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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 2017
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The Department of Water Technology and Environmental Engineering (DWTEE) is a part of the Faculty of Environmental Technology of the University of Chemistry and Technology, Prague. The Department provides education in Czech and English and is active in the research field related to water technology.  Currently, there are approximately 40 master students, 30 PhD. students and 24 staff members at the department. Many of the research projects run at the department are done in cooperation with companies and other research institutions. The department is involved in two International Erasmus Mundus study programmes: The International Master of Science in Environmental Technology and Engineering (IMETE) and the PhD. program Enviromental technologies for contaminated solids, soils and sediments (ETeCoS3).

The Department of Water Technology and Environmental Engineering has 6 informal working groups covering all topics regarding water technology, chemistry, and biology: Anaerobic Technologies, Biological Wastewater Treatment, Hydrobiology and Microbiology, Physical-Chemical Wastewater Treatment, Aquatic Chemistry and Analytics, and Drinking Water Treatment. The research interests of these groups is often shared and they cooperate with each other on scientific work and education. The department cooperates with many institutions and companies from the Czech Republic as well as from other countries.

DWTEE has a long standing history of cooperation with various international professional associations. Professor Vladimir Madera, the Head of the Department at that time, was one of the founding fathers of IAWPRC, the predecessor of International Water Association (IWA). In 1988, Prof. Grau (Head of the Department after Prof. Madera) was elected IWA's Vice-President; in 1990-1994, he served as the Association's President. Members of the DWTEE are active in the following IWA specialist groups:  Anaerobic Digestion; Design, Operation and Costs of Large Wastewater Treatment Plants; Microbial Ecology; and Water Engineering (former Activated Sludge Population Dynamics). DWTEE also cooperates with the European Water Association (EWA), where Professor Jiri Wanner was President between 2005-2007.

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The Department of Water Technology and Environmental Engineering (DWTEE) provides education in both Czech and English. If you are interested in a short, intensive course, Athens is the best choice for you. If you want to spend one or two semesters during your bachelor or masters studies at our Department and you are from an EU country, the Erasmus programme is designed for you. For students from both EU and non-EU countries, there is an alternative option with our Erasmus mundus programmes: Imete or ETeCoS3

The International Master of Science in Environmental Technology and Engineering (IMETE) programme is an International Erasmus Mundus programme and is delivered by a consortium of universities consisting of UCT Prague (Czech Republic), Ghent University (Belgium) and the UNESCO-IHE Institute for Water Education (Delft, Netherlands).

DWTEE participates as an associated partner in the PhD. Erasmus Mundus programme Enviromental technologies for contaminated solids, soils and sediments (ETeCoS3). PhD. students can come with financial support from Erasmus, Erasmus Mundus, or other foundations. ETeCoS3 is provided by a consortium consisting of the University of Cassino (Italy)UNESCO-IHE Institute for Water Education (Netherlands), and Université Paris-Est (France).

If you are interested in our research and would like to cooperate with us or work at our department, feel free to contact the leaders of working groups or the Head of the Department (Prof. Pavel Jeníček).

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The Department of Water Technology and Environmental Engineering (DWTEE) is composed of 6 working groups. Scientific work covers all topics regarding water technology, chemistry, and biology. The working groups often cooperate on scientific work and education. The Department cooperates with many institutions and companies from the Czech Republic as well as from other countries.

 

⇒ Publications

 

⇒ Projects and Grants

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Members of the Department of Water Technology and Environmental Engineering (DWTEE) take part in organizing international study programmes and work in many national and international expert associations. We will be glad to collaborate on research projects within one of the research fields studied at the Department.


→ International Study Programmes

DWTEE cooperates in two Erasmus Mundus international study programmes. For further information, contact Prof. Pavel Jeníček or Dr. Jan Bartáček.

šířka 215pxThe International Master of Science in Environmental Technology and Engineering (IMETE) programme is an International Erasmus Mundus programme. It trains people to apply and develop environmental technologies, offering a wide range of optional study fields in an international environment. IMETE is offered by a consortium consisting of three leading Higher Education Institutes: Ghent University (UGhent, Ghent, Belgium), UNESCO-IHE Institute for Water Education (UNESCO-IHE,Delft, Netherlands), and University of Chemical Technology, Prague (UCT Prague, Czech Republic). Student mobility within Europe is an integral part of the programme, which contains 120 ECTS (2 years). During the programme, students study in Delft (Netherlands), Prague (Czech Republic) and Ghent (Belgium). Master thesis research is carried out in one of these locations or at one of the many associated partner institutions all over the world. Between the first and the second years, summer school is held. More information here.

