@article{63842,
  author       = {{Hoener, Martin and Bierkandt, Thomas and Shaqiri, Shkelqim and Kasper, Tina}},
  issn         = {{1540-7489}},
  journal      = {{Proceedings of the Combustion Institute}},
  number       = {{1-4}},
  publisher    = {{Elsevier BV}},
  title        = {{{N2O oxidized combustion of ethylene: Detailed laminar flame structure and the significance of oxidizer decomposition kinetics for modeling}}},
  doi          = {{10.1016/j.proci.2024.105683}},
  volume       = {{40}},
  year         = {{2024}},
}

@article{60553,
  author       = {{Hoener, Martin and Bierkandt, Thomas and Shaqiri, Shkelqim and Kasper, Tina}},
  issn         = {{1540-7489}},
  journal      = {{Proceedings of the Combustion Institute}},
  number       = {{1-4}},
  publisher    = {{Elsevier BV}},
  title        = {{{N2O oxidized combustion of ethylene: Detailed laminar flame structure and the significance of oxidizer decomposition kinetics for modeling}}},
  doi          = {{10.1016/j.proci.2024.105683}},
  volume       = {{40}},
  year         = {{2024}},
}

@article{53078,
  abstract     = {{In spray-flame synthesis of nanoparticles, a precise understanding of the reaction processes is necessary to find optimal process parameters for the formation of the desired products. Coupling the chemistries of flame, solvent, and gas-phase species initially formed from the particle precursor in combination with the complex flow geometry of the spray flame means a special challenge for the modeling of the reaction processes. A new burner has been developed that is capable to observe the reaction of precursor solutions frequently used in spray-flame synthesis. The burner provides an almost flat, laminar, and steady flame with homogeneous addition of a fine aerosol and thus enables detailed investigation and modeling of the coupled reactions inde-pendent of spray formation and turbulent mixing. With its two separate supply channel matrices, the burner also enables the use of reactants that would otherwise react with each other already before reaching the flame. These features enable the investigation of a wide range of flame-based synthesis methods for nanoparticles and, due to the flat-flame geometry, kinetics models for these processes can be developed and validated. This work describes the matrix burner development and its gas flow optimization by simulation. Droplet-size dis-tributions generated by ultrasonic nebulization and their interaction with the burner structure are investigated by phase-Doppler anemometry. As an example for nanoparticle-for ming flames from solutions, iron-oxide nanoparticle-generating flames using iron(III) nitrate nonahydrate dissolved in 1-butanol were investigated. This effort includes measurements of two-dimensional maps of the flame temperature by a thermocouple and height-dependent concentration profiles of the main species by time-of-flight mass spectrometry. Exper-imental data are compared with 1D simulations using a reduced reaction mechanism. The results show that the new burner is well suited for the development of reaction models for precursors supplied in the liquid phase usually applied in spray-flame synthesis configurations.& COPY; 2022 The Combustion Institute. Published by Elsevier Inc. All rights reserved.}},
  author       = {{Apazeller, Sascha and Gonchikzhapov, Munko and Nanjaiah, Monika and Kasper, Tina and Wlokas, Irenäus and Wiggers, Hartmut and Schulz, Christof}},
  issn         = {{1540-7489}},
  journal      = {{Proceedings of the Combustion Institute}},
  keywords     = {{Physical and Theoretical Chemistry, Mechanical Engineering, General Chemical Engineering}},
  number       = {{1}},
  pages        = {{909--918}},
  publisher    = {{Elsevier BV}},
  title        = {{{A new dual matrix burner for one-dimensional investigation of aerosol flames}}},
  doi          = {{10.1016/j.proci.2022.07.166}},
  volume       = {{39}},
  year         = {{2023}},
}

@article{36812,
  author       = {{Apazeller, Sascha and Gonchikzhapov, Munko and Nanjaiah, Monika and Kasper, Tina and Wlokas, Irenäus and Wiggers, Hartmut and Schulz, Christof}},
  issn         = {{1540-7489}},
  journal      = {{Proceedings of the Combustion Institute}},
  keywords     = {{Physical and Theoretical Chemistry, Mechanical Engineering, General Chemical Engineering}},
  publisher    = {{Elsevier BV}},
  title        = {{{A new dual matrix burner for one-dimensional investigation of aerosol flames}}},
  doi          = {{10.1016/j.proci.2022.07.166}},
  year         = {{2023}},
}

@article{53079,
  author       = {{Bierkandt, Thomas and Hemberger, Patrick and Oßwald, Patrick and Gaiser, Nina and Hoener, Martin and Krüger, Dominik and Kasper, Tina and Köhler, Markus}},
  issn         = {{1540-7489}},
  journal      = {{Proceedings of the Combustion Institute}},
  keywords     = {{Physical and Theoretical Chemistry, Mechanical Engineering, General Chemical Engineering}},
  number       = {{2}},
  pages        = {{1699--1708}},
  publisher    = {{Elsevier BV}},
  title        = {{{A combustion chemistry study of tetramethylethylene in a laminar premixed low-pressure hydrogen flame}}},
  doi          = {{10.1016/j.proci.2022.07.205}},
  volume       = {{39}},
  year         = {{2023}},
}

