TY - CONF A1 - Bettge, Dirk A1 - Kranzmann, Axel A1 - Bäßler, Ralph T1 - Korrosion von Stählen in überkritischem CO2 unter realitätsnahen Bedingungen N2 - Kohlendioxid (C02), das z.B. aus dem Abgas von fossilgefeuerten Kraftwerken, Stahlwerken oder Zementwerken abgetrennt wird, enthält Verunreinigungen. Dies sind beispielsweise Wasserdampf, 02, S0X, NOx und H2S. Derartige Gasmischungen sind instabil und ihre Komponenten können zu weiteren Produkten reagieren. Wenn Wassermoleküle zur Verfügung stehen, können saure Lösungen kondensieren. Die Korrosion von Werkstoffen und Bauteilen in Kontakt mit den transportierten Gasmischungen wird an der BAM in Laborversuchen untersucht, Das wichtigste Ziel ist, sichere und bezahlbare Kombinationen von zugelassenen Konstruktionswerkstoffen und Grenzwerten für Verunreinigungen im C02-Strom vorzuschlagen. In den bisherigen Arbeiten hat sich herausgestellt, dass für eine verlässliche Aussage die Experimente möglichst realitätsnah durchgeführt werden sollten. Hierfür müssen die Parameter: hoher Druck (um 100 bar), Temperatur (um 60 °C), Strömungsverhältnisse (laminar oder turbulent) sowie mechanische Spannung kombiniert werden. Für diese Anforderungen wurden Prüfstände entwickelt und Experimente durchgeführt. T2 - 47. Kraftwerktechnisches Kolloquium CY - Dresden, Germany DA - 13.10.2015 KW - Hochtemperaturkorrosion KW - CCS KW - Kraftwerkstechnik PY - 2015 SN - 978-3-934409-70-5 SP - 959 EP - 970 PB - SAXONIA CY - Freiberg AN - OPUS4-35038 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Bäßler, Ralph A1 - Keserovic, Amela T1 - Geothermal systems of Indonesia - Influence of different factors in the corrosion performance of carbon steel APE Q125 T2 - World Geothermal Congress 2015 CY - Melbourne, Australia DA - 2015-04-19 PY - 2015 AN - OPUS4-34695 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Bäßler, Ralph A1 - Schmidt, Ch. A1 - Alves, H. T1 - Suitability of Nickel-based Alloys and Titanium for Applications in Acids at 200°C T2 - VDM Symposium "Nickel alloys, tatanium and zirconium in the chemical process industy" auf der ACHEMA 2015 CY - Frankfurt am Main, Germany DA - 2015-06-17 PY - 2015 AN - OPUS4-34697 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Bäßler, Ralph A1 - Oelrich, Gerhard A1 - Yevtushenko, Oleksandra T1 - Elektrochemische Untersuchung der Beständigkeit von hochlegierten Werkstoffen zur Anwendung in Salzschmelzen von solarthermischen Anlagen T2 - Jährliches Korrosionsgespräch der VDM CY - Altena, Germany DA - 2015-08-27 PY - 2015 AN - OPUS4-34699 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Bäßler, Ralph A1 - Keserovic, Amela A1 - Sobetzki, Joana A1 - Klapper, Helmuth Sarmiento A1 - Dimper, Matthias T1 - Laboratory evalutation of metallic materials for geothermal applications T2 - EPRI International Conference on Corrosion in Power Plants CY - San Diego, USA DA - 2015-10-12 PY - 2015 AN - OPUS4-34700 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Bäßler, Ralph A1 - Yevtushenko, Oleksandra A1 - Hattendorf, H. T1 - Electrochemical Characterization of High Alloyed Materials in Molten Salts for Solar Energy Applications T2 - NACE International Corrosion Conference 2015 CY - Dallas, Texas, USA DA - 2015-03-15 PY - 2015 AN - OPUS4-34689 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Bäßler, Ralph A1 - Schmidt, Ch. A1 - Alves, H. T1 - Recent Experiences on Suitability and High Alloyed Materials in Acids at 200°C T2 - NACE International Corrosion Conference 2015 CY - Dallas, Texas, USA DA - 2015-03-15 PY - 2015 AN - OPUS4-34690 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Bäßler, Ralph A1 - Sobetzki, Joana A1 - Klapper, Helmuth Sarmiento A1 - Keserovic, Amela A1 - Dimper, Matthias T1 - Werkstoffuntersuchungen in unterschiedlichen Geothermalwässern für den Einsatz in Geothermieanlagen T2 - GFZ-Workshop, Fluid-Material-Gesteins-Wechselwirkungen in salinaren Thermalwässern - Erfahrungen aus den Projekten "Korrosion" und "Inhibitoren" CY - Potsdam, Germany DA - 2015-04-09 PY - 2015 AN - OPUS4-34691 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Bäßler, Ralph A1 - Keserovic, Amela A1 - Sobetzki, Joana