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Persistent organic pollutants are chemicals with notable environmental persistence and the potential for long-range transport, bio-accumulation, and toxic effects.
Perfluorooctane sulfonate (PFOS) recently has been listed as a persistent organic pollutant due to its worldwide occurrence and environmental persistence.
This chapter discusses environmental persistence, toxicology, and biochemical and molecular aspects of Hexachlorocyclohexane (HCH) biodegradation.
New methods are needed to identify RNAi crops and measure the environmental persistence of small RNAs.
This chemical has been widely detected in aquatic environments and shows some degree of environmental persistence.
Comparative genomics and genomic tools have been used to identify virulence factors and genes involved in environmental persistence of pathogens.
It is the most commonly reported fibrate in aquatic environments with low degradation rate and potential environmental persistence.
The treatment of environmental persistence compounds is gaining importance due to its associated hazards and impact on the ecosystem.
Interaction of natural organic matter (NOM) with engineered nanoparticles (NPs) determine NP fate, transport, and environmental persistence.
In light of the potentially significant radiative forcing effects of PFCs and their extraordinary environmental persistence, characterizing their sources deserves scientific effort.
Here, we test the utility of a model that includes regional climate and local landscape characteristics to model environmental persistence of parasites.
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