Dr. Marta Markiewicz
Gruppenleiterin
NameFrau Dr.-Ing. Marta Markiewicz
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Since 2019 | Leader of Contaminat Science Research Group funded by Kurt Eberhard Bode-Foundation. |
Since 04.2018 |
Research Associate in Institute of Water Chemistry, Technical University of Dresden. |
03.2017 – 03.2018 | On maternity leave. |
10.2015 – 02.2017 |
Research Associate at the Center for Environmental Research and Sustainable Technology (UFT), University of Bremen |
10.2013 – 09.2015 |
Marie Curie postdoctoral researcher at the UFT, University of Bremen. |
12.2012 – 09.2015 |
Postdoctoral researcher at the UFT, University of Bremen. |
11.2012 | PhD Eng. in Technical Sciences (Chemical Technology), Gdańsk University of Technology, Poland. |
11.2012 – 04.2013 |
Assistant in the Department of Chemical Technology, Gdańsk University of Technology. |
09 – 12.2011 | Guest researcher at UFT, University of Bremen. |
07 – 09.2010 | Guest researcher at Norwegian Geotechnical Institute, Oslo, Norway. |
2008-2010 | Several research periods at Advanced Ceramics Group, University of Bremen. |
07.2007 | M.Sc. Eng. in Biotechnological Engineering, Koszalin University of Technology, Poland. |
2005‐2007 | Post‐secondary School of Pharmacy, Koszalin, Poland. |
See also at LinkedIn, Google Scholar and ResearchGate
- G. Çelik, S. Stolte, M. Markiewicz, NSO-heterocyclic PAHs–Controlled exposure study reveals high acute aquatic toxicity, 2023, Journal of Hazardous Materials, 460 (15), p:132428 -132440,
- G. Çelik, S. Stolte, S. Müller, F. Schattenberg, and M.Markiewicz, Environmental persistence assessment of heterocyclic polyaromatic hydrocarbons - Ultimate and primary biodegradability using adapted and non-adapted microbial communities, 2023, Journal of Hazardous Materials, 460 (15), p:132370 -132383
- G. Çelik, S. Beil, S. Stolte, M. Markiewicz, Environmental hazard screening of heterocyclic polyaromatic hydrocarbons - physicochemical data and in silico models, 2022, Environmental Science & Technology, 57 (1), p: 570–581.
- S. Charazińska, P. Lochyński, M. Markiewicz, S. Stolte, E. Burszta-Adamiak, Treatment of electropolishing industrial wastewater and its impact on the immobilisation of Daphnia magna, Environmental Research, 2022, 212, p:113438.
- Y.-Q. Zhang, M. Lykaki, M. Markiewicz, M.T. Alrajoula, C. Kraas, S. Stolte, Environmental contamination by microplastics originating from textiles: Emission, transport, fate and toxicity, Journal of hazardous materials, 2022, 430, p: 128453G.
- S. Beil, M. Markiewicz, C. S. Pereira, P. Stepnowski, J. Thöming, S. Stolte, Toward the proactive design of sustainable chemicals: ionic liquids as a prime example, Chemical Reviews, 2021, 121(21(), p:13132–13173.
- M. Lykaki, Y.-Q. Zhang, M. Markiewicz, S. Brandt, S. Kolbe, J. Schrick, M. Rabe, S. Stolte, The influence of textile finishing agents on the biodegradability of shed fibres, Green Chemistry, 2021, 23 (14), p: 5212-5221.
- Y.-Q. Zhang, M. Lykaki, M. T. Alrajoula, M. Markiewicz, C. Kraas, S. Kolbe, K. Klinkhammer, M. Rabe, R. Klauer, E. Bendt, S. Stolte, Microplastics from textile origin–emission and reduction measures, Green Chemistry, 2021, 23, p: 5247-5271.
- M. Markiewicz, P. Lewandowski, M. Spychalski, R. Kukawka, J. Feder-Kubis, S. Beil, M. Smiglak, S. Stolte, New bifunctional ionic liquid-based plant systemic acquired resistance (SAR) inducers with improved environmental hazard profile, Green Chemistry, 2021, 14, p: 5138-5149.
- F. Kerkel, M. Markiewicz, S. Stolte, E. Müller, W. Kunz, The green platform molecule gamma-valerolactone–ecotoxicity, biodegradability, solvent properties, and potential applications, Green Chemistry, 2021, 23(8), p: 2962-2976.
- Y.-Q. Zhang, S. Stolte, G. Alptekin, A. Rother, M. Diedenhofen, J. Filser, M. Markiewicz, Mobility and adsorption of liquid organic hydrogen carriers (LOHCs) in soils – environmental hazard perspective, Green Chemistry, 2020, 22, p: 6519-6530.
- K. Erfurt, M. Markiewicz, A. Siewniak, D. Lisicki, M. Zalewski, S. Stolte, A. Chrobok, Biodegradable surface active D-glucose based quaternary ammonium ionic liquids in the solventless synthesis of chloroprene, ACS Sustainable Chemistry & Engineering, 2020, 8 (29), p: 10911-10919.
