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Numerical Investigation on Cofiring Characteristics of Biomass Syngas and Coal in a 660-MW Tower Boiler

Нема приказа
Аутори
Deng, Lei
Ma, Shihao
Jiang, Jiahao
Tie, Yuan
Zhang, Yan
Zhu, Zhengrong
Belošević, Srđan
Tomanović, Ivan
Che, Defu
Чланак у часопису (Објављена верзија)
Метаподаци
Приказ свих података о документу
Апстракт
Cofiring biomass syngas (BS) with pulverized coal under the oxy-fuel condition is a promising technology, which could encourage the utilization of biomass energy and reduce the emission of greenhouse gases. To investigate cofiring characteristics of biomass syngas and coal, a numerical study was conducted. The influences of oxy-fuel condition, syngas quality, and injection position on temperature distributions and flue gas components in boiler furnace were analyzed. To predict cofiring characteristics accurately under oxy-fuel conditions, a new refined weighted-sum-of-gray-gases model, HCN oxidation model, and NO-char reaction model were used. The simulation results show that syngas reburning and oxy-fuel conditions could reduce NO emission. The NO emission in O2/CO2O2/CO2O2/CO2 conditions is higher than that in air. Biomass syngas with higher calorific values contributes to higher furnace temperatures. Besides, biomass syngas with higher hydrocarbon components is beneficial to lower N...O emission. Compared to pure coal combustion, NO concentration at the furnace outlet reduces by 40.2%, 69.0%, and 35.2% in the cases of cofiring with Type A, B, and C biomass syngas at a cofiring ratio of 10%, respectively. The injection position of biomass syngas also has crucial impacts on cofiring characteristics and NO emissions. NO emission has the lowest value when the biomass syngas is injected at the bottom level of the reburn zone. This study could provide a reference for optimization of boiler design and operation when cofiring biomass syngas with pulverized coal under the oxy-fuel condition.

Кључне речи:
Biomass syngas (BS) / Cofiring / NO emission / Numerical investigation / Oxy-fuel combustion
Извор:
Journal of Energy Engineering, 2022, 148, 3, 04022014-

