underwater. Chapters in Energetic Materials and Munitions: Life Cycle Management, Environmental Impact and Demilitarization look at demilitarization in general, as well as in the future. Topics covered include logistics, costs, and management; life cycle analysis and management; and greener munitions. Another introduces readers to the "One Health" approach in the design of sustainable munition compounds. Following that, readers are taught about land assessment for munitions-related contamination in military live-fire training. The book also examines the development and integration of environmental, safety, and occupational health information. -Brings together in one source expertise and in-depth information on the current and future state of how we handle the production, use, and demilitarization of explosives and weaponry -A handy reference for experienced practitioners, as well as for training young professionals in the field -Every chapter contains real-life examples and proposes future directions for the field Energetic Materials and Munitions: Life Cycle Management, Environmental Impact and Demilitarization is an important book for explosives specialists, pyrotechnicians, materials scientists, military authorities, safety officers, health officers, and chemical engineers.


Source Characterization Model (SCM): A Predictive Capability for the Source Terms of Residual Energetic Materials from Burning And/or Detonation Activities

Source Characterization Model (SCM): A Predictive Capability for the Source Terms of Residual Energetic Materials from Burning And/or Detonation Activities

Author:

Publisher:

Published: 2004

Total Pages: 91

ISBN-13:

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This is the final report for the Source Characterization Model (SCM) developed by Aerodyne Research, Inc. (ARI) in collaboration with the U.S. Army Environmental Center (USAEC). It describes work performed under contract DACA72-00-C-0001 from the Strategic Environmental Research and Development Program (SERDP) for the project CP-1159 entitled "A Predictive Capability for the Source Terms of Residual Energetic Materials from Burning and/or Detonation Activities". A portion of thisreport was previously released as a supplement to the 2002 Annual Report for that SERDP project. Detonation of energetic materials produces a wide range of air and surface pollutants, including carbon monoxide, nitrogen oxides, volatile organic compounds, acid gases, and particulate matter. These emissions, including undecomposed or partially decomposed energetic materials, may lead to atmospheric pollution or ground water contamination. The speciation and amounts of these emitted pollutants depend on the identity and amount of energetic material detonated, the detonation order, the detonation mode (air burst, surface detonation, buried detonation), and the munitions type (shell, mine, detonation charge, etc.). In order to determine whether U.S. military training or munitions disposal activities produce emissions that threaten air or ground water quality, reliable estimates of emission factors must be available for a representative fraction of the thousands of munitions types in the inventory. A variety of recent detonation experiments, including detonation chamber tests, and open-air field detonations have yielded increasingly rich data sets of measured gaseous and particulate emissions factors from a range of energetic materials deployed as both unconfined charges and standard munitions. These data have been used under CP-1159 to guide the development of a detonation source characterization model (SCM) to be used to predict emissions across munitions classes and detonation modes.


Advances in the Characterisation and Remediation of Sites Contaminated with Petroleum Hydrocarbons

Advances in the Characterisation and Remediation of Sites Contaminated with Petroleum Hydrocarbons

Author: Jonás García-Rincón

Publisher: Springer Nature

Published: 2023-11-22

Total Pages: 677

ISBN-13: 3031344472

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This open access book synthesizes important advances in the assessment and management of soil and groundwater systems contaminated with petroleum hydrocarbons, especially in the form of light non-aqueous phase liquids (LNAPLs). LNAPL characterization and remediation is challenging due to the multi-phase, multi-component nature of the problem and the various physical, chemical, and biological processes involved in a dynamic and heterogeneous hydrogeological setting. This book focuses on the current state of practice of LNAPL characterization and remediation and seeks to provide information and a framework that would allow some of these complexities to be better addressed by contaminated land practitioners, researchers, and regulators.


Plants and their Interaction to Environmental Pollution

Plants and their Interaction to Environmental Pollution

Author: Azamal Husen

Publisher: Elsevier

Published: 2022-11-04

Total Pages: 470

ISBN-13: 032398309X

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Environmental pollution as a consequence of diverse human activities has become a global concern. Urbanization, mining, industrial revolution, burning of fossil fuels/firewood and poor agricultural practices, in addition to improper dumping of waste products, are largely responsible for the undesirable change in the environment composition. Environmental pollution is mainly classified as air pollution, water pollution, land pollution, noise pollution, thermal pollution, light pollution, and plastic pollution. Nowadays, it has been realized that with the increasing environmental pollution, impurities may accumulate in plants, which are required for basic human uses such as for food, clothing, medicine, and so on. Environmental pollution has tremendous impacts on phenological events, structural patterns, physiological phenomena, biochemical status, and the cellular and molecular features of plants. Exposure to environmental pollution induces acute or chronic injury depending on the pollutant concentration, exposure duration, season and plant species. Moreover, the global rise of greenhouse gases such as carbon monoxide, carbon dioxide, nitrous oxides, methane, chlorofluorocarbons and ozone in the atmosphere is among the major threats to the biodiversity. They have also shown visible impacts on life cycles and distribution of various plant species. Anthropogenic activities, including the fossil-fuel combustion in particular, are responsible for steady increases in the atmospheric greenhouse gases concentrations. This phenomenon accelerates the global heating. Studies have suggested that the changes in carbon dioxide concentrations, rainfall and temperature have greatly influenced the plant physiological and metabolic activities including the formation of biologically active ingredients. Taken together, plants interact with pollutants, and cause adverse ecological and economic outcomes. Therefore, plant response to pollutants requires more investigation in terms of damage detection, adaptation, tolerance, and the physiological and molecular responses. The complex interplay among other emerging pollutants, namely, radioisotopes, cell-phone radiation, nanoparticles, nanocomposites, heavy metals etc. and their impact on plant adaptation strategies, and possibility to recover, mitigation, phytoremediation, etc., also needs to be explored. Further, it is necessary to elucidate better the process of the pollutant’s uptake by plant and accumulation in the food chain, and the plant resistance capability against the various kinds of environmental pollutants. In this context, the identification of tolerance mechanisms in plants against pollutants can help in developing eco-friendly technologies, which requires molecular approaches to increase plant tolerance to pollutants, such as plant transformation and genetic modifications. Pollutant-induced overproduction of reactive oxygen species that cause DNA damage and apoptosis-related alterations, has also been examined. They also trigger changes at the levels of transcriptome, proteome, and metabolome, which has been discussed in this book.