Rixrath, Doris
Official Name
Rixrath, Doris
Main Affiliation
Akademische Titel
DI(FH) DI
Email
doris.rixrath@forschung-burgenland.at
Scopus Author ID
56083304600
Status
staff
25 results
Now showing 1 - 10 of 25
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Item type:Publication, Reed in small, medium and industrial plants - an economic evaluation of the supply chain(2015); ; ;Beckmann, Georg1 221 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Carbon Foodprint - Fernkältebereitstellung mittels Kompressionskältemaschinen(2023-06-14); ;Weber, Rosa ;Schauer, Raphael; 27 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Simultaneous Heat and Cooling from District Heat Environmental Impacts of the Innovative Thermal Energy Conversion Process TeTra(2020-05-03); ; ; ; Beckmann, Georg15 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Assessing the technical feasibility of value chains for Reed based biofuels(2015); ;Kitzler, Hannes ;Beckmann, Georg; Pfeifer, Christoph301 371 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, 299 344 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, 28 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, 1 171 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Linked system assessment to support sustainable energy supplies “LiSA”(VILNIUS TECH, 2023-10-23); ;Schauer, Raphael ;Sabo, ElenaThe globally agreed climate targets require an expansion of renewable energies within the entire supply system. To support this a well-developed set of methods is needed to assess technical, environmental, social, and economic impacts. These methods must cover the entire life cycle and should enable an efficient and target-oriented assessment of energy technologies and systems. The Josef-Ressel (JR) centre LiSA (established 1st January 2022) will address this need. It will develop assessment methods focusing on thermal energy conversion systems embedded in a renewables-rich energy landscape.18 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, 537 1030 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Implementing an advanced waste separation step in an MBT plant: assessment of technical, economic and environmental impacts(Sage, 2013-06-23); ; ; ; Heavy fractions resulting from mechanical treatment stages of mechanical–biological waste treatment plants are posing very specific demands with regard to further treatment (large portions of inert and high-caloric components). Based on the current Austrian legal situation such a waste stream cannot be landfilled and must be thermally treated. The aim of this research was to evaluate if an inert fraction generated from this waste stream with advanced separation technologies, two sensor-based [near-infrared spectroscopy (NIR), X-ray transmission (XRT)] and two mechanical systems (wet and dry) is able to be disposed of. The performance of the treatment options for separation was evaluated by characterizing the resulting product streams with respect to purity and yield. Complementing the technical evaluation of the processing options, an assessment of the economic and global warming effects of the change in waste stream routing was conducted. The separated inert fraction was evaluated with regard to landfilling. The remaining high-caloric product stream was evaluated with regard to thermal utilization. The results show that, in principal, the selected treatment technologies can be used to separate high-caloric from inert components. Limitations were identified with regard to the product qualities achieved, as well as to the economic expedience of the treatment options. One of the sensor-based sorting systems (X-ray) was able to produce the highest amount of disposeable heavy fraction (44.1%), while having the lowest content of organic (2.0% Cbiogenic per kg waste input) components. None of the high-caloric product streams complied with the requirements for solid recovered fuels as defined in the Austrian Ordinance on Waste Incineration. The economic evaluation illustrates the highest specific treatment costs for the XRT (€23.15 per t), followed by the NIR-based sorting system (€15.67 per t), and the lowest costs for the air separation system (€10.79 per t). Within the ecological evaluation it can be shown that the results depend strongly on the higher heating value of the high caloric light fraction and on the content of Cbiogenic of the heavy fraction. Therefore, the XRT system had the best results for the overall GWP [−14 kg carbon dioxide equivalents (CO2eq) per t of input waste] and the NIR-based the worst (193 kg CO2 eq per t of input waste). It is concluded that three of the treatment options would be suitable under the specific conditions considered here. Of these, sensor-based sorting is preferable owing to its flexibility.1Scopus© Citations 4 194
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