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Technická 5
166 28 Prague 6 – Dejvice
IČO: 60461373 / VAT: CZ60461373

Czech Post certified digital mail code: sp4j9ch

Copyright: UCT Prague 2015
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About the Department 
 
At present, the department provides education in the Chemistry and Materials bachelor programme, specifically in two specialisations Chemistry and Technology of Materials and Chemistry of Materials applied in Automotive Industry. In addition, the Department provides education in the following bachelor programmes: Biomaterials for Surgical Applications and Conservation and Restoration of Cultural Heritage Artefacts – Handicraft Items. 
In the master degree, the Department ensures education in the Chemie materiálů a materiálové inženýrství study programme, namely in the Metallic Materials specialisation. It also participates in the tuition of specialisations Nanomaterials and Conservation and Restoration of Cultural Heritage Artefacts.
In the PhD degree, the Department ensures tuition in the study programme Chemistry and Technology of Materials, namely in the specialisation Metallurgy.
Generally, the Department provides tuition in 38 courses per academic year (6 of which for the PhD study programme) and participates in tuition of 4 other courses. In the academic year 2011 / 2012, there are 21 students studying for the bachelor degree, 32 students for the master degree and 13 students for PhD degree. 
 
In terms of structure, the Department of Metallic Materials and Corrosion Engineering consists of three working groups (physical metallurgy, chemical metallurgy, corrosion engineering), each of which contributes in their own specific way to the tuition process and research activities. 
The Department co-organises several conferences specialising in metallic materials and corrosion, namely, the Aluminium conference focusing on the development of light alloys, the ACE conference focusing on corrosion and corrosion protection of materials and the Microscopy and non-destructive testing of materials conference. 
The Department of Metallic materials and Corrosion Engineering established the Josef Koritta Foundation, hich was registered in November 1994. For detailed information about the Josef Koritta Foundation click here. 

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About the Department 
 
At present, the department provides education in the Chemistry and Materials bachelor programme, specifically in two specialisations Chemistry and Technology of Materials and Chemistry of Materials applied in Automotive Industry. In addition, the Department provides education in the following bachelor programmes: Biomaterials for Surgical Applications and Conservation and Restoration of Cultural Heritage Artefacts – Handicraft Items. 
In the master degree, the Department ensures education in the Chemie materiálů a materiálové inženýrství study programme, namely in the Metallic Materials specialisation. It also participates in the tuition of specialisations Nanomaterials and Conservation and Restoration of Cultural Heritage Artefacts.
In the PhD degree, the Department ensures tuition in the study programme Chemistry and Technology of Materials, namely in the specialisation Metallurgy.
Generally, the Department provides tuition in 38 courses per academic year (6 of which for the PhD study programme) and participates in tuition of 4 other courses. In the academic year 2011 / 2012, there are 21 students studying for the bachelor degree, 32 students for the master degree and 13 students for PhD degree. 
 
In terms of structure, the Department of Metals and Corrosion Engineering consists of three working groups (physical metallurgy, chemical metallurgy, corrosion engineering), each of which contributes in their own specific way to the tuition process and research activities. 
The Department co-organises several conferences specialising in metallic materials and corrosion, namely, the Aluminium conference focusing on the development of light alloys, the ACE conference focusing on corrosion and corrosion protection of materials and the Microscopy and non-destructive testing of materials conference. 
The Department of Metals and Corrosion Engineering established the Josef Koritta Foundation, hich was registered in November 1994. For detailed information about the Josef Koritta Foundation click here. 

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Research at the Department of Metals and Corrosion Engineering can be divided in three groups according to their specialisation: 
 
Physical Metallurgy
 
The Physical Metallurgy group studies relations among production, structure and final properties of metallic materials. It looks for ways of attaining high mechanical properties of metals (strength, hardness). It develop new materials – e.g. new superficial layers on light alloys for automotive or aircraft industry, light intermetallic compounds for high-temperature applications, smart materials for surgical implants, e.g. stents. The physical metallurgy group also develops new metallic materials for production of biodegradable implants, materials for storing hydrogen and light high-strength nano-crystalline materials. 
 
Chemical Metallurgy
 
The Chemical Metallurgy group studies hydrometallurgy processes that might be employed in recovering metals from waste materials that are currently not being processed in the Czech Republic, as they are rather dumped or exported. The proposed waste-processing technologies are experimentally verified and frequently implemented in an industrial practice. 
 
