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1.
RFCS project methenergy+ methane recovery and harnessing for energy and chemical uses at coal mine sites
Matjaž Kamenik, Janez Rošer, Salvador Ordonez, 2022, izvirni znanstveni članek

Opis: Ventilation Air Methane emissions (VAM) from coal mines lead to environmental concern because of their high global warming potential and the loss of methane (CH4) resources. How to tackle methane harnessing and its use was studied and analysed in the scope of the RCFS project, which was performed from 2017 till 2020, and coordinated by the University of Oviedo in Spain within the scope of an international consortium of eleven entities from Poland, Spain, the United Kingdom, Czechia, Greece, Slovenia and Sweden, combining universities, research institutions and industry (mostly Polish mines and the Slovenian Velenje mine). The main challenge tackled in the project was the use of methane released from both operating and abandoned mines, which is an environmental and safety hazard and also a useful source of energy. Therefore, the effective extraction of methane, its enrichment, purification, separation, thermal or chemical upgrading, and its use, considering coal mine site specifics, was assessed. Despite good operational results, after in-depth economic analysis of the integration, CAPEX and OPEX calculation, there turned out to be a high economic dependence on the cost of adsorbent, since adsorption was the most promising technology for concentrating the methane in these emissions. Therefore, the economic viability depends on the development of materials that meet a minimum cost and performance. Within the scope of the project, a lot of activities were carried out in order to widen and exploit the results.
Ključne besede: ventilation air methane, abandoned mine methane, coalmining, methane recovery, harnessing, thermal upgrading, chemical upgrading, adsorption-based technologies, materials development, thermal regenerative oxidizers, catalytic regenerative oxidizers, methanol, greenhouse gases
Objavljeno v DKUM: 30.10.2023; Ogledov: 507; Prenosov: 140
.pdf Celotno besedilo (1,30 MB)
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2.
Determination of Vs30 for seismic ground classification in the Ljubljana area, Slovenia
Janez Rošer, Andrej Gosar, 2010, izvirni znanstveni članek

Opis: The shear modulus, known as Gmax, is a key parameter for predicting the static and dynamic behavior of soils. Its value decreases by increasing the shear strain. This is because of reducing the soil’s stiffness as a result of increasing the shear deformation. The increasing of the shear modulus by increasing the shear strain is affected by some of the soil properties, such as the Void ratio (e), the Over consolidated ratio (OCR), the Normal stress (σ), the Plasticity index (PI), the Water content (ω%), the Shear strain rate, the Soil structure, and the Loading history, etc. In this paper, undrained, direct shear tests were conducted to study the effect of the plasticity index (PI) and the normal stress (σ) on the shear behavior and the shear modulus of remolded clays. The results show that the normalized shear modulus at a constant strain will generally increase as the σ and PI increase, and the common empirical equations for undisturbed soils at γ = 0~0.1 might be applicable for the disturbed soils too.
Ključne besede: microtremor survey methods, shear-wave velocity, seismic site effect, microzonation, Eurocode 8
Objavljeno v DKUM: 11.06.2018; Ogledov: 1223; Prenosov: 193
.pdf Celotno besedilo (1,07 MB)
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