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Title:Potencial zelenega vodika v stavbnem sektorju
Authors:ID Marinič, Dragica (Author)
Files:.pdf PDF - Presentation file, download (2,55 MB)
MD5: 475CA45676C1974C302B729E18A17744
 
URL URL - Source URL, visit https://www.zveza-dgits.si/gradbeni-vestnik/
 
Language:Slovenian
Typology:1.01 - Original Scientific Article
Organization:Logo ZAG - Slovenian National Building and Civil Engineering Institute
Abstract:Številne države se zavezujejo k trajnostnemu razvoju in podnebni nevtralnosti, pri čemer so rešitve za energetske in okoljske izzive ključne za prehod v brezogljično gospodarstvo ter družbo. Energetska kriza in visoke cene energije so vplivale na pospešitev prehoda na čisto in trajnostno energijo. Izziv energetsko odvisne Evrope je v iskanju novih načinov pridobivanja energije iz obnovljivih virov energije in ob zavedanju, da obstoječa proizvodnja in poraba energije povzročata več kot 75 % emisij toplogrednih plinov v Evropski uniji. Med večje porabnike energije spada tudi gradbeništvo s stavbnim sektorjem, ki prispeva velik ogljični odtis. Pri uvajanju tehnologij obnovljivih virov energije nam je lahko v pomoč obnovljivi, zeleni nizkoogljični vodik zaradi svoje prilagodljivosti kot nosilec energije in medij za shranjevanje. Z njegovo uporabo lahko prispevamo k stroškovno učinkovitem razogljičenju Evropske unije in zmanjšanju njene odvisnosti od uvoza fosilnih goriv. Raba zelenega vodika pri ogrevanju stavb je v začetni fazi testiranja. S podporo zakonodaje in strategij na evropski in nacionalnih ravneh, tehnološkimi raziskavami in inovacijami, pametnim upravljanjem virov in pametno potrošnjo bomo lahko izboljšali industrijske ekosisteme, zmanjšali tveganja in prispevali k neto ničelnim emisijam. Namen prispevka je prikazati posamezne praktične primere uporabe zelenega vodika v stavbnem sektorju, pri čemer imajo pomembno vlogo zakonodaja, naložbe v infrastrukturo in proizvodnjo, varnost ter potrebe na trgu.
Keywords:energija, obnovljivi viri energije, vodikove tehnologije, zeleni vodik, stavbe, razogljičenje, odprti dostop
Publication status:Published
Publication version:Version of Record
Publication date:01.05.2023
Publisher:Zveza društev gradbenih inženirjev in tehnikov Slovenije
Year of publishing:2023
Number of pages:str. 110-120
Numbering:Letn. 72
PID:20.500.12556/DiRROS-16590 New window
UDC:520.131.1:620.92(4-6EU)
ISSN on article:0017-2774
COBISS.SI-ID:153360131 New window
Publication date in DiRROS:30.05.2023
Views:758
Downloads:371
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Record is a part of a journal

Title:Gradbeni vestnik. glasilo Zveze društev gradbenih inženirjev in tehnikov Slovenije
Shortened title:Gradb. vestn.
Publisher:Zveza društev gradbenih inženirjev in tehnikov Slovenije
ISSN:0017-2774
COBISS.SI-ID:859140 New window

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License:CC BY-NC-SA 4.0, Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International
Link:http://creativecommons.org/licenses/by-nc-sa/4.0/
Description:A Creative Commons license that bans commercial use and requires the user to release any modified works under this license.

Secondary language

Language:English
Title:The potential of green hydrogen in the building sector
Abstract:Many countries are committed to sustainable development and climate neutrality, whereby solutions to energy and environmental challenges are key components for the transition to carbon-free economy and society. The energy crisis and the resulting high energy prices have had an impact on the acceleration of the transition to clean and sustainable energy. The challenge of Europe’s energy-dependence lies within the search for new ways of obtaining energy from renewable energy sources and the awareness that the existing energy production and consumption cause more than 75% of greenhouse gas emissions in the European Union. Major energy consumers, such as the construction sector with buildings. contribute to a large part of the carbon footprint. Renewa- ble, green, low-carbon hydrogen can help us in the deployment of renewable energy technologies due to its flexibility as an energy carrier and storage medium. By making use of it, we can contribute to the cost-effective decarbonisation of the European Union and reduce its dependence on fossil fuel imports. Green hydrogen as a source of building heating is in the initial phase of testing. By supporting legislation and strategies at the European and national levels, technological research and innovation, smart resour- ce management and smart resource consumption, we will be able to improve industrial ecosystems, reduce risks, and contribute to net zero emissions. The purpose of this article is to show individual practical cases of using green hydrogen in the building sector, where legislation, investments in infrastructure and production, safety and market need to play an important role.
Keywords:energy, renewable energy, hydrogen technologies, green hydroge, buildings, decarbonization, open access


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