Corrosion Engineering
 
Corrosion Engineering focuses on protection of materials from damage caused by corrosion mechanisms. Corrosion-related losses can be approximated to 3 to 5 percent of a gross domestic product of industrially developed countries. The Corrosion Engineering group deals with the latest issues confronted by the corrosion science. For instance, it studies mechanisms of corrosion of metallic containers used for permanent storage of nuclear waste in deep final repositories or biomaterials used for surgical implants. Last but not least, the Corrosion Engineering groups focuses on protection of metallic historical artefacts. 
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    [seo_title] => Ing. Šárka Msallamová
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________________________________________
E-mail: Sarka.Msallamova@vscht.cz
 
Tel.: +420220443750
 
Room: A61
________________________________________
Title: 
Assistant Professor
Education:
• 1988-1993: ICT Prague, M. Sc. in Chemical Technology of Metallic and Special Inorganic Materials
• 1993-1995: ICT Prague, pedagogical course in Chemistry Methodology 
• 2007 – to date: ICT Prague, Ph.D. student in Metallurgy 
Career:
• 1994-2002: Walter-Deritend – precise casting, R&D casting technologist 
• 2002 – to date: ICT Prague, Department of Metallic Materials and Corrosion Engineering, Assistant Professor
Specialisation:
• electrochemical corrosion protection methods 
• cathodic protection to steels
• Causes of Metallic Artefacts Corrosion and Methods of their Restoration and Conservation 
• corrosion of historical lead objects induced by volatile organic acids 
• stabilization and conservation of archaeological iron artefacts
• allotropic modifications of tin 
• methods of monuments research 
Lectures:
• Chemical calculations in inorganic chemistry 
• Specialised laboratory I. 
• Inorganic chemistry I 
• Chemistry and technology of Materials Laboratory 
• Metallic Materials Laboratory I 
• Restoration Technology Laboratory 
• Restoration Programme Laboratory 
Membership in professional organizations and editorial boards:
• Czech Association of Corrosion Engineers 
• Editor of the Corrosion and Materials Protection Journal 
• European Federation of Corrosion
• World Corrosion Organization
Research projects:
• Cathodic passivation of steel, 2007 – 2009, GA ČR, 106/07/1038,
• Research on properties of materials for save deposition of radioactive waste and development of evaluation procedures,  2009 – 2013, MPO ČR, TIP FR-TI1/362.
Publications:
• Novák, P., Hron, T., Msallamová, Š., Kouřil, M. A new indication system for demonstration of a corrosion  differential aeration cell. Chemicke Listy. 2011, roč. 105, č. 4, s. 273-277.
• Msallamová, Š., Novák P., Kouřil M., Mišková L. Vliv koncentrace anorganických solí v modelových půdních  elektrolytech na hodnotu pH v blízkosti katodicky chráněného povrchu uhlíkové oceli. Koroze a ochrana  materiálu, 2010, roč. 54, č. 4 , s. 187-191.
• Novák, P., Kouřil M., Msallamová Š. Expoziční zkoušky uhlíkové oceli v anoxických neutrálních vodných  roztocích. Koroze a ochrana materiálu, 2010, roč. 54, č. 4, s. 5-10.
• Novák P., Kouřil M., Msallamová Š. Pět mechanizmů koroze železa v neupravených vodách. Korozia v  energetike 2010, 2010.
• Msallamová Š., Dlabolová L., Jonášová Š., Šulcová V. Restaurování relikviáře Panny Marie Museums,  Monuments and Conservation 2010 Opava: Slezské zemské muzeum, 2010. s. 25-31.
• Msallamová Š., Jindrová E. Cínové křtitelnice z druhé poloviny 16. století. In Sborník z Konference  konzervátorů-restaurátorů Brno: Technické muzeum v Brně, 2010. s. 30 - 36.
• Msallamová Š., Hrbáčková E., Ohlídalová M. Stanovení příčin korozního napadení olověných bul řádu  Maltézských rytířů. In Sborník z Konference konzervátorů - restaurátorů konané 8. 9. - 10. 9. 2009 v Hradci  Králové Brno: Technické muzeum v Brně, 2009. s. 22-29.
• Novák P., Msallamová Š., Kouřil M., Hron T. Korozní paradox a katodická pasivace. In Sborník konference  AKI 2009 Praha: VŠCHT Praha, 2009. s. 16-22.
• Msallamová Š., Novák P., Děd J., Stoulil J. Elektrochemické odstraňování chloridů z korozních produktů  železných archeologických nálezů. In Konference AKI Koroze a protikorozní ochrana kovů, 2008 Praha:  Asociace korozních inženýrů ČR, 2008. 
• Novák P., Kouřil M., Msallamová Š., Hron T., Hruška J. Significance of steel cathodic passivation in corrosion.  In International Corrosion Congres LakeTahoe : NACE-ANS , 2008. 
• Novák P., Msallamová Š., Děd J., Kouřil M. Electrochemical extraction of chlorides from corrosion products of  iron archeaelogical objects. In Eurocorr 2008: The European Corrosion Congress,Edingburg Edingburg :  Dechema, 2008. 

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UCT Prague
Technická 5
166 28 Prague 6 – Dejvice
IČO: 60461373 / VAT: CZ60461373

Czech Post certified digital mail code: sp4j9ch

Copyright: UCT Prague 2015
Information provided by the Department of International Relations and the Department of R&D. Technical support by the Computing Centre.
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