A study on supercritical water gasification of black liquor conducted in stainless steel and nickel-chromium-molybdenum reactors

Author:

De Blasio Cataldo12,Lucca Gaetano3,Özdenkci Karhan4,Mulas Michela56,Lundqvist Kurt2,Koskinen Jukka4,Santarelli Massimo7,Westerlund Tapio2,Järvinen Mika1

Affiliation:

1. Aalto University, School of Engineering; Department of Mechanical Engineering; ENY-Lab. Sähkömiehentie 4 P.O.Box 1440 Espoo Finland

2. Department of Chemical Engineering, Process Design and Systems Engineering; Åbo Akademi University; Biskopsgatan 8-20500 Turku Finland

3. Fiat Chrysler Automobiles; FCA; C.so Tazzoli 75 10-135 Torino Italy

4. Department of Biotechnology and Chemical Technology; Aalto University; Kemistintie 1-02150 Espoo Finland

5. Aalto University; Department of Built Environment; Tietotie 1E 02150 Espoo Finland

6. Federal University of Campina Grande; Department of Chemical Engineering; 58429-140 Campina Grande Brazil

7. Department of Energy (DENERG); Politecnico di Torino; Corso Duca degli Abruzzi, 24 10129 Turin Italy

Funder

BioSCWG

Aalto-yliopisto

Åbo Akademi and Politecnico di Torino University along with the Graduate School in Chemical Engineering

GSCE

Publisher

Wiley

Subject

Inorganic Chemistry,Organic Chemistry,Pollution,Waste Management and Disposal,Fuel Technology,Renewable Energy, Sustainability and the Environment,General Chemical Engineering,Biotechnology

Reference69 articles.

1. Paper and Pulp

2. Renewable energy sources in Finland by 2030;Helynen;Eduskunnan Kanslia Hels,2002

3. Sodium salt scaling in black liquor evaporators and concentrators;Adams;Tappi J,2001

4. Eucalyptus black liquor - density, viscosity, solids and sodium sulphate contents revisited;Andreuccetti;O Paper,2011

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