<Record><identifier xmlns="http://purl.org/dc/elements/1.1/">URN:NBN:SI:DOC-SV54KQ40</identifier><date>2021</date><creator>Slemnik, Mojca</creator><relation>documents/doc/S/URN_NBN_SI_doc-SV54KQ40_001.pdf</relation><relation>documents/doc/S/URN_NBN_SI_doc-SV54KQ40_001.txt</relation><format format_type="issue">2</format><format format_type="type">article</format><format format_type="extent">str. 447-457</format><format format_type="volume">vol 68</format><identifier identifier_type="DOI">10.17344/acsi.2020.6590</identifier><identifier identifier_type="ISSN">1580-3155</identifier><identifier identifier_type="COBISSID_HOST">52568579</identifier><identifier identifier_type="URN">URN:NBN:SI:doc-SV54KQ40</identifier><language>eng</language><publisher>Slovenian Chemical Society</publisher><publisher>Slovensko kemijsko društvo</publisher><source>Acta chimica slovenica</source><rights>BY</rights><subject language_type_id="eng">CO2 corrosion</subject><subject language_type_id="eng">EIS</subject><subject language_type_id="eng">high pressure</subject><subject language_type_id="slv">korozija</subject><subject language_type_id="slv">nerjaveče jeklo</subject><subject language_type_id="eng">stainless steel</subject><subject language_type_id="slv">visoki pritisk</subject><title>Impact of high temperature and pressure to steel passivation in CO2 atmosphere</title></Record>