A1 - Dimper, Matthias A1 - Klapper, Helmuth Sarmiento A1 - Stürzbecher, Dieter A1 - Schneider, Thomas A1 - Burkert, Andreas A1 - Sperling, T. A1 - Weidauer, K. A1 - Glor, C. A1 - Boduch, A. T1 - Laborergebnisse zur Korrosionsbeständigkeit metallischer Werstoffe aus dem Vorhaben "Langzeitkorrosionsuntersuchungen und -monitoring in salinaren Thermalgewässern" T2 - GFZ-Erfahrungsaustausch Geothermie-Projekte CY - Potsdam, Germany DA - 2015-04-10 PY - 2015 AN - OPUS4-34692 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Bäßler, Ralph A1 - Keserovic, Amela A1 - Sobetzki, Joana A1 - Klapper, Helmuth Sarmiento A1 - Dimper, Matthias T1 - Materials Evaluation for Geothermal Applications in Different Geothermal Waters T2 - World Geothermal Congress 2015 CY - Melbourne, Australia DA - 2015-04-19 PY - 2015 AN - OPUS4-34693 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Bäßler, Ralph A1 - Keserovic, Amela A1 - Sobetzki, Joana A1 - Sarmiento Klapper, Helmuth T1 - Materials evaluation for geothermal applications N2 - In order to provide basic information on corrosion resistance to the designers and users of geothermal plants different metallic materials including duplex and austenitic stainless steels as well as a nickel alloy have been evaluated in artificial geothermal fluids simulating the conditions in some locations with geothermal potential in Germany as well as two sites in Indonesia. By electrochemical and long-term exposure tests at 100 °C and 150 °C the suitability of low alloyed steel UNS G41300, stainless steels UNS S31603 UNS S31803, UNS S32760, super austenitic steel UNS N08031 and nickel based alloy UNS N06059 was investigated in these geothermal fluids, using critical potentials and corrosion rates. In high-saline environments the crevice corrosion turned out to be the determining mechanism. The nickel based alloy shows excellent corrosion resistance against pitting corrosion. Excluding its high cost, it is very good to be used in the construction of geothermal facilities having highly saline brines. Stainless and duplex steels exhibit a limited corrosion resistance concerning pitting and crevice corrosion. Therefore they are not suitable for highly saline brines. The super austenite UNS N08031 showed a temperature depending behavior. In non-saline environments the low-alloyed steel UNS G41300 (beside of the higher alloyed materials) could be employed as a constructional material for the geothermal power plant, as long as a sufficient wall thickness of the material is considered. KW - Geothermal KW - Corrosion KW - Crevice corrosion KW - Suitability PY - 2015 UR - http://www.jurnalteknologi.utm.my/index.php/jurnalteknologi/article/view/5164 SN - 2180-3722 VL - 75 IS - 7 SP - 7 EP - 14 PB - Penerbit UTM Press CY - Johor Bahru AN - OPUS4-34747 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Bäßler, Ralph A1 - Keserovic, Amela A1 - Sobetzki, Joana A1 - Sarmiento Klapper, Helmuth A1 - Dimper, Matthias T1 - Materials evaluation for geothermal applications in different geothermal waters N2 - The corrosion behavior of carbon Steel and different high-alloyed metals including duplex and austenitic stainless steels as well as a nickel alloy have been evaluated in artificial geothermal fluids simulating the conditions in some locations with geothermal potential in Germany, as well as two sites in Indonesia. The suitability of low alloyed Steel UNS G41300, stainless steels UNS S31603 UNS S31803, UNS S32760 and super austenitic Steel UNSN08031 in these geothermal waters, investigated by electrochemical measurements and exposure tests, is limited. The nickel based alloy UNS N06059 shows excellent corrosion resistance against pitting corrosion. Excluding its high cost, it is a very good alternative to be used in the construction of geothermal facilities having highly sahne brines. Stainless and duplex steels exhibit a limited corrosion resistance concerning pitting and crevice corrosion. Besides the higher alloyed materials, also the low-alloyed Steel UNS G41300 could be employed as a constructional material for the geothermal power plant in non-saline environments with moderate