- M. Markiewicz, Biodegradability of Ionic Liquids (ILs) Under Aerobic and Anaerobic Conditions, Encyclopaedia of Ionic Liquids, Section 4: Toxicology and Biodegradation of Ionic Liquids, 2020, Springer Nature, ISBN: 978-981-10-6739-6.
- B. Dębski, A. Hänel, R. Aranowski, S. Stolte, M. Markiewicz, T. Veltzke, I. Cichowska-Kopczyńska, Thermodynamic interpretation and prediction of CO2 solubility in imidazolium ionic liquids based on regular solution theory, Journal of Molecular Liquids, 2019, 291, p: 110477-110490.
- L. Morandeira, M. Danho, M. Markiewicz, S. Stolte, M. Á. Sanromán, A. Rodriguez, F. J. Deive, Sketching a suitable immobilization strategy for ionic liquid removal in a fixed-bed bioreactor, ACS Sustainable Chemistry & Engineering, 2019, 7(4), p: 4307-4314.
- N. Vieira, S. Stolte, J. Araújo, L.P. Rebelo, A. Pereiro, M. Markiewicz, Acute Aquatic Toxicity and Biodegradability of Fluorinated Ionic Liquids, ACS Sustainable Chemistry & Engineering, 2019, 7(4), p: 3733-3741.
- M. Markiewicz, Y.Q. Zhang, M. T. Empl, M. Lykaki, J. Thöming, P. Steinberg, S. Stolte, Hazard assessment of quinaldine-, alkylcarbazole-, benzene-and toluene-based liquid organic hydrogen carrier (LOHCs) systems, Energy & Environmental Science, 2019; 12(1), p:366-383.
- S. Bemowsky, A. Rother, W. Willmann, J. Köser, M. Markiewicz, R. Dringen, S. Stolte, Quantification and biodegradability assessment of meso-2, 3-dimercaptosuccinic acid adsorbed on iron oxide nanoparticles, Nanoscale Advances, 1(9), p: 3670-3679.
- M. Markiewicz, J. Kumirska, I. Lynch, M. Matzke, J. Köser, S. Bemowsky, D. Docter, R. Stauber, D. Westmeier and S. Stolte, Changing environments and biomolecule coronas: consequences and challenges for the design of environmentally acceptable engineered nanoparticles, Green Chemistry, 2018, 44 (17), p: 6094-6121.
- Y.Q. Zhang, M. Markiewicz, J. Filser, S. Stolte, Toxicity of a Quinaldine-Based Liquid Organic Hydrogen Carrier (LOHC) System toward Soil Organisms Arthrobacter globiformis and Folsomia candida, Environmental Science & Technology, 2017, 52(1), p: 258-265.
- J. Dołżonek, C.W. Cho, P. Stepnowski, M. Markiewicz, J. Thöming, S. Stolte, Membrane partitioning of ionic liquid cations, anions and ion pairs – Estimating the bioconcentration potential of organic ions, Environmental Pollution, 2017, 228, p: 378-389.
- M. Markiewicz, C. Jungnickel, S. Stolte, A. Białk-Bielińska, J. Kumirska, W. Mrozik, Ultimate biodegradability and ecotoxicity of orally administered antidiabetic drugs, Journal of Hazardous Materials, 2017, 333, p:154-161.
- M. Markiewicz, C. Jungnickel, S. Stolte, A. Białk-Bielińska, J. Kumirska, W. Mrozik, Primary degradation of antidiabetic drugs, Journal of Hazardous Materials, 2017, 324, p:428-435.
- A. Puckowski, S. Stolte, M. Wagil, M. Markiewicz, P. Łukaszewicz P. Stepnowski, A. Białk-Bielińska, Mixture toxicity of flubendazole and fenbendazole to Daphnia magna, International Journal of Hygiene and Environmental Health, 2017, 220 (3), p: 575-582.
- M. Hummel, M. Markiewicz, S. Stolte, M. Noisternig, D.E. Braun, T. Gelbrich U. J. Griesser, G. Partl, B Naier, K. Wurst, B. Krüger, H. Kopacka, G. Laus, H. Huppertz, H. Schottenberger, Phase-out-compliant fluorosurfactants: unique methimazolium derivatives including room temperature ionic liquids, Green Chemistry, 2017, 19 (14), p: 3225-3237.
- M. Markiewicz, J. Maszkowska, V. Nardello-Rataj, S. Stolte, Readily biodegradable and low-toxic biocompatible ionic liquids for cellulose processing, RSC Advances, 2016, 6 (90), p:87325-87331.
- M. Markiewicz, J. Henke, A. Brillowska-Dąbrowska, S. Stolte, J. Łuczak, C. Jungnickel, Bacterial consortium and axenic cultures isolated from activated sewage sludge for biodegradation of imidazolium based ionic liquid, Chapter 5 in Sewage and Landfill Leachate – Assessment and remediation of Environmental Hazard, edited by Marco Ragazzi, CRC Press Taylor and Francis Group, 2016, p:83-103.
