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Featured researches published by K. Nikiforow.


Review of Scientific Instruments | 2017

CFD analysis of laboratory scale phase equilibrium cell operation

Mohamed Ali Jama; K. Nikiforow; Muhammad Saad Qureshi; Ville Alopaeus

For the modeling of multiphase chemical reactors or separation processes, it is essential to predict accurately chemical equilibrium data, such as vapor-liquid or liquid-liquid equilibria [M. Šoóš et al., Chem. Eng. PROCESS Process Intensif. 42(4), 273-284 (2003)]. The instruments used in these experiments are typically designed based on previous experiences, and their operation verified based on known equilibria of standard components. However, mass transfer limitations with different chemical systems may be very different, potentially falsifying the measured equilibrium compositions. In this work, computational fluid dynamics is utilized to design and analyze laboratory scale experimental gas-liquid equilibrium cell for the first time to augment the traditional analysis based on plug flow assumption. Two-phase dilutor cell, used for measuring limiting activity coefficients at infinite dilution, is used as a test case for the analysis. The Lagrangian discrete model is used to track each bubble and to study the residence time distribution of the carrier gas bubbles in the dilutor cell. This analysis is necessary to assess whether the gas leaving the cell is in equilibrium with the liquid, as required in traditional analysis of such apparatus. Mass transfer for six different bio-oil compounds is calculated to determine the approach equilibrium concentration. Also, residence times assuming plug flow and ideal mixing are used as reference cases to evaluate the influence of mixing on the approach to equilibrium in the dilutor. Results show that the model can be used to predict the dilutor operating conditions for which each of the studied gas-liquid systems reaches equilibrium.


Journal of Power Sources | 2013

Optimization study of purge cycle in proton exchange membrane fuel cell system

K. Nikiforow; H. Karimäki; Timo Keränen; J. Ihonen


International Journal of Hydrogen Energy | 2011

The use of on-line hydrogen sensor for studying inert gas effects and nitrogen crossover in PEMFC system

H. Karimäki; Luis C. Pérez; K. Nikiforow; Timo Keränen; J. Viitakangas; J. Ihonen


International Journal of Hydrogen Energy | 2016

Designing a hydrogen gas ejector for 5 kW stationary PEMFC system – CFD-modeling and experimental validation

K. Nikiforow; P. Koski; H. Karimäki; J. Ihonen; V. Alopaeus


International Journal of Hydrogen Energy | 2017

Discrete ejector control solution design, characterization, and verification in a 5 kW PEMFC system

K. Nikiforow; P. Koski; J. Ihonen


International Journal of Hydrogen Energy | 2014

Modeling and experimental validation of H2 gas bubble humidifier for a 50 kW stationary PEMFC system

K. Nikiforow; J. Ihonen; Timo Keränen; H. Karimäki; V. Alopaeus


Fuel Cells | 2014

A 50 kW PEMFC Pilot Plant Operated with Industry Grade Hydrogen – System Design and Site Integration

Timo Keränen; H. Karimäki; K. Nikiforow; S. Kukkonen; Heidi Uusalo; J. Viitakangas; J. Ihonen


Fluid Phase Equilibria | 2015

Measurement of activity coefficient at infinite dilution for some bio-oil components in water and mass transfer study of bubbles in the dilutor

Muhammad Saad Qureshi; Petri Uusi-Kyyny; Dominique Richon; K. Nikiforow; Ville Alopaeus


International Journal of Hydrogen Energy | 2017

Operational experiences of PEMFC pilot plant using low grade hydrogen from sodium chlorate production process

J. Ihonen; P. Koski; Valtteri Pulkkinen; Timo Keränen; H. Karimäki; Sonja Auvinen; K. Nikiforow; M. Kotisaari; H. Tuiskula; J. Viitakangas


Archive | 2018

Hydrogen supply in proton exchange membrane fuel cell systems

K. Nikiforow

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J. Ihonen

VTT Technical Research Centre of Finland

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H. Karimäki

VTT Technical Research Centre of Finland

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Timo Keränen

VTT Technical Research Centre of Finland

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P. Koski

VTT Technical Research Centre of Finland

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J. Viitakangas

VTT Technical Research Centre of Finland

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H. Tuiskula

VTT Technical Research Centre of Finland

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