pH, as long as the wall thickness of the material vs. corrosion rate is taken into account. T2 - World Geothermal Congress 2015 CY - Melbourne, Australia DA - 19.04.2015 KW - Localized corrosion KW - Stainless steel KW - Ni-based alloy KW - Geothermal energy PY - 2015 SN - 978-1-877040-02-3 SP - paper 27011, S. 1 EP - 7 AN - OPUS4-34750 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Bäßler, Ralph A1 - Keserovic, Amela A1 - Sobetzki, Joana A1 - Sarmiento Klapper, Helmuth A1 - Dimper, Matthias T1 - Laboratory evaluation of metallic materials for geothermal applications N2 - In the last years, geothermal power has become a reliable and significant energy source. Because service conditions in geothermal facilities from deeply located aquifers are usually critical in terms of corrosion, materials selection is a very important issue. Preliminary evaluation of the material's suitability represents therefore a valuable strategy to ensure a secure and reliable operation of the facilities. In geothermal applications, the use of high-alloyed materials such as superaustenitic stainless steels, duplex stainless steels, and nickel-based alloys has been considered as a good alternative because of their remarkable corrosion resistance and appropriate mechanical properties. Nevertheless, the corrosion behavior of those metallic materials in geothermal fluids at service conditions has not been determined in many cases. In this work, laboratory tests including electrochemical investigations and exposure tests at 100 degrees C and 150 degrees C (1,500 kPa) showed the limits of suitability concerning localized corrosion of three different, corrosion-resistant alloys in the highly saline fluid of the North German Basin. T2 - EPRI International Conference on Corrosion in Power Plants CY - San Diego, CA, USA DA - 12.10.2015 KW - Geothermal KW - Corrosion KW - Crevice corrosion KW - Suitability PY - 2015 U6 - https://doi.org/10.5006/1.3676631 SP - paper 6 AN - OPUS4-34754 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Bäßler, Ralph A1 - Schmidt, C. A1 - Alves, H. T1 - Recent experiences on suitability of titanium and high alloyed materials in acids at 200°C N2 - In the literature there are not much data available to describe the corrosion behavior of titanium, nickel alloys and special stainless steels in acids at high temperature, in particular above the boiling point. Therefore, a laboratory testing program was performed with two titanium alloys (UNS R50400 and UNS R53400) to obtain corrosion data in formic acid, acetic acid, phosphoric acid, polyphosphoric acid, p-toluene sulfonic acid and lactic acid at 200 °C. Results were compared to previously published ones obtained on UNS N08031, UNS N06059 and UNS N10665. From the results it can be concluded that titanium does not always show better corrosion resistance than Ni-based alloys. UNS N06059 was the best choice for formic and acetic acids at temperatures of 200 °C. Both Ti-alloys are resistant in acetic acid. Some slight differences were observed for formic acid, where UNS R50400 is only resistant up to a 20 % solution and UNS R53400 in concentrated acid too. The phosphoric acid is extremely corrosive and none of the investigated materials was resistant. In the diluted acid (5 %) only UNS R53400 is resistant, whereas in 1 % solution all investigated materials performed satisfactory. UNS N10665 and UNS N06059 showed the best behavior in polyphosphoric acid. In 30 % concentrated p-toluene sulfonic acid at 200 °C all alloys tested were unsuitable. In very diluted acid (0.1 %) both Ti-alloys and the other three alloys behaved well. In lactic acid at 180 °C increased corrosion underneath deposits was detected; the best performance was observed for UNS N06059 and UNS R50400. T2 - NACE International Corrosion Conference 2015 CY - Dallas, TX, USA DA - 15.03.2015 KW - Titanium grade 2 (UNS 50400) KW - grade 12 (UNS 53400) KW - alloy 59 (UNS N06059) KW - alloy 31 (UNS N08031) KW - alloy B-2 (UNS N10665) KW - Inorganic acids KW - Organic acids KW - Corrosion PY - 2015 SP - paper 5658, S. 1 EP - 13 AN - OPUS4-34749 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Bäßler, Ralph