- M. Markiewicz, A. Przewodowska, W. Przewodowski, W. Stochła, Wykorzystanie chromatografii membranowej do odzyskiwania białek aktywnych biologicznie z odpadów przemysłu skrobiowego, Annual Set The Environment Protection Rocznik Ochrona Srodowiska, 2015, 17, p: 1699-1714.
- D. Docter, D. Westmeier, M. Markiewicz, S. Stolte, S. K. Knauer and R. H. Stauber, The nanoparticle biomolecule corona: lessons learned – challenge accepted?, Chemical Society Reviews, 2015, 44 (17), p:6094-6121.
- M. Markiewicz, C. Jungnickel, C.-W. Cho, S. Stolte, Mobility and biodegradability of an imidazolium based ionic liquid in soil and soil amended with waste sewage sludge, Environmental Science: Processes & Impacts, 2015, 17 (8), p:1462-1469.
- M. Markiewicz, Y.Q. Zhang, A. Bösmann, N. Brückner, J. Thöming, P. Wasserscheid, S. Stolte, Environmental and Health Impact Assessment of Liquid Organic Hydrogen Carrier (LOHC) systems - Challenges and Preliminary Results, Energy and Environmental Science, 2015, 8 (3), p:1035-1045.
- H. Bui Thi Thu, M. Markiewicz, J. Thöming, R. M. Reich, V. Korinth, M. Cokoja, F. E. Kühn, S. Stolte, Catalytically active perrhenate based ionic liquids: a preliminary ecotoxicity and biodegradability assessment, New Journal of Chemistry, 2015, 39 (7), p: 5431-5436.
- R. Salchner, G. Laus, S. Haslinger, V. Kahlenberg, K. Wurst, D. E. Braun, S. Vergeiner, H. Kopacka, H. Schottenberger, A. Puckowski, M. Markiewicz, S. Stolte, S. Nerdinger, Structural and ecotoxicological profile of n-alkoxymorpholinium-based ionic liquids, Heterocycles, 2015, 90(2), p:1018-1037.
- M. Markiewicz, J. Henke, A. Brillowska-Dąbrowska, S. Stolte, J. Łuczak, C. Jungnickel, Bacterial consortium and axenic cultures isolated from activated sewage sludge for biodegradation of imidazolium based ionic liquid, International Journal of Environmental Science and Technology, 2014, 11, p:1919-1926.
- M. Markiewicz, M. Piszora, N. Caicedo, C. Jungnickel, S. Stolte, Toxicity of ionic liquid cations and anions towards activated sewage sludge organisms from different sources – consequences for biodegradation testing and wastewater treatment plant operation, Water Research, 2013, 47 (9), p:2921-2928.
- J. Łuczak, C. Jungnickel M. Markiewicz, J. Hupka, Solubilization of benzene, toluene and xylene (BTX) in aqueous micellar solutions of amphiphilic imidazolium ionic liquids, Journal of Physical Chemistry B, 2013, 117 (18), p: 5653-5658.
- M. Markiewicz, W. Mrozik, K. Rezwan, J. Thöming, J. Hupka, C. Jungnickel, Changes in zeta potential of imidazolium ionic liquids modified minerals – implications for determining mechanism of adsorption, Chemosphere, 2013, 90(2), p: 706-712.
- M. Markiewicz, Z. Lustig, S. Stolte, J. Łuczak, M. Skup, J. Hupka, C. Jungnickel, Influence of microbial adaption and supplementation of nutrients on the biodegradation of ionic liquids in sewage sludge treatment processes, Journal of Hazardous Materials, 2011, 195, p: 378-382.
- J. Łuczak, M. Markiewicz, J. Thoming, J. Hupka, C. Jungnickel, Influence of the Hofmeister anions on self-organization of 1-decyl-3-methylimidazolium chloride in aqueous solutions, Journal of Colloid and Interface Science, 2011, 362 (2), p: 415,422.
- C. Jungnickel, W. Mrozik, M. Markiewicz, J. Łuczak, Fate of ionic liquids in soils and sediments, Current Organic Chemistry, 2011, 15(12), p: 1928-1945.
- M. Joskowska, B. Debski, J. Luczak, M. Markiewicz, R. Aranowski, J. Hupka, Determination of carbon dioxide diffusion coefficients in supported ionic liquids membranes, Przemysl Chemiczny, 89(11), p: 1453-1457.
- M. Markiewicz, C. Jungnickel, A. Markowska, U. Szczepaniak, J. Hupka, 1-methyl-3-octylimidazolium chloride and primary biodegradation analysis in activated sewage sludge. Molecules, 2009, 14:p. 4396-4405.
- M. Markiewicz, J. Hupka, M. Joskowska, C. Jungnickel, Potential application of ionic liquids in aluminium production - economic and ecological assessment, Physicochemical Problems of Mineral Processing, 2009, 4, 73-84.
- M. Markiewicz, C. Jungnickel, J. Hupka, Sorption of ionic liquids, Environment Protection Engineering, 2009, 3, 53-64.