 

šířka 215px

The Environmental Technology for Contaminated Solids, Soils and Sediments (ETeCoS3)  programme provides education and research at the PhD level, training its doctoral candidates to think globally and co-work in multidisciplinary research teams. It is delivered by three universities: University of Cassino (Italy)UNESCO-IHE Institute for Water Education (Netherlands), and Université Paris-Est (France). The programme is centered around three key topics in environmental pollution: Heavy metals, recalcitrant organic pollutants, and contaminated solids. The programme focuses on fundamental and applied aspects to treat and remove these pollutants as well as on the development of recovery and reuse technologies with market potential. There will be a close connection to practical problems, as e.g. hot spots in the Balkans, brown fields in the Czech Republic, and sediments and soils polluted by mining activities in Minais Gerais (Brazil). UCT Prague (represented by the Department of Water Technology and Environmental Engineering) is an associated partner of the consortium.


→ Expert Associations

šířka 215pxThe Czech Water Association (CzWA) was formed in 2009 from the previous Association of Wastewater Treatment Experts (ACE CR). The CzWA is an independent non-governmental and non-profit organization promoting the sustainable and improved management of the total water cycle. The CzWA is a national member for the Czech Republic in the European Water Association and in the International Water Association.

 

šířka 215pxThe International Water Association (IWA) is a global reference point for water professionals, spanning the continuum between research and practice and covering all facets of the water cycle. Through its network of members and experts in research, practice, regulation, industry, consulting and manufacturing, IWA is in a better position than any other organisation to help water professionals create innovative, pragmatic and sustainable solutions to challenging global needs. Members of DWTEE are active in the following specialist groups of the association:  Anaerobic Digestion; Design, Operation and Costs of Large Wastewater Treatment Plants; Microbial Ecology; and Water Engineering (formerly Activated Sludge Population Dynamics).

šířka 215px

 

The European Water Association (EWA) today represent most European countries. The main goal of the association is to create a forum for the mutual information exchange in all aspects of water pollution control in general and of wastewater collection, treatment and disposal in particular. EWA provides professional service to the European Commission in matters dealing with water pollution control and consultancy of water legislation. The Czech Republic became a member of EWA in May 1997. The activities of EWA in the Czech Republic are organized and co-ordinated by the Czech Water Association (CzWA). Professor Jiri Wanner from DWTEE was EWA President between 2005-2007.

šířka 215pxThe World Toilet Organization (WTO) is a global non-profit organization committed to improving toilet and sanitation conditions worldwide. WTO is also one of the few organizations to focus on toilets instead of water, which receives more attention and resources under the common subject of sanitation. Founded in 2001 with 15 members, it now has 235 member organizations in 58 countries working towards eliminating the toilet taboo and delivering sustainable sanitation. Professor Jiri Wanner is a member of the WTO.

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Department Photogallery

šířka 215px

Department in News

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University of Chemistry and Technology, Prague 

Faculty of Environmental Technology
Department of Water Technology and Environmental Engineering
Technická 5   
166 28 Praha 6 - Dejvice
Czech Republic

Building B, Room No. 116

[ikona] => info [obrazek] => [ogobrazek] => [pozadi] => [obsah] =>

Contacts

Head of Department:

Bartáček Jan, prof.

Scientific Secretary:

Bindzar Jan, Ing., Ph.D.

Treasurer:

Sýkora Vladimír, doc. Ing., CSc.

Librarian:

Šmejkalová Pavla, Dr. Ing.

Administration:

Vymětalová Andrea

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DATA


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    [nazev] => Hydrobiology and Microbiology
    [seo_title] => Hydrobiology and Microbiology
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Hydrobiology and microbiology are significant in: assessing the ecological state of steady and running waters, studying eutrophication and acidification, evaluating the state and efficiency of water management and treatment technologies as well as for operations with cooling water.


Microorganisms can indicate both the processes that are in progress and the efficient technological conditions or status but they can also be used for biotechnological purposes. Selected microorganisms are even used in laboratories or semi-operations to detect the efficiency of newly introduced materials, agents and intermediates.


