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journalF. Reichmann, A. Tollkötter, S. Körner, N. Kockmann

Gas-liquid dispersion in micronozzles and microreactor design for high interfacial area

Chem. Eng. Sc., 2017, vol. 169, p. 151-163, 10.1016/j.ces.2016.10.028

talkS. Soboll, N. Kockmann

Influence of operating parameters and geometry on the performance of lab-scale, stirred-pulsed extraction columns

ProcessNet Jahrestagung, 12.-15.09.2016, Aachen

talkL. Hohmann, M. Matuschek, N. Kockmann

Betriebsbereich und Auslegung von Rohrapparaten für die kontinuierliche Kristallisation

ProcessNet Jahrestagung, 12.-15.09.2016, Aachen, DE

talkF. Reichmann, N. Kockmann

Thermopile Calorimetry for Continuous Flow in Polymer Microreactors made of PVDF

IMRET 14, 12.-14.09.2016, Beijing, China

posterL. Hohmann, M. Matuschek, N. Kockmann

Continuous Seeding Concept for a Continuous Tubular Cooling Crystallizer

BIWIC 2016 - 23rd International Workshop on Industrial Crystallization, 06.-08.09.2016, Magdeburg, Germany

talkF. Reichmann, N. Kockmann

Reaction Calorimetry for a Microreactor System made of Ultrasonic Hot Embossed Polymer Foils Using Seebeck Elements

ASME-ICNMM 2016, 10.-14.07.2016, Washington, D.C., USA

talkF. Reichmann, A. Tollkötter, N. Kockmann

Investigation of Bubble Break-Up in Microchannel Orifices

ASME-ICNMM 2016, 10.-14.07.2016, Washington, D.C., USA

talkS. K. Kurt, M. Akhtar, K. D. P. Nigam, N. Kockmann

Modular concept of a smart scale helically coiled tubular reactor for continuous operation of multiphase reaction systems

ASME-ICNMM 2016, 10.-14.07.2016, Washington, D.C., USA, ICNMM2016-8004

posterL. Hohmann, S. K. Kurt, N. Pouya Far, D. Vieth, N. Kockmann

Micro-/Milli-Fluidic Heat-Exchanger Characterization by Non-Invasive Temperature Sensors

ASME-ICNMM2016, 10.-14.07.2016, Washington, D.C., USA, ICNMM2016-8008

talkL. Hohmann, S. K. Kurt, N. Pouya Far, D. Vieth, N. Kockmann

Characterization of Tubular Micro-/Milli-Fluidic Heat-Exchangers by Non-Invasive Temperature Measurement

ASME-ICNMM2016, 10.-14.07.2016, Washington, D.C., USA, ICNMM2016-8008

talkS. Soboll, N. Kockmann

Effect of the pulsation pattern in pulsed-stirred extraction columns

ProcessNet Jahrestreffen Extraktion, 14.-15.03.2016, Weimar

talkL. Hohmann, O. Klaas, J. Ahlert, N. Kockmann

In-situ Seeding and Flow Profile Effects in Continuous Tubular Cooling Crystallization

ProcessNet Jahrestreffen Kristallisation, 09.-11.03.2016, Frankfurt a. M., DE

talkF. Reichmann, A. Tollkötter, N. Kockmann

Investigations of Bubble Break-Up Mechanism in Microchannel Nozzles

8th Workshop of Chemical and Biological Micro Laboratory Technology, 23.-25.02.2016, Elgersburg, Germany

journalT. Neumann, K. Boettcher, P. Ehrhard

Numerical investigation into a liquid displacing a gas in thin porous layers

Proc. Applied Mathematics ans Mechanics, 2016, vol. 16, 10.1002/pamm.201610291

journalF. Reichmann, A. Tollkötter, N. Kockmann

Investigation of Bubble Break-Up in Microchannel Orifices

ASME-ICNMM 2016 , 2016, p. V001T03A008, 10.1115/ICNMM2016-8048

journalS. K. Kurt, M. Akthar, K. P. D. Nigam, N. Kockmann

Modular Concept of a Smart Scale Helically Coiled Tubular Reactor for Continuous Operation of Multiphase Reaction Systems

ASME-ICNMM 2016, 2016, p. V001T13A001, 10.1115/ICNMM2016-8004

proceedingS. Soboll, N. Kockmann

Influence of Operating Parameters and Geometry on the Performance of Lab-scale, Stirred-Pulsed Extraction Columns

Chem. Ing. Tech., 2016, vol. 88, p. 1284, 10.1002/cite.201650043

journalL. Hohmann, S. K. Kurt, N. Pouya Far, D. Vieth, N. Kockmann

Micro-/Milli-Fluidic Heat-Exchanger Characterization by Non-Invasive Temperature Sensors

ASME-ICNMM 2016, 2016, p. V001T12A002, 10.1115/ICNMM2016-8008

proceedingJ. Glassey, N. Kockmann, V. Meshko, A. Porjazoska Kujundziski, M. Polakovic, L. M. Madeira, E. Schaer

iTeach: Evaluation of Teaching Efficiency in Chemical Engineering

Chem. Ing. Tech, 2016, vol. 88, p. 1226, DOI: 10.1002/cite.201650438

proceedingS. K. Kurt, M. Akthar, N. Kockmann

Vom Batch zum kontinuierlichen Prozess: Modulares Konzept eines Wendelrohrreaktors für einen Fällungsprozess

Chem. Ing. Tech., 2016, vol. 88, p. 1221, 10.1002/cite.201650373

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