DOI: 10.1061/(ASCE)EY.1943-7897.0000829

ISSN: 1943-7897

WoS: 000782631700004

Scopus: 2-s2.0-85127396307
[ Google Scholar ]
5
5
URI
https://vinar.vin.bg.ac.rs/handle/123456789/10232
Колекције
  • 140 - Laboratorija za termotehniku i energetiku
  • Radovi istraživača
Институција/група
Vinča
TY  - JOUR
AU  - Deng, Lei
AU  - Ma, Shihao
AU  - Jiang, Jiahao
AU  - Tie, Yuan
AU  - Zhang, Yan
AU  - Zhu, Zhengrong
AU  - Belošević, Srđan
AU  - Tomanović, Ivan
AU  - Che, Defu
PY  - 2022
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/10232
AB  - Cofiring biomass syngas (BS) with pulverized coal under the oxy-fuel condition is a promising technology, which could encourage the utilization of biomass energy and reduce the emission of greenhouse gases. To investigate cofiring characteristics of biomass syngas and coal, a numerical study was conducted. The influences of oxy-fuel condition, syngas quality, and injection position on temperature distributions and flue gas components in boiler furnace were analyzed. To predict cofiring characteristics accurately under oxy-fuel conditions, a new refined weighted-sum-of-gray-gases model, HCN oxidation model, and NO-char reaction model were used. The simulation results show that syngas reburning and oxy-fuel conditions could reduce NO emission. The NO emission in O2/CO2O2/CO2O2/CO2 conditions is higher than that in air. Biomass syngas with higher calorific values contributes to higher furnace temperatures. Besides, biomass syngas with higher hydrocarbon components is beneficial to lower NO emission. Compared to pure coal combustion, NO concentration at the furnace outlet reduces by 40.2%, 69.0%, and 35.2% in the cases of cofiring with Type A, B, and C biomass syngas at a cofiring ratio of 10%, respectively. The injection position of biomass syngas also has crucial impacts on cofiring characteristics and NO emissions. NO emission has the lowest value when the biomass syngas is injected at the bottom level of the reburn zone. This study could provide a reference for optimization of boiler design and operation when cofiring biomass syngas with pulverized coal under the oxy-fuel condition.
T2  - Journal of Energy Engineering
T1  - Numerical Investigation on Cofiring Characteristics of Biomass Syngas and Coal in a 660-MW Tower Boiler
VL  - 148
IS  - 3
SP  - 04022014
DO  - 10.1061/(ASCE)EY.1943-7897.0000829
ER  - 
@article{
author = "Deng, Lei and Ma, Shihao and Jiang, Jiahao and Tie, Yuan and Zhang, Yan and Zhu, Zhengrong and Belošević, Srđan and Tomanović, Ivan and Che, Defu",
year = "2022",
abstract = "Cofiring biomass syngas (BS) with pulverized coal under the oxy-fuel condition is a promising technology, which could encourage the utilization of biomass energy and reduce the emission of greenhouse gases. To investigate cofiring characteristics of biomass syngas and coal, a numerical study was conducted. The influences of oxy-fuel condition, syngas quality, and injection position on temperature distributions and flue gas components in boiler furnace were analyzed. To predict cofiring characteristics accurately under oxy-fuel conditions, a new refined weighted-sum-of-gray-gases model, HCN oxidation model, and NO-char reaction model were used. The simulation results show that syngas reburning and oxy-fuel conditions could reduce NO emission. The NO emission in O2/CO2O2/CO2O2/CO2 conditions is higher than that in air. Biomass syngas with higher calorific values contributes to higher furnace temperatures. Besides, biomass syngas with higher hydrocarbon components is beneficial to lower NO emission. Compared to pure coal combustion, NO concentration at the furnace outlet reduces by 40.2%, 69.0%, and 35.2% in the cases of cofiring with Type A, B, and C biomass syngas at a cofiring ratio of 10%, respectively. The injection position of biomass syngas also has crucial impacts on cofiring characteristics and NO emissions. NO emission has the lowest value when the biomass syngas is injected at the bottom level of the reburn zone. This study could provide a reference for optimization of boiler design and operation when cofiring biomass syngas with pulverized coal under the oxy-fuel condition.",
journal = "Journal of Energy Engineering",
title = "Numerical Investigation on Cofiring Characteristics of Biomass Syngas and Coal in a 660-MW Tower Boiler",
volume = "148",
number = "3",
pages = "04022014",
doi = "10.1061/(ASCE)EY.1943-7897.0000829"
}
Deng, L., Ma, S., Jiang, J., Tie, Y., Zhang, Y., Zhu, Z., Belošević, S., Tomanović, I.,& Che, D.. (2022). Numerical Investigation on Cofiring Characteristics of Biomass Syngas and Coal in a 660-MW Tower Boiler. in Journal of Energy Engineering, 148(3), 04022014.
https://doi.org/10.1061/(ASCE)EY.1943-7897.0000829
Deng L, Ma S, Jiang J, Tie Y, Zhang Y, Zhu Z, Belošević S, Tomanović I, Che D. Numerical Investigation on Cofiring Characteristics of Biomass Syngas and Coal in a 660-MW Tower Boiler. in Journal of Energy Engineering. 2022;148(3):04022014.
doi:10.1061/(ASCE)EY.1943-7897.0000829 .
Deng, Lei, Ma, Shihao, Jiang, Jiahao, Tie, Yuan, Zhang, Yan, Zhu, Zhengrong, Belošević, Srđan, Tomanović, Ivan, Che, Defu, "Numerical Investigation on Cofiring Characteristics of Biomass Syngas and Coal in a 660-MW Tower Boiler" in Journal of Energy Engineering, 148, no. 3 (2022):04022014,
https://doi.org/10.1061/(ASCE)EY.1943-7897.0000829 . .

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