In this respect, biology mainly focuses on applying theoretical knowledge and its utilization to indicate the status of processes. Results of biological analyses should enable a technologist to draw relevant conclusions and take effective measures. What is also important is the legislative framework where the knowledge from biological fields is implemented. The future of biology lies in the application of molecular biology methods (PCR, DGGE etc.). All the methods are applicable both in teaching and laboratory practice. Another advantage is the connection of undemanding microscopic methods with cultivation methods and the methods carried out on a purely molecular-biological material.

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Effects on microclimate, air quality, water and soil ecosystems within the scope of hydric recultivation of brown coal mines.

Extensive hydric recultivation, flooding the residual pit of the Most – Ležáky quarry executed within the scope of revitalising the area affected by mining will significantly improve the countryside characteristics north of the Most city. The aim to recultivate brown coal mines is a subject to the assessment of environmental impacts (EIA). The objective of this assessment is to identify, describe and evaluate the expected effects of the projects being prepared (buildings, activities and technologies). The result of the project will consist of the complex methodology quantifying environmental impacts of brown coal mines recultivation. In accordance with the framework regulation for water management 2000/60/ES the assessment of the local environmental status is performed mainly on the basis of water and periphyton samples (the main components being plankton and benthos).

Importance of drinking water quality degradation occurring in its transport and accumulation

Drinking water will be safe in the whole supply system only if contamination of water resources is prevented, water is treated sufficiently (the pollutants present are removed completely or partially to comply with requirements for quality and safety of drinking water) and also the secondary contamination is prevented during drinking water accumulation and distribution and operations with it. Water tanks and towers as buildings cannot be substituted in the water supply system and they also largely contribute to the reliability of the system, its maintainability or vulnerability. These buildings are strategically significant and can influence the water quality. Their location also greatly affects economical costs of the water supply system and its operation.


Aspects for assessing the impact of water tanks on the quality of the water supplied were solved to define both external and internal factors which crucially influence the water quality and its stability in accumulation tanks as well as in the distribution network. There were identified different levels of importance of partial causes affecting the quality of treated, accumulated and transported drinking water, which was a significant step allowing us to focus on the most effective methods minimizing the formation of biofilms, present biological life in water tanks and towers and to specify the rules for exchange of water in accumulation tanks. A prototype of a filtration device was developed to be placed into venting shafts in water tanks. Technical directive I-D-48 Construction arrangement, operation and maintenance of water tanks was prepared during the project solution and it became the basis for the efficiency verification of the directive of ČSN 73 6650 Water tanks, which applies to the design and operation of water tanks (both of the ground and tower types, which are the components of the water network supplying the public with drinking water).


Currently, the issues related to biologically stable drinking water are being researched further in accordance with Plans for Drinking Water Safe Supply (Water Safety Plans) and hazard analysis (HACCP).

Research of nanosurfaces

This workplace belongs to the NANOPIN research centre. In its biological section it implements the methods testing material surface properties (applied on glass, fabrics, pipelines in contact with water). Currently, a directive is being prepared dealing with testing the antibacterial properties of nanosurfaces. Simple methods testing material surface properties will be then put into practice.
Tested materials will also include filtration materials that are expected to become a part of filters used in water treatment operations.

New materials and technologies for material conservation of historical monuments and preventive monument care.

The project goal is to develop new materials and technologies and to verify their functionality for the following purposes: efficient but gentle removal of unwanted secondary layers from material surfaces, mainly the layers of oils and polymers; consolidation of construction monuments damaged by weathering and impregnating the porous inorganic substrate with innovated solidifying materials; preventive protection of materials forming the monument surface against weathering effects, namely water, and against biodegradation by applying new hydrophobic and biocidic agents. Newly developed materials and technologies will focus on the increased efficiency and care of applications with regard to the materials treated and the environment, prolonged lifetime, reversibility and the quality of processes comprising monument preventive, restoration and conservation actions. The development stage is to implement new knowledge from the basic material research, mainly nanomaterials and nanotechnologies including their combinations with traditional materials and methods. The research focuses on solving the tasks of the topical priority Materials and technologies for protection and preservation of cultural heritage of the NAKI Program.

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Information provided by the Department of International Relations and the Department of R&D. Technical support by the Computing Centre.
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