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Dive into the research topics where Karhan Özdenkci is active.

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Featured researches published by Karhan Özdenkci.


Journal of Chemical Technology & Biotechnology | 2016

A study on Supercritical Water Gasification of black liquor conducted in Stainless Steel and Nickel-Chromium-Molybdenum reactors.

Cataldo De Blasio; Gaetano Lucca; Karhan Özdenkci; Michela Mulas; Kurt Lundqvist; Jukka Koskinen; Massimo Santarelli; Tapio Westerlund; Mika Järvinen

BACKGROUND This study presents supercritical water gasification (SCWG) as an alternative treatment process for black liquor: investigating the impacts of black liquor constituents, temperature and catalyst. The preliminary experiments include SCWG of sucrose and isoeugenol in stainless steel reactor, as model compounds of sugars and lignin. Then, the experiments of SCWG of black liquor are performed in stainless steel and INCONEL 625 reactors. RESULTS The results illustrated the impacts of temperature, black liquor constituents and nickel catalyst on the SCWG process. Temperature and the INCONEL reactor promoted gasification efficiency and hot gas efficiency: over 80% hot gas efficiency was reached for black liquor in the INCONEL reactor at 700 °C. Experiments on model compounds have shown that sugars generate more carbon dioxide, while lignin generates more methane. Hydrogen fraction and yield increased with temperature; nevertheless, black liquor generated hydrogen-rich gas. The INCONEL reactor increased hot gas efficiency despite no significant impact on carbon gasification efficiency: hydrogen is promoted dramatically. In addition, temperature and the INCONEL catalyst reduce tar and char formation as well. CONCLUSIONS Supercritical water gasification (SCWG) is potentially a suitable treatment for black liquor: it has no evaporation requirement and high hot gas efficiency. This process can be a solution for non-wood mills and can increase the product spectrum of Kraft mills by operating as a parallel treatment. On the other hand, sulphur balance is to be investigated for integration with Kraft mills together with a detailed feasibility study.


Energy Conversion and Management | 2017

A novel biorefinery integration concept for lignocellulosic biomass

Karhan Özdenkci; Cataldo De Blasio; Hassan R. Muddassar; Kristian Melin; Pekka Oinas; Jukka Koskinen; Golam Sarwar; Mika Järvinen


ACS Sustainable Chemistry & Engineering | 2016

Hydrothermal Liquefaction of Softwood: Selective Chemical Production Under Oxidative Conditions

Mika Henrikki Sipponen; Karhan Özdenkci; Hassan R. Muddassar; Kristian Melin; Sarwar Golam; Pekka Oinas


Archive | 2017

The Role of Biomass Conversion Process on circular economy

Karhan Özdenkci; Golam Sarwar


Industrial & Engineering Chemistry Research | 2017

Gibbs Free-Energy-Based Objective Function for Electrolyte Activity Coefficient Models

Karhan Özdenkci; Jukka Koskinen; Golam Sarwar; Pekka Oinas


World Congress of Industrial Biotechnology | 2016

A Novel Thermo-Chemical Treatment for Black Liquor

Karhan Özdenkci; Cataldo De Blasio; Mudassar Hassan Raja; Kristian Melin; Pekka Oinas; Jukka Koskinen; Michela Mulas; Sarwar Golam; Mika Järvinen


International symposium on energy from biomass and waste | 2016

Feasibility study for supercritical water gasification of black liquor

Karhan Özdenkci; Cataldo De Blasio; Golam Sarwar; Mika Järvinen; Pekka Oinas


Conference on Sustainable Development of Energy, Water and Environment Systems | 2016

A Novel Biorefinery Integration Concept for Lignocellulosic Biomass

Karhan Özdenkci; Cataldo De Blasio; Hassan Raja Mudassar; Kristian Melin; Pekka Oinas; Jukka Koskinen; Golam Sarwar; Mika Järvinen


Nordic Wood Biorefinery Conference | 2015

Aqueous Phase Oxidative Treatment of Saw Dust

Karhan Özdenkci; Raja Hassan; Kristian Melin; Mika Henrikki Sipponen; Golam Sarwar; Pekka Oinas


Archive | 2014

Supercritical Water Gasification of Biomass in Tubular Reactors, a study from Experiments Conducted in Stainless Steel and Nickel-Chromium-Molybdenum Catalyst

Cataldo De Blasio; Gaetano Lucca; Karhan Özdenkci; Michela Mulas; Kurt Lundqvist; Jukka Koskinen; Massimo Santarelli; Tapio Westerlund; Mika Järvinen

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