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Dive into the research topics where Henrik Tolvanen is active.

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Featured researches published by Henrik Tolvanen.


Bioresource Technology | 2017

Anaerobic batch conversion of pine wood torrefaction condensate

Tharaka Rama Krishna C. Doddapaneni; Ramasamy Praveenkumar; Henrik Tolvanen; Marja R.T. Palmroth; Jukka Konttinen; Jukka Rintala

Organic compound rich torrefaction condensate, owing to their high water content and acidic nature, have yet to be exploited for practical application. In this study, microbial conversion of torrefaction condensate from pine wood through anaerobic batch digestion (AD) to produce methane was evaluated. Torrefaction condensate exhibited high methane potentials in the range of 430-492mL/g volatile solids (VS) and 430-460mL/gVS under mesophilic and thermophilic conditions, respectively. Owing to the changes in the composition, the methane yields differed with the torrefaction condensates produced at different temperatures (225, 275 and 300°C), with a maximum of 492±18mL/gVS with the condensate produced at 300°C under mesophilic condition. The cyclic batch AD experiments showed that 0.1VSsubstrate:VSinoculum is optimum, whereas the higher substrate loading (0.2-0.5) resulted in a reversible inhibition of the methane production. The results suggest that torrefaction condensate could be practically valorized through AD.


Biomass & Bioenergy | 2012

Comparing the energy required for fine grinding torrefied and fast heat treated pine.

Lauri Kokko; Henrik Tolvanen; Kai Hämäläinen; Risto Raiko


Biomass & Bioenergy | 2014

The effect of torrefaction on the chlorine content and heating value of eight woody biomass samples.

Tiina Keipi; Henrik Tolvanen; Lauri Kokko; Risto Raiko


Fuel | 2013

Fast pyrolysis of coal, peat, and torrefied wood: Mass loss study with a drop-tube reactor, particle geometry analysis, and kinetics modeling

Henrik Tolvanen; Lauri Kokko; Risto Raiko


Fuel | 2014

An experimental study and numerical modeling of combusting two coal chars in a drop-tube reactor: A comparison between N2/O2, CO2/O2, and N2/CO2/O2 atmospheres

Henrik Tolvanen; Risto Raiko


Energy Conversion and Management | 2016

Thermo-catalytic decomposition of methane: The effect of reaction parameters on process design and the utilization possibilities of the produced carbon

Tiina Keipi; Katariina E.S. Tolvanen; Henrik Tolvanen; Jukka Konttinen


Fuel | 2016

A study on raw, torrefied, and steam-exploded wood: Fine grinding, drop-tube reactor combustion tests in N2/O2 and CO2/O2 atmospheres, particle geometry analysis, and numerical kinetics modeling

Henrik Tolvanen; Tiina Keipi; Risto Raiko


Renewable Energy | 2018

Techno-economic analysis of a power to biogas system operated based on fluctuating electricity price

A. Pääkkönen; Henrik Tolvanen; Jukka Rintala


Energy | 2017

CFD based reactivity parameter determination for biomass particles of multiple size ranges in high heating rate devolatilization

Niko P. Niemelä; Henrik Tolvanen; Teemu Saarinen; Aino Leppänen; Tero Joronen


Energy Conversion and Management | 2018

Economic analysis of hydrogen production by methane thermal decomposition: Comparison to competing technologies

Tiina Keipi; Henrik Tolvanen; Jukka Konttinen

Collaboration


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Jukka Konttinen

Tampere University of Technology

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Risto Raiko

Tampere University of Technology

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Tiina Keipi

Tampere University of Technology

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Jukka Rintala

Tampere University of Technology

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Lauri Kokko

Tampere University of Technology

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Ramasamy Praveenkumar

Tampere University of Technology

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A. Pääkkönen

Tampere University of Technology

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Aino Leppänen

Tampere University of Technology

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Kai Hämäläinen

Tampere University of Technology

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