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Развитие технологий совместного сжигания угля и биомассы

Г. А. РЯБОВ

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Gil M. V., Rubiera F. Coal and biomass cofiring: fundamentals and future trends. In New Trends in Coal Conversion: Combustion, Gasification, Emissions, and Coking / M. V Gil, I. Suбrez-Ruiz, F.Rubiera, M. A. Diez (eds.) // Woodhead Publishing. 2019. No 8. P. 117-140.

Madanayake B. N. Biomass as an energy source in coal cofiring and its feasibility enhancement via pretreatment techniques / B. N. Madanayake, S. Gan, C Eastwick., H. K. Ng // Fuel Processing Technology. 2017. No 5. P. 159, 287-305.

Livingston W. R. The status of large scale biomass firing / Livingston W. R., Middelkamp J., Willeboer W. et al. // IEA Bioenergy. ISBN 978-1-910154-26-7. Koppejan J., Cremers M. F. G., ed Available at: http://www.ieabioenergy.com/publications/the-status-of-large-scale-biomass-firing, 87 pp (2016).

Tumuluru J. S. Formulation, pretreatment, and densification options to improve biomass specifications for cofiring high percentages with coal /j. S. Tumuluru, J. R. Hess, R. D. Boardman et al. Industrial biotechnology // 2012. No 8. P. 113-132.

Middelkamp J., Cremers M. Overview of global experience with biomass cofiring and coal to biomass conversions - Technology, fuel supply, byproducts and regulation, economics. Available at: https://www.ieabioenergy.com/wp-content/uploads/2018/09/3.1-Jan-Middelkamp.pdf. 27 pp (6 Sep 2018).

Arbaflame has signed a major contract with Engie. Available at: http://www.arbaflame.no (4 Jun 2019).

Hansen L. Biofficiency - Performance of biomass pretreatment (D2.2) // L Hansen., S. Fendt, A. P. Janssen. Available at: https://ec.europa.eu/research/participants/documents/downloadPublic?documentIds=080166e5ba781fce&appId=PPGMS 32 pp (May 2018.

Chen W. H., Peng J., Bi X. T. A state-of-the-art review of biomass torrefaction, densification and applications // Renewable and Sustainable Energy Reviews. 2015. No 4. P. 847-866.

Ribeiro J. Future perspectives of biomass torrefaction: Review of the current state-of-the-art and research development /j. Ribeiro, R. Godina, J. Matias, L. Nunes // Sustainability. 2018. No 10(7). P. 17.

Barskov S. Torrefaction of biomass: a review of production methods for biocoal from cultured and waste linocellulosic feedstocks / S. Barskov, M. Zappi, P. Buchireddy еt al. // Renewable Energy. 2019. № 4. P/ 624-642.

Fuad M. A. H. M., Hasan M. F., Ani F. N. Microwave torrefaction for viable fuel production: A review on theory, affecting factors, potential and challenges // Fuel. 2019. No 10. P. 512-526.

Brachi P. Fluidized bed torrefaction of biomass pellets: A comparison between oxidative and inert atmosphere / P. Brachi, R. Chirone, M. Miccio, G.Ruoppolo // Powder Technology. 2019. No 12. P. 97-107.

Cremers M. Status overview of torrefaction technologies: a review of the commercialisation status of biomass torrefaction / M. Cremers, J. Koppejan, J. Middelkamp et al. // IEA Bioenergy. Available at: https://www.ieabioenergy.com/wpcontent/uploads/2015/11/IEA_Bioenergy_T32_Torrefaction_update_2015b.pdf, 52 pp. (Nov 2015).

Nunes L. J. R., Matias J. C. O., Catalao J. P. S. Torrefaction of Biomass for Energy Applications: From Fundamentals to Industrial Scale // Academic Press. 2018. No 11. P. 246.

The Carbon FX torrefaction process // Airex Energy. 2019. Available at: http://www.airex-energy.com/en/commercial-plant (2019);

Johnson R. Torrefaction market opportunities for Irish bioenergy crops. In Agri For Valor Workshop, 25 January 2017.

He C. Wet torrefaction of biomass for high quality solid fuel production: A review / C. He, C. Tang, C. Li et al. // Renewable and Sustainable Energy Reviews. 2018. No 8. P. 259-271.

Wang X.Comparative study of wet and dry torrefaction of corn stalk and the effect on biomass pyrolysis polygeneration / Wang X., Wu J., Chen Y. et al. // Bioresource technology. 2018. No 6. P. 88-97.

Zhang D. Effect of pretreatment on chemical characteristic and thermal degradation behavior of corn stalk digestate: Comparison of dry and wet torrefaction / Zhang D., Wang F., Zhang A. et al. // Bioresource technology. 2019. No 3. P. 239-246.

Voegele E. EIA: Densified biomass fuel sales reach 670,000 tons in April // Biomass Magazine. Available at: http://biomassmagazine.com/articles/17276/eia-densified-biomass-fuel-sales-reach-670-000-tons-in-april (14 August 2020).

Song X. Ultrasonic pelleting of torrefied lignocellulosic biomass for bioenergy production / X. Song, Y. Yang, M/ Zhang et al. // Renewable energy. 2018. No 12. P. 56-62.

Yang Y., Sun M., Zhang M. A fundamental research on synchronized torrefaction and pelleting of biomass / Y. Yang, M. Sun, M. Zhang et al. // Renewable Energy. 2019. No 11. P. 668-676.

Carbo М. Biomass co-firing experience in NL & black pellets status update. In APEC workshop on Bio-pellet Production, Handling and Energy Utilisation, Tokyo, Japan, 24-25 October 2017.

Abelha P.Combustion improvements of upgraded biomass by washing and torrefaction / P. Abelha, C. M. Vilela, P. Nanou et al. // Fuel. 2019. No 19. P. 1018- 1033.

Barnes I. Understanding pulverised coal, biomass and waste combustion. CCC/205. - London, UK: IEA Clean Coal Centre, 2012. -57 pp.

Fernando R. Cofiring high ratios of biomass with coal. CCC/194. - London, UK: IEA Clean Coal Centre, 2012. - 64 pp.

Proctor D. South Korean Plant Finds Flexibility with Advanced CFB Technology. Available at: https://www.powermag.com/south-korean-plant-finds-flexibility-with-advanced-cfb-technology. (31 Jul 2018).

Valmet to supply a multifuel boiler and a flue gas cleaning system to Kushiro Thermal Power Plant in Japan. Available at: https://www.valmet.com/media/news/press-releases/2017/valmet-to-supply-a-multifuel-boiler-and-a-flue-gas-cleaning-system-to-kushiro-thermal-power-plant-in-japan/(9 Mar 2017).

Zhang X. Support mechanisms for cofiring biomass with coal. CCC/294. - London, UK: IEA Clean Coal Centre, 2019. - 60 pp.

Ohno E. Cofiring with a high-ratio of wood biomass to make the most existing coal-fired power plant. In 2017 IERE-TNB Putrajaya Workshop - Technologies reshaping the electricity supply industry, Putrajaya, Malaysia, 20-23 Noveber 2017.

Sina News Harbin Electric Boiler manufacturing China's first biomass coupled power generation demonstration project. Available at: https://news.sina.cn/gn/2019-12-17/detail-iihnzhfz6392975.d.html. (17 Dec 2019).

He P. The industrial application of 10,8 MW biomass gasification reburning electricity generation project. In 6th IEACCC Workshop on Cofiring Biomass with Coal, Sardinia, Italy, 14-15 September 2016.

Liu Q. Co-firing of coal and biomass in oxy-fuel fluidized bed for CO2 capture: A review of recent advances / Q. Liu, Y. Shi, W. Zhong, A. Yu // Chinese Journal of Chemical Engineering. 2019. No 8. P. 2261-2272.

Basu P. Biomass gasification, pyrolysis and torrefaction: practical design and theory. Chapter 11. Academic press, 393-413 (Jun 2018).

Wang Q. Research and application of Biomass fluidized bed gasification technologies coupling with coal power plant. In 9th IEACCC Workshop on Cofiring Biomass with Coal, Kokura, Japan, 25-27 Februery 2020.

Flin D. The trouble with biomass: impacts of cofiring // Power Engineering. 2009. No 6.

Dunnu G. Utilization of biomass in coal fired power plants. In 6th IEACCC Workshop on Cofiring Biomass with Coal, Sardinia, Italy, 14-15 September 2016. - 33 pp.

Priyanto D. E. Ash transformation by cofiring of coal with high ratios of woody biomass and effect on slagging propensity / D. E. Priyanto, S. Ueno, N. Sato еt al. // Fuel. 2016. Jun. No 174. Pp. 172-179.

Aeckersberg R., Reid D., Berthold S. Co-grinding of waste pellets in a vertical roller mill with coal. In 8th IEACCC Workshop on Cofiring Biomass with Coal, Copenhagen, Denmark, 11-13 September 2018. - 16 pp.

Zimmerling S. Personal communication. Essen, Germany: VGB, 2020.

Dafnomilis I. Evaluation of wood pellet handling in import terminals / I. Dafnomilis, G. Lodewijks, M. Junginger, D. L. Schott // Biomass and Bioenergy. 2018. No 10. P. 10-23.

Bergstrцm A. Prevention of fires and dust explosions when handling biomass. In 9th IEACCC Workshop on Cofiring Biomass with Coal, Kokura, Japan, 25-27 February 2020. - 27 pp.

Fire and explosion protection in biomass power plants. ISBN: 978-3-86875-776-7. Available at: https://www.vgb.org/shop, 50 pp. (May 2014).

Farnish R. Best practice for biomass store fire protection. In 8th IEACCC Workshop on Cofiring Biomass with Coal, Copenhagen, Denmark, 11-13 September 2018. - 27 pp.

Hitzke T. Field experience in biomass cofiring on SCR catalyst technology. In 8th IEACCC Workshop on Cofiring Biomass with Coal, Copenhagen, Denmark, 11-13 September 2018. - 18 pp.

Schill L., Fehrmann R. Strategies of Coping with Deactivation of NH3-SCR Catalysts Due to Biomass Firing // Catalysts. 2018. No 8(4). - 11 pp.

Barnes I. Ash utilisation - impact of recent changes in power generation practices. CCC/176. - London, UK: IEA Clean Coal Centre, 2011. - 51 pp.

Reid I., Carpenter A., Masili A. Beneficial uses of coal fly ash. CCC/303. - London, UK: IEA Clean Coal Centre, 2020. - 93 pp.

Lamers F. Options for increased use of ash from biomass combustion and co-firing / F. Lamers, M. Cremers, D. Matschegg et al. // IEA Bioenergy. Available at: https://www.ieabioenergy.com/publications/options-for-increased-use-of-ash-from-biomass-combustion-and-co-firing/, 61 pp (2018).

Sarabиr A. Management of ashes from co-firing biomass with coal. In 8th IEACCC Workshop on Cofiring Biomass with Coal, Copenhagen, Denmark, 11-13 Septeber 2018. - 27 pp


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