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A. Yu. Muratova

Researcher at Russian Academy of Sciences

Publications -  24
Citations -  383

A. Yu. Muratova is an academic researcher from Russian Academy of Sciences. The author has contributed to research in topics: Rhizosphere & Biology. The author has an hindex of 8, co-authored 14 publications receiving 330 citations.

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Phytoremediation of Oil-Sludge–Contaminated Soil

TL;DR: Rye and alfalfa were chosen for a large-scale study to remediate an oil-sludge pit on the grounds of a petroleum refinery, and it was shown that rye accelerated cleanup most effectively, degrading all of the main contaminant fractions in the oil sludge.
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[Oil-oxidizing potential of associative rhizobacteria of the genus Azospirillum].

TL;DR: Under hydroponic conditions, crude oil stimulated growth of A. brasilense SR80, which promoted development of the wheat root system in the presence of oil and enhanced the level of oil degradation by the plant-microbial association.
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Studies of the Efficacy of Alfalfa and Reed in the Phytoremediation of Hydrocarbon-Polluted Soil

TL;DR: Comparative analysis of microflora in soils (including those devoid of plants and rhizosphere) demonstrated that, in addition to preventing a pollutant-induced decrease in the amount of heterotrophic microorganisms, the plants stimulated their development, significantly increasing the population of degraders.
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A Biosurfactant-Producing Pseudomonas aeruginosa Strain

TL;DR: In this paper, a Pseudomonas aeruginosa strain producing an extracellular surfactant (biosurfactant) was isolated and the growth of this strain on a mineral glycerol-containing medium produces an emulsifying activity (60%) and decreases the surface tension of the culture liquid by a factor of 2.8 (to 25 mN/m).
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Use of integrated phytoremediation for cleaning-up of oil-sludge-contaminated soil

TL;DR: In this paper, the possibility of using multicomponent systems, including plants, mineral fertilizers, and plant growth promoting microorganisms, has been studied in vegetative experiments in order to stimulate phytoremediation of oil-sludge-contaminated soil.