@article{36810,
  author       = {{Knyazkov, Denis A. and Cherepanov, Andrey V. and Kiselev, Vitaly G. and Gerasimov, Ilya E. and Kasper, Tina and Shmakov, Andrey G.}},
  issn         = {{1540-7489}},
  journal      = {{Proceedings of the Combustion Institute}},
  keywords     = {{Physical and Theoretical Chemistry, Mechanical Engineering, General Chemical Engineering}},
  publisher    = {{Elsevier BV}},
  title        = {{{Experimental and kinetic modeling study of the positive ions in premixed ethylene flames over a range of equivalence ratios}}},
  doi          = {{10.1016/j.proci.2022.07.157}},
  year         = {{2022}},
}

@article{36811,
  author       = {{Kaczmarek, Dennis and Rudolph, Charlotte and Atakan, Burak and Kasper, Tina}},
  issn         = {{1540-7489}},
  journal      = {{Proceedings of the Combustion Institute}},
  keywords     = {{Physical and Theoretical Chemistry, Mechanical Engineering, General Chemical Engineering}},
  publisher    = {{Elsevier BV}},
  title        = {{{Kinetic investigation of the ozone-assisted partial oxidation of fuel-rich natural gas mixtures at elevated pressure}}},
  doi          = {{10.1016/j.proci.2022.07.195}},
  year         = {{2022}},
}

@article{36813,
  author       = {{Bierkandt, Thomas and Hemberger, Patrick and Oßwald, Patrick and Gaiser, Nina and Hoener, Martin and Krüger, Dominik and Kasper, Tina and Köhler, Markus}},
  issn         = {{1540-7489}},
  journal      = {{Proceedings of the Combustion Institute}},
  keywords     = {{Physical and Theoretical Chemistry, Mechanical Engineering, General Chemical Engineering}},
  publisher    = {{Elsevier BV}},
  title        = {{{A combustion chemistry study of tetramethylethylene in a laminar premixed low-pressure hydrogen flame}}},
  doi          = {{10.1016/j.proci.2022.07.205}},
  year         = {{2022}},
}

@article{32491,
  author       = {{Trubachev, S.A. and Korobeinichev, O.P. and Karpov, A.I. and Shaklein, A.A. and Glaznev, R.K. and Gonchikzhapov, M.B. and Paletsky, A.A. and Tereshchenko, A.G. and Shmakov, A.G. and Bespalova, A.S. and Yuan, Hu and Xin, Wang and Weizhao, Hu}},
  issn         = {{1540-7489}},
  journal      = {{Proceedings of the Combustion Institute}},
  keywords     = {{Physical and Theoretical Chemistry, Mechanical Engineering, General Chemical Engineering}},
  number       = {{3}},
  pages        = {{4635--4644}},
  publisher    = {{Elsevier BV}},
  title        = {{{The effect of triphenyl phosphate inhibition on flame propagation over cast PMMA slabs}}},
  doi          = {{10.1016/j.proci.2020.05.043}},
  volume       = {{38}},
  year         = {{2020}},
}

@article{32484,
  author       = {{Korobeinichev, O.P. and Karpov, A.I. and Bolkisev, A.A. and Shaklein, A.A. and Gonchikzhapov, M.B. and Paletsky, A.A. and Tereshchenko, A.G. and Shmakov, A.G. and Gerasimov, I.E. and Kumar, A.}},
  issn         = {{1540-7489}},
  journal      = {{Proceedings of the Combustion Institute}},
  keywords     = {{Physical and Theoretical Chemistry, Mechanical Engineering, General Chemical Engineering}},
  number       = {{3}},
  pages        = {{4017--4024}},
  publisher    = {{Elsevier BV}},
  title        = {{{An experimental and numerical study of thermal and chemical structure of downward flame spread over PMMA surface in still air}}},
  doi          = {{10.1016/j.proci.2018.06.005}},
  volume       = {{37}},
  year         = {{2018}},
}

@article{32480,
  author       = {{Korobeinichev, O.P. and Gonchikzhapov, M.B. and Paletsky, A.A. and Tereshchenko, A.G. and Shmakov, A.G. and Gerasimov, I.E. and Knyazkov, D.A.}},
  issn         = {{1540-7489}},
  journal      = {{Proceedings of the Combustion Institute}},
  keywords     = {{Physical and Theoretical Chemistry, Mechanical Engineering, General Chemical Engineering}},
  number       = {{2}},
  pages        = {{3279--3286}},
  publisher    = {{Elsevier BV}},
  title        = {{{Structure of counterflow flame of ultrahigh-molecular-weight polyethylene with and without triphenylphosphate}}},
  doi          = {{10.1016/j.proci.2016.06.117}},
  volume       = {{36}},
  year         = {{2016}},
}

@article{32477,
  author       = {{Korobeinichev, O.P. and Paletsky, A.A. and Kuibida, L.V. and Gonchikzhapov, M.B. and Shundrina, I.K.}},
  issn         = {{1540-7489}},
  journal      = {{Proceedings of the Combustion Institute}},
  keywords     = {{Physical and Theoretical Chemistry, Mechanical Engineering, General Chemical Engineering}},
  number       = {{2}},
  pages        = {{2699--2706}},
  publisher    = {{Elsevier BV}},
  title        = {{{Reduction of flammability of ultrahigh-molecular-weight polyethylene by using triphenyl phosphate additives}}},
  doi          = {{10.1016/j.proci.2012.06.045}},
  volume       = {{34}},
  year         = {{2012}},
}

