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Titlebook: Bioremediation of Soils Contaminated with Aromatic Compounds; Hermann J. Heipieper Conference proceedings 20071st edition Springer Science

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The Basics of Universal Risk Managementn to influence the elimination of pollutants, among them transpiration of water, oxygen transport, biological stimulation in the root zone and plant uptake of chemicals. However, it is frequently unclear whether the plants directly metabolise the pollutants, or whether they only play an indirect role by supporting microbial action.
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Leading in Inter-Organizational Networksent abilities of . R57 applied to some of enumerated aromatic compounds are presented in this work. It was established that the strain could degrade and assimilate completely up to 1gl. phenol for a period of 18 h, 0.4 gl. α-methylstyrene, acetophenone and p-cresol were degraded for 24-27h.
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THE ROLE OF PLANTS AND BACTERIA IN PHYTOREMEDIATION - KINETIC ASPECTS,n to influence the elimination of pollutants, among them transpiration of water, oxygen transport, biological stimulation in the root zone and plant uptake of chemicals. However, it is frequently unclear whether the plants directly metabolise the pollutants, or whether they only play an indirect role by supporting microbial action.
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https://doi.org/10.1007/978-0-230-22731-6es. This rhizosphere enhancement may be due to the action of a rhizodeposit component in inducing the 2,4-D pathway. We discuss the possibility that the stimulatory component belongs to the chemical class flavonoids.
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,INFLUENCE OF THE RHIZOSPHERE ON THE BIODEGRADATION OF ORGANIC XENOBIOTICS – A CASE STUDY WITH 2,4-Des. This rhizosphere enhancement may be due to the action of a rhizodeposit component in inducing the 2,4-D pathway. We discuss the possibility that the stimulatory component belongs to the chemical class flavonoids.
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SHEDDING LIGHT ON THE BIOAVAILABILITY OF ORGANIC POLLUTANTS,ental tool for a direct measurement of the bioavailability of hydrophobic organic compounds (HOCs) partitioned into surfactant micelles. In general, the results of this study demonstrated the utility of a novel bioreporter system capable of direct measurement of bioavailability of HOCs by the judicious choice of non-ionic surfactants.
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Leading in Inter-Organizational Networks their high degree of adaptation for living in habitats heavily contaminated with petroleum hydrocarbons. It was observed that petroleum hydrocarbon removal rates depended on fungal proteolytic activity, biomass production, and easily degradable protein content in the medium.
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