A1 - Schmidt, C. A1 - Alves, H. T1 - Suitability of Nickel-based alloys and titanium for applications in acids at 200 °C N2 - In the literature there are not much data available to describe the corrosion behavior of titanium, nickel alloys and special stainless steels in acids at high temperature, in particular above the boiling point. Therefore, a laboratory testing program was performed with two titanium alloys (grade 2 - UNS R50400 and grade 12 - UNS R53400) to obtain corrosion data in formic acid, acetic acid, phosphoric acid, polyphosphoric acid, p-toluene sulfonic acid and lactic acid at 200 °C. Results were compared to previously published ones obtained on alloy 31 (UNS N08031), alloy 59 (UNS N06059) and B-2 (UNS N10665). From the results it can be concluded that titanium does not always Show better corrosion resistance than Ni-based alloys, Alloy 59 was the best choice for formic and acetic acids at temperatures of 200°C. Both Ti-alloys are resistant in acetic acid. Some slight differences were observed for formic acid, where Ti grade 2 is only resistant up to a 20 % solution and grade 12 in concentrated acid too. The phosphoric acid is extremely corrosive and none of the investigated materials was resistant. In the diluted acid (5 %) only Ti grade 12 is resistant, whereas in 1 % solution all investigated materials withstand. Alloy B-2 and alloy 59 showed the best behavior in polyphosphoric acid. In 30 % concentrated p-toluene sulfonic acid at 200 °C all alloys tested were unsuitable. In very diluted acid (0.1 %) both Ti-alloys and the other three alloys behaved well. In lactic acid at 180 °C increased corrosion underneath deposits was detected; the best performance was observed for alloy 59 and Ti grade 2. T2 - VDM Symposium "Nickel alloys, titanium and zirconium in the chemical process industry" CY - Frankfurt am Main, Germany DA - 17.06.2015 KW - Titanium grade 2 (UNS 50400) KW - grade 12 (UNS 53400) KW - Alloy 59 (UNS N06059) KW - Alloy 31 (UNS N08031) KW - Alloy B-2 (UNS N10665) KW - Inorganic acids KW - Organic acids KW - Corrosion PY - 2015 SP - paper 3 AN - OPUS4-34752 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Bäßler, Ralph A1 - Yevtushenko, Oleksandra A1 - Hattendorf, H. T1 - Electrochemical characterization of high alloyed materials in molten salts for solar energy applications N2 - Within the last years the use of feasible alternative energy sources has risen and is going to replace fossil resources more and more. Nevertheless, service conditions in solar facilities are due to the chemical composition of heat transmission media and temperatures, in many cases, extreme in terms of corrosion. Since the construction of power plants shall be economical with maximum life service, materials selection based on preliminary material qualification is essential to guarantee a secure and reliable operation of those facilities. The materials selection depends on the operation temperature of a power plant on the chemical composition of the transmission fluid used. In high corrosive environments Ni-based alloys are often used as an all-round solution for the construction of corrosion resistant parts, because of their good corrosion properties. However, there might be limits for their use regarding their corrosion behavior, with which this contribution deals. Experiences from the electrochemical characterization of materials in aqueous solutions are transferred to molten salts, providing a good addition to common exposure tests at temperatures from 450 0C to 600 0C. By means of electrochemical measurements and exposure tests the suitability of high alloyed materials in molten nitrate salt (60 % NaNO3/40 % KNO3) can be characterized. The method was verified on different Ni-based alloys (UNS N08810, UNS N06600) and Titanium (UNS R50250). T2 - NACE International Corrosion Conference 2015 CY - Dallas, TX, USA DA - 15.03.2015 KW - Localized corrosion KW - Nickel based alloys KW - Solar energy KW - Renewables KW - Electrochemical characterization KW - UNS N08810 KW - UNS N06600 KW - UNS R50250 PY - 2015 SP - paper 5659, S. 1 EP - 9 AN - OPUS4-34748 