Footprint, weathering, and persistence of synthetic-base drilling mud olefins in deep-sea sediments following the Deepwater Horizon disaster
Author:
Funder
NOAA
Publisher
Elsevier BV
Subject
Pollution,Aquatic Science,Oceanography
Reference19 articles.
1. Recurrent oil sheens at the Deepwater Horizon disaster site fingerprinted with synthetic hydrocarbon drilling fluids;Aeppli;Environ. Sci. Technol.,2013
2. A comparison of the environmental performance of olefin and paraffin synthetic based fluids;American Chemistry Council;Am. Chem. Council,2006
3. Petroleum biodegradation and oil spill bioremediation;Atlas;Mar. Pollut. Bull.,1995
4. Tracking hydrocarbon plume transport and biodegradation at Deepwater Horizon;Camilli;Science,2010
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1. Optimisation of Rheological Properties of Water-Based Mud (WBM) with Natural Additives by Using Response Surface Methodology (RSM);Key Engineering Materials;2023-01-25
2. Effect of the incorporation of halite and carnallite on the stability of olefinic emulsions;Rio Oil and Gas Expo and Conference;2022-09-26
3. Evidence of Rapid Functional Benthic Recovery Following the Deepwater Horizon Oil Spill;ACS ES&T Water;2022-08-31
4. Quantification of synthetic-based drilling mud olefins in crude oil and oiled sediment by liquid column silver nitrate and gas chromatography;Environmental Forensics;2022-03-10
5. Influence of halite particles on the stability and physical properties of inverse olefin emulsions;Particulate Science and Technology;2022-03-09
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