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Article

Effects of Torrefaction Pretreatment on the Structural Features and Combustion Characteristics of Biomass-Based Fuel

1
School of Chemical Engineering and Technology, Hebei University of Technology, Tianjin 300401, China