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Keserovic, Amela A1 - Bäßler, Ralph T1 - Geothermal systems of Indonesia - Influence of different factors on the corrosion performance of carbon steel API Q125 N2 - Among all of the existing electric power generation facilities, corrosion is considered to be the most severe on geothermal power plants. The focus of this research was set to evaluate the suitability of carbon steel API Q125 as a construction material on the geothermal sites Sibayak and Lahendong, Indonesia. The investigations were performed in the artificial geothermal brines under stagnant conditions by means of short-term electrochemical methods (Tafel extrapolation) and long-term exposure tests (up to 6 months). Furthermore, the influence of different parameters on the steels performance (temperature 70 °C, 100 °C and 175 °C, salinity 20 mg/L and 1,500 mg/L chlorides, pH 2 and 4) was assessed as well to ensure a “safer operating window” of a power plant. The results showed carbon steel API Q125 could be suitable for application in stagnant geothermal brines up to temperatures of 175 °C and a chloride concentration of 1,500 mg/L. Its applicability is limited in highly acidic environments (pH 2). T2 - World Geothermal Congress 2015 CY - Melbourne, Australia DA - 19.04.2015 KW - Corrosion KW - Carbon steel KW - Electrochemistry KW - Exposure KW - Sibayak KW - Lahendong PY - 2015 SN - 978-1-877040-02-3 SP - paper 27025, S. 1 EP - 8 AN - OPUS4-34751 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Keserovic, Amela A1 - Bäßler, Ralph T1 - Suitability of UNS S31603 steel for geothermal brines in volcanic areas - Influence of different physiochemical conditions on its corrosion behavior N2 - Geothermal sources are found to be the most aggressive natural environments for construction materials in terms of corrosion. This study was focused on investigating the suitability of stainless steel UNS S31603 in volcanic areas of geothermal sites Sibayak and Lahendong (Indonesia). Influence of different factors (temperatures up to 175 °C, chloride content up to 1500 mg/L and pH down to 2) was assessed to determine a 'safe operating window' of a power plant and assure the system integrity. Investigations were performed by means of electrochemical methods and long-term exposure tests. KW - Corrosion KW - Stainless steel KW - Sibayak KW - Lahendong KW - Geothermal energy PY - 2015 U6 - https://doi.org/10.1016/j.geothermics.2014.09.001 SN - 0375-6505 VL - 53 SP - 479 EP - 487 PB - Elsevier Science CY - Amsterdam [u.a.] AN - OPUS4-32742 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Yevtushenko, Oleksandra A1 - Bettge, Dirk A1 - Bäßler, Ralph A1 - Bohraus, Stefan T1 - Corrosion of CO2 transport and injection pipeline steels due to the condensation effects caused by SO2 and NO2 impurities N2 - Condensates from the gas stream in simulated CO2 transport pipelines have been identified during the experiments in the laboratory. Because of their acidic origin the corrosion resistance of pipeline steels used for CCS (carbon capture and storage) technology might be limited. Over the last years it has become clear that the amount of water and acid building constituents in the CO2 stream has to be controlled very well. In this work, condensates formed in experiments using gaseous CO2 containing high amounts of water, NO2 and SO2 were analyzed, replicated, and used for extensive electrochemical experiments. These highly acidic condensates were enriched with CO2 and then applied to characteristic steels planned to use in the CCS transport chain. Even high alloy steels are susceptible to localized corrosion under these conditions. The results implicate that condensation of aggressive acid droplets has to be avoided or the locations where condensation takes place have to be controlled extensively. KW - Carbon dioxide KW - Carbon steel KW - Corrosion KW - High alloy steel PY - 2015 U6 - https://doi.org/10.1002/maco.201307368 SN - 0947-5117 SN - 1521-4176 VL - 66 IS - 4 SP - 334 EP - 341 PB - Wiley-VCH CY - Weinheim AN - OPUS4-30036 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -