The Ambassador Extraordinary and Plenipotentiary of the Republic of Indonesia is visiting VGTU

December 16, 2015
His Excellency Professor Dr Bomer Pasaribu, the Ambassador Extraordinary and Plenipotentiary of the Republic of Indonesia in Lithuania is on his visit at Vilnius Gediminas Technical University (VGTU) today.
 
The issues of the exchange between students and teachers of VGTU and Indonesia‘s higher education institutions, as well as the promotion and mutual recognition of higher education qualifications, acquired abroad, in both countries – Lithuania and Indonesia – will be discussed during this visit.
 
Since 2014, His Excellency Professor Dr Bomer Pasaribu has visited VGTU twice. At the time of his first visit, he promoted the universities of Indonesia, for establishing academic links.
 
After his visit at VGTU, the Rector of Bandung Institute of Technology, the largest science institution of technological sciences of Indonesia, visited VGTU and discussed cooperation in the areas of staff mobility and the number of doctoral students in the spheres of information technology, construction engineering, mechanical engineering, urban planning, computer design, architecture, creative industries and others.
 
The Republic of Indonesia is the fourth largest country in the world according to the population (over 250 million). Currently, the economy of this country is rising rapidly, together with the income of the population. The demand for higher education is also increasing, the higher education institutions being unable to meet the needs.
 
The Government of the country has already planned the development of the higher education sector, striving for the development of its availability until the year 2020. Thus, they intensified cooperation with Australia and the United States, as well as Europe, including Lithuania.

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New doctoral dissertation
New doctoral dissertation
VILNIUS TECH Library invites you to follow the published new dissertations. The dissertation „Resistance of technological waste-modified concrete to freeze–thaw cycles and alkaline corrosion“  („Technologinėmis atliekomis modifikuoto betono atsparumas užšaldymo ir atšildymo ciklams bei šarminei korozijai“) prepared at VILNIUS TECH by Edvinas Pocius. The dissertation was prepared in 2021–2026. Scientific consultant – Prof. Dr Džigita Nagrockienė. The dissertation was defended at the public meeting of the Dissertation Defence Council of the Scientific Field of Materials Engineering in the Aula Doctoralis Meeting Hall of Vilnius Gediminas Technical University at 10 a.m. on 8 June 2026. The dissertation investigates concrete modified with glass processing waste, concrete sludge, and a crystallizing additive. The goal is to develop concrete that is resistant to freeze–thaw cycles and alkali–silica reaction (ASR) by replacing part of the cement with glass waste and sand with concrete sludge. By selecting the optimal amount of technological waste, the aim is to improve the basic properties of concrete while maintaining its resistance to freeze–thaw cycles and alkali–silica reaction. The tasks addressed in the work include the analysis of glass processing waste and concrete sludge, evaluating their impact on the properties of the cement paste. After determining the recommended waste content, the physical and mechanical properties of the modified concrete are investigated, focusing on resistance to freeze–thaw cycles and alkali–silica reaction. This research sequence aims to substantiate the basic properties and resistance to freeze–thaw cycles and alkali–silica reaction of the newly developed material. The dissertation consists of an introduction, three chapters, general conclusions, a list of references, a list of the author‘s scientific publications, and a summary in English. The Introduction discusses the research problem and relevance, describes the object of research, formulates the aim and tasks, and outlines the research methodology, scientific novelty, practical significance, and statements for defence. The First Chapter discusses active mineral substances, their formation and use in concrete production. It discusses the generation of concrete sludge and glass waste, as well as the impact of their use on the physical and mechanical properties and durability of concrete. The durability of waste-modified concrete and the assessment of carbon dioxide emissions are also described. Conclusions are formulated, and the objectives of the dissertation are refined at the end of the chapter. The Second Chapter presents the materials used, their properties, and their formation. It describes the research methods and equipment chosen to investigate the structure and properties of the concrete and to calculate its CO2 emissions. The Third Chapter substantiates recommended dosages of glass waste and concrete sludge and their effects on cementitious systems. Glass waste was found suitable for cement replacement, and dry sludge for fine aggregate. An environmental impact assessment was also performed. Five scientific articles were published on the dissertation topic in the Web of Science database, Science Citation Index Expanded, peer-reviewed publications with a citation index. Doctoral dissertation readers can search via VILNIUS TECH Virtual Library.
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