Oil Spill Dispersants

Oil Spill Dispersants
Author: Committee on Understanding Oil Spill Dispersants: Efficacy and Effects
Publisher:
Total Pages: 408
Release: 2005
Genre: Nature
ISBN:

Approximately 3 million gallons of oil or refined petroleum products are spilled into U.S. waters every year. Oil dispersants (chemical agents such as surfactants, solvents, and other compounds) are used to reduce the effect of oil spills by changing the chemical and physical properties of the oil. By enhancing the amount of oil that physically mixes into the water, dispersants can reduce the potential that a surface slick will contaminate shoreline habitats. Although called for in the Oil Pollution Act of 1990 as a tool for minimizing the impact of oil spills, the use of chemical dispersants has long been controversial. This book reviews the adequacy of existing information and ongoing research regarding the effectiveness of dispersants as an oil spill response technique, as well as the effect of dispersed oil on marine and coastal ecosystems. Oil Spill Dispersants also includes recommended steps for policy makers faced with making hard choices regarding the use of dispersants as part of spill contingency planning efforts or during actual spills.

Aerial Detection of Spill Sources

Aerial Detection of Spill Sources
Author: C. L. Rudder
Publisher:
Total Pages: 36
Release: 1973
Genre: Aerial photography
ISBN:

A unique interpretation key emphasizing the environmental aspects of the petroleum industry was developed as an integral part of an aerial surveillance spill prevention system. The petroleum refinery key is a unique collection of aerial and ground photographs and textual information organized to expedite the location and identification of spill threats through the use of conventional and aerial multiband photographs. The addition of aerial multiband photographs, spill threat analyses, spectral and chemical analyses of spilled materials distinguish this key from standard military interpretation keys. Throughout the aerial spill detection key, the material descriptively related oil refinery features to potential contamination of natural water resources. In addition to serving as a reference manual for imagery interpreters, they key can aid in training imagery interpreters to recognize refinery facilities, equipment, processes and associated spill threats. The key, while prepared for petroleum refineries, can serve as a model for other industries for which imagery interpretation keys are desired.

Oil Spill Monitoring Handbook

Oil Spill Monitoring Handbook
Author: Sharon Hook
Publisher: CSIRO PUBLISHING
Total Pages: 285
Release: 2016-10-03
Genre: Nature
ISBN: 1486306357

Oil spills can be difficult to manage, with reporting frequently delayed. Too often, by the time responders arrive at the scene, the slick has moved, dissolved, dispersed or sunk. This Oil Spill Monitoring Handbook provides practical advice on what information is likely required following the accidental release of oil or other petroleum-based products into the marine environment. The book focuses on response phase monitoring for maritime spills, otherwise known as Type I or operational monitoring. Response phase monitoring tries to address the questions – what? where? when? how? how much? – that assist responders to find, track, predict and clean up spills, and to assess their efforts. Oil spills often occur in remote, sensitive and logistically difficult locations, often in adverse weather, and the oil can change character and location over time. An effective response requires robust information provided by monitoring, observation, sampling and science. The Oil Spill Monitoring Handbook completely updates the Australian Maritime Safety Authority’s 2003 edition of the same name, taking into account the latest scientific advances in physical, chemical and biological monitoring, many of which have evolved as a consequence of major oil spill disasters in the last decade. It includes sections on the chemical properties of oil, the toxicological impacts of oil exposure, and the impacts of oil exposure on different marine habitats with relevance to Australia and elsewhere. An overview is provided on how monitoring integrates with the oil spill response process, the response organisation, the use of decision-support tools such as net environmental benefit analysis, and some of the most commonly used response technologies. Throughout the text, examples are given of lessons learned from previous oil spill incidents and responses, both local and international. General guidance of spill monitoring approaches and technologies is augmented with in-depth discussion on both response phase and post-response phase monitoring design and delivery. Finally, a set of appendices delivers detailed standard operating procedures for practical observation, sample and data collection. The Oil Spill Monitoring Handbook is essential reading for scientists within the oil industry and environmental and government agencies; individuals with responder roles in industry and government; environmental and ecological monitoring agencies and consultants; and members of the maritime sector in Australia and abroad, including officers in ports, shipping and terminals.

Monitoring and Modeling the Deepwater Horizon Oil Spill

Monitoring and Modeling the Deepwater Horizon Oil Spill
Author: Yonggang Liu
Publisher: John Wiley & Sons
Total Pages: 634
Release: 2013-05-02
Genre: Science
ISBN: 1118671821

Published by the American Geophysical Union as part of the Geophysical Monograph Series, Volume 195. Monitoring and Modeling the Deepwater Horizon Oil Spill: A Record-Breaking Enterprise presents an overview of some of the significant work that was conducted in immediate response to the oil spill in the Gulf of Mexico in 2010. It includes studies of in situ and remotely sensed observations and laboratory and numerical model studies on the four-dimensional oceanographic conditions in the gulf and their influence on the distribution and fate of the discharged oil. Highlights of the book include discussions of the following: immediate responses to the Deepwater Horizon oil spill using Integrated Ocean Observing System resources; monitoring the surface and subsurface oil using satellites, aircraft, vessels, and AUVs; mapping the oceanographic conditions using satellites, aircraft, vessels, drifters, and moorings; modeling the spreading of surface oil trajectories and the three-dimensional dispersal of subsurface hydrocarbon plumes; oil spill risk analyses and statistical studies on the fate of the oil; and laboratory investigation of ocean stratification related to subsurface plumes. This book will be of value to scientists interested in the Deepwater Horizon oil spill, the Gulf of Mexico, and the potential for conveyance of oil spilled in the Gulf of Mexico to the North Atlantic. A more technical audience may include those interested in oil spill detection, trajectory model forecasting, and risk analyses and those with an interest in applied oceanography, including scientists, engineers, environmentalists, natural and living marine resource managers and students within academic institutions, agencies, and industries who are involved with the Gulf of Mexico and other regions with offshore oil and gas exploration and production.

EPA Reports Bibliography

EPA Reports Bibliography
Author: United States. Environmental Protection Agency
Publisher:
Total Pages: 600
Release: 1973
Genre: Environmental engineering
ISBN: