451 research outputs found

    D6.1. Report on kick-off meeting

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    A report on the kick-off meeting has been developed within Work Package 6 Management of the PFAStwin. This report describes the first consortium meeting and all the decisions made to achieve the PFAStwin project's goals through effective management and networking

    D4.2 Report on the recruitment procedure for hiring additional personnel for the GO of UBFC

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    This report provides an overview of the recruitment procedure conducted for hiring additional personnel for the International Cooperation and Project Management Office at the University of Belgrade - Faculty of Chemistry within WP4 of PFAStwin project. The purpose of the recruitment process was to identify and select highly qualified candidates who possess the necessary skills and experience to contribute effectively to the office's operations and objectives

    Bakterijsko luženje metala iz elektronskog otpada pomoću At. ferrooxidans

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    U ovom radu je ispitano biološko luženje metala (Cu, Sn, Ni, Zn i Ag) iz matičnih ploča personalnih računara pomoću Acidithiobacillus ferrooxidans (At. ferrooxidans).Poster: [https://cer.ihtm.bg.ac.rs/handle/123456789/5061

    Bakterijsko luženje metala iz elektronskog otpada pomoću At. ferrooxidans

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    Poster presented at XLIX Savetovanje Srpskog hemijskog društva, (13-14. maj 2011., Kragujevac)Poster: [https://cer.ihtm.bg.ac.rs/handle/123456789/5060

    Removal of organically bound sulfur from oil shale by iron(III)-ion generated-regenerated from pyrite by the action of Acidithiobacillus ferrooxidans

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    Oil shales are one of the alternative sources of hydrocarbon fuels ("synthetic petroleum"), characterized by the increased sulfur and nitrogen content which represent even greater ecological problem in use, compared to classical fuels. Acidithiobacillus ferrooxidans is capable of oxidizing pyrite to iron (III)-ion, providing a strong oxidation agent at low pH. We have used this oxidizing agent for oxidation of sulfur present in DBT as a substrate model to demonstrate its potential to oxidize organically bound sulfur in oil shales. An HCl-concentrate was used as the hydrocarbon matrix. Acidithiobacillus ferrooxidans is already recognized to oxidize the pyritic sulfur component, thereby potentially providing a complete sulfur removal system. By applying GC-MS we established that DBT transformation occurred by oxidation or elimination of sulfur. The products obtained are more soluble in water than parent compounds and this reduces concentration of organic sulfur.BIOHYDROMETALLURY: FROM THE SINGLE CELL TO THE ENVIRONMEN

    Gas Chromatography in Environmental Sciences and Evaluation of Bioremediation

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    Crude oil and its derivatives, as the key energy-generating substances and raw materials used for production, are very widely used in all domains of work and everyday life. With the advent of oil as a fuel, there was the most intense economic growth and it can be said that the entire modern civilization is based on the utilization of oil. However, rapid growth and development of civilization in the past two centuries with the mass use of fossil fuels has led to imbalances and distortions of natural processes. In spite of improvements in technology and equipment used for oil drilling, transport and processing by the petroleum industry, oil and oil derivatives represent a significant source of environmental contamination

    Bakterijsko luženje metala iz elektronskog otpada pomoću At. ferrooxidans

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    U ovom radu je ispitano biološko luženje metala (Cu, Sn, Ni, Zn i Ag) iz matičnih ploča personalnih računara pomoću Acidithiobacillus ferrooxidans (At. ferrooxidans).Poster: [https://cherry.chem.bg.ac.rs/handle/123456789/5406

    Bakterijsko luženje metala iz elektronskog otpada pomoću At. ferrooxidans

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    Poster presented at XLIX Savetovanje Srpskog hemijskog društva, (13-14. maj 2011., Kragujevac)Abstract: [https://cherry.chem.bg.ac.rs/handle/123456789/5405
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