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Pollution --- Déchets. --- Pollution de l'eau.
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Water --- Pollution de l'eau. --- Pollution.
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Pollution --- Déchets. --- Pollution de l'eau.
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Pollution de l'eau --- Pollution de l'eau --- Lutte contre --- Mesure
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Eau --- Pollution de l'eau --- Urbanisation --- Politique urbaine --- New york
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"This book has a unique outline in that it follows pollution from sources to impact. Included in the text is the treatment of various tracers, ranging from pathogens to stable isotopes of elements and providing a comprehensive discussion which is lacking in many other books on pollution control of natural waters".
Water --- Water chemistry. --- Eau --- Pollution de l'eau. --- Pollution. --- Chimie.
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Water --- Pollution de l'eau --- Pollution --- Lutte contre
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Je suis Rivière nous conte l'histoire de Louise, une jeune paysanne du milieu du XIXe siècle, qui part à la recherche d'Arthur, un jeune homme l'ayant secourue lors d'une agression. Elle remonte le cours entier de la Bièvre jusqu'à Paris. Les aventures de Louise épousent les méandres de la rivière, se fondant en eux. Tout comme le cours d'eau, elle commence son parcours au sein d'une nature sauvage et sera ensuite utilisée comme force de travail, jusqu'au point de rupture. Un siècle plus tard, son arrière-petite-fille Florence lie l'histoire de Louise au parcours de la rivière et en fait son combat. Elle milite pour ressusciter cette rivière urbaine et lutte pour protéger le patrimoine naturel.
Bande dessinée --- Pollution de l'eau --- Résilience écologique --- Rivière --- Bièvre
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"More than two-thirds of the earth is covered with aquatic habitats that play a key role in stabilizing the global environment and providing a wide variety of services to increasing human needs. Nevertheless, anthropogenic activities are rapidly destroying the quality of both fresh and marine waters over the globe due to excessive use of chemicals and fertilizers, and pollution from suburban and industrial areas eventually make their way into the aquatic world. To preserve the integrity of aquatic environs is the greatest challenge in the current era because more than 80 per cent of urban wastewater, millions of tons of heavy metals chemical, toxic sludge and other waste are being directly discharged into inland waters. There are many reports that bacteria and plant species are using biodegradation and bioremediation strategies. The potential drivers of the commercial use of biological resources are yet to be explored as there are issues involved with technological facilitation and it's need for large investment funds, so there is a need to explore better training and development of more eco-friendly biological resources. After global investigation, the use of biological remediation technologies to deal with environmental problems should become standard practice, even though respondents are striving to apply bioremediation techniques. As microorganisms have evolved different survival strategies in heavier metal-polluted conditions such as biosorption, bioaccumulation or biomineralisation, which are either ex situ or in situ exploitation, these organisms are known to evolve and introduce specific detoxification mechanisms. The use of microbes as a time-saver for bioremediation was a result of the complexities involved in conventional soil regeneration methods. There are so many fungal species (like genera Penicillium, Aspergillus and Rhizopus) which has been identified as potential microbial agents for the removal of heavy metals from aqueous solutions but due to toxicity of chemical or heavy metals, it is difficult to maintain a healthy population of microorganisms hence high throughput genetic engineering tools and techniques need to be employed to attain resistant strains to degrade xenobiotic compounds. A novel technology for obtaining highly efficient biosorbents from endophytes, a hyperaccumulator, which is more convenient than the traditional method of obtaining biosorbents. Genomics, for instance in GMO plants, have been studied and used primarily in microbial genetics, but it is now a new instrument for bioremediation. Knowledge of genomics in the sense of understanding microbiological remediation provides a view of genes linked to microbial exposure to soil toxic metals. The use of genomics in bioremediation enables microorganisms to be analyzed on the basis both of biochemical and mechanism-related molecular levels."--
Water --- Aquatic ecology --- Bioremediation. --- Pollution de l'eau. --- Écologie des eaux --- Pollution de l'eau --- Biotechnologie appliquée à l'environnement. --- Pollution. --- Biotechnology --- Biotechnologie. --- Lutte contre.
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