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Juha Salmela
Juha Salmela
Spinnova Ltd.
Email verificata su spinnova.fi - Home page
Titolo
Citata da
Citata da
Anno
Flocculation of microfibrillated cellulose in shear flow
A Karppinen, T Saarinen, J Salmela, A Laukkanen, M Nuopponen, ...
Cellulose 19, 1807-1819, 2012
1792012
Flocculated flow of microfibrillated cellulose water suspensions: an imaging approach for characterisation of rheological behaviour
E Saarikoski, T Saarinen, J Salmela, J Seppälä
Cellulose 19, 647-659, 2012
1352012
Novel approach to characterizing the growth of a fouling layer during membrane filtration via optical coherence tomography
Y Gao, S Haavisto, W Li, CY Tang, J Salmela, AG Fane
Environmental science & technology 48 (24), 14273-14281, 2014
1042014
Characterization of fluid dynamics in spacer-filled channels for membrane filtration using Doppler optical coherence tomography
Y Gao, S Haavisto, CY Tang, J Salmela, W Li
Journal of membrane science 448, 198-208, 2013
722013
The effect of wall depletion on the rheology of microfibrillated cellulose water suspensions by optical coherence tomography
T Saarinen, S Haavisto, A Sorvari, J Salmela, J Seppälä
Cellulose 21, 1261-1275, 2014
702014
High velocity dry spinning of nanofibrillated cellulose (CNF) filaments on an adhesion controlled surface with low friction
Y Shen, H Orelma, A Sneck, K Kataja, J Salmela, P Qvintus, A Suurnäkki, ...
Cellulose 23, 3393-3398, 2016
512016
Breakthrough in papermaking resource efficiency with foam forming
J Poranen, H Kiiskinen, J Salmela, J Asikainen, JT Keränen, ...
Paper Conference and Trade Show, PaperCon 2013, 807-814, 2013
342013
Modifying the flocculation of microfibrillated cellulose suspensions by soluble polysaccharides under conditions unfavorable to adsorption
A Sorvari, T Saarinen, S Haavisto, J Salmela, M Vuoriluoto, J Seppälä
Carbohydrate polymers 106, 283-292, 2014
322014
Settling of dilute and semidilute fiber suspensions at finite Re
J Salmela, DM Martinez, M Kataja
AIChE journal 53 (8), 1916-1923, 2007
322007
Rheological characterization of microfibrillated cellulose suspension using optical coherence tomography
S Haavisto, J Salmela, A Jäsberg, T Saarinen, A Karppinen, A Koponen
Tappi J 14 (5), 291-302, 2015
302015
New insight into rheology and flow properties of complex fluids with Doppler optical coherence tomography
S Haavisto, AI Koponen, J Salmela
Frontiers in Chemistry 2, 27, 2014
252014
Laboratory-scale pipe rheometry: a study of a microfibrillated cellulose suspension
S Haavisto, J Liukkonen, A Jäsberg, A Koponen, M Lille, J Salmela
Proc Papercon 2011, 357-370, 2011
232011
Pipe rheology of microfibrillated cellulose suspensions
T Turpeinen, A Jäsberg, S Haavisto, J Liukkonen, J Salmela, AI Koponen
Cellulose 27, 141-156, 2020
222020
Experimental investigation of the flow dynamics and rheology of complex fluids in pipe flow by hybrid multi-scale velocimetry
S Haavisto, MJ Cardona, J Salmela, RL Powell, MJ McCarthy, M Kataja, ...
Experiments in Fluids 58, 1-13, 2017
212017
Prediction of paper formation by fluidisation and reflocculation experiments
H Karema, J Salmela, M Tukiainen, H Lepomäki
12th Fundamental Research Symposium, 559-589, 2001
212001
Agent and composition for oilfield applications
A Laukkanen, JE Teirfolk, J Salmela, M Lille
US Patent 9,200,193, 2015
182015
Agent and composition for oilfield applications
A Laukkanen, JE Teirfolk, J Salmela, M Lille
US Patent 9,200,193, 2015
182015
Fractionation of non-Brownian rod-like particle suspensions in a viscoplastic fluid
A Madani, S Storey, JA Olson, IA Frigaard, J Salmela, DM Martinez
Chemical engineering science 65 (5), 1762-1772, 2010
172010
Characterization of micro-fibrillated cellulose fiber suspension flow using multi scale velocity profile measurements
M Kataja, R Lehto, S Haavisto, J Salmela, A Koponen
Nordic Pulp & Paper Research Journal 32 (3), 473-482, 2017
142017
Transient fluidisation of fibre suspension in straight channel flow
H Karema, M Kataja, M Kellomäki, J Salmela, P Selenius
International Paper Physics Conference, 369-379, 1999
141999
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
Articoli 1–20