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Dive into the research topics where Pavel Skryja is active.

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Featured researches published by Pavel Skryja.


Applied Biochemistry and Biotechnology | 2014

Suitable Technological Conditions for Enzymatic Hydrolysis of Waste Paper by Novozymes® Enzymes NS50013 and NS50010

V. Brummer; Pavel Skryja; T. Jurena; Viliam Hlavacek; Petr Stehlík

Waste paper belongs to a group of quantitatively the most produced waste types. Enzymatic hydrolysis is becoming a suitable way to treat this type of waste and at the same time, to produce a valuable liquid biofuel, because reducing sugars solutions that are formed during the process of saccharification can be a precursor for following or simultaneous fermentation. If it will be possible to make the enzymatic hydrolysis of the waste paper economically viable, it could serve as one of the new ways to lower the dependence of the transport sector on oil in the future. Only several studies comparing the enzymatic hydrolysis of different waste papers were performed in the past; they are summarized in this manuscript. In our experimental trials, suitable technological conditions for waste paper enzymatic hydrolysis using enzymes from Novozymes® biomass kit: enzymes NS50013 and NS50010 were investigated. The following enzymatic hydrolysis parameters in laboratory scale trials were verified on high cellulose content substrates–filter paper and cellulose pulp: type of buffer, pH, temperature, concentration of the substrate, loading of the enzyme and rate of stirring.


Energy | 2014

Experimental study on the influence of oxygen content in the combustion air on the combustion characteristics

Petr Bělohradský; Pavel Skryja; I. Hudák


Chemical engineering transactions | 2007

Up to Date Experimental Facility for Testing Low-nox Burners

Vít Kermes; Pavel Skryja; Petr Stehlík


Chemical engineering transactions | 2013

Experimental Study on the Influence of Oxygen Fraction in the Combustion Air on the Combustion Characteristics

P. Belohradsky; Pavel Skryja


Industrial & Engineering Chemistry Research | 2014

Design of an Catalytic Oxidation Unit for Elimination of Volatile Organic Compound and Carbon Monoxide

Pavel Lestinsky; V. Brummer; D. Jecha; Pavel Skryja; Petr Stehlík


Chemical engineering transactions | 2015

Experimental Study on NOX Formation in Gas-staged Burner

Pavel Skryja; P. BelohradskÃ; I. Hudák; T. Jurena


Chemical engineering transactions | 2014

The Influence of Bound Nitrogen Content in the Gaseous Fuel on the Formation of NOX

Pavel Skryja; P. Belohradský; I. Hudák


Powder Technology | 2016

The treatment of waste gas from fertilizer production - An industrial case study of long term removing particulate matter with a pilot unit

V. Brummer; D. Jecha; Pavel Lestinsky; Pavel Skryja; Jiri Gregor; Petr Stehlík


Chemical engineering transactions | 2015

Impact of Catalytic Oxidation Operating Conditions on Voc and CO Conversions on the Pt-pd/al2o3 Catalyst

V. Brummer; D. Jecha; J. Martinec; Pavel Lestinsky; Pavel Skryja; Petr Stehlík


Chemical engineering transactions | 2012

Obstacles in the Utilization of Biodiesel as the Fuel in Small Stationary Combustion Units

Vít Kermes; Pavel Skryja; Radek Nejezchleb

Collaboration


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Petr Stehlík

Brno University of Technology

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V. Brummer

Brno University of Technology

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D. Jecha

Brno University of Technology

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I. Hudák

Brno University of Technology

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Pavel Lestinsky

Technical University of Ostrava

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T. Jurena

Brno University of Technology

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Vít Kermes

Brno University of Technology

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Cal E

Brno University of Technology

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Jiri Gregor

Brno University of Technology

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Petr Bělohradský

Brno University of Technology

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