Optimization study on a modern regeneration boiler cold end operation and its feedwater system integration into energy system of a paper mill

Author:

Variny MiroslavORCID,Blahušiak Marek,Janošovský Ján,Hruška Michal,Mierka Otto

Funder

Vedecká Grantová Agentúra MŠVVaŠ SR a SAV

Agentúra na Podporu Výskumu a Vývoja

Science and Technology Park STU, co-financed from the European Regional Development Fund

Publisher

Springer Science and Business Media LLC

Subject

General Energy

Reference53 articles.

1. Ådahl, A., & Harvey, S. (2007). Energy efficiency investments in Kraft pulp mills given uncertain climate policy. International Journal of Energy Resources, 31, 486–505.

2. Andritz, A. G. (2014). “High energy recovery boilers (HERB)”: technical features of modern recovery boilers by Andritz AG and process flow diagram. https://www.andritz.com/products-en/group/pulp-and-paper/power-generation/recovery-boilers/herb-recovery-boilers . Accessed 11 July 2018.

3. Andritz, A. G. (2015). “Fast and green”: paper describing the new recovery boiler by Andritz AG at MONDI SCP, Ružomberok and the boiler parameters. https://www.andritz.com/resource/blob/219376/940200392537f5af4a69228247d0ab22/pp-spectrum-31-ruzomberok-data.pdf . Accessed 17 July 2018.

4. Axelsson, E., & Berntsson, T. (2012). Profitability and off-site CO2-emission reduction from energy savings in the pulp and paper industry in different future energy markets. International Journal of Energy Resources, 36, 975–986.

5. Axelsson, H., Harvey, S., Åsblad, A., & Berntsson, T. (2003). Potential for greenhouse gas reduction in industry through increased heat recovery and/or integration of combined heat and power. Applied Thermal Engineering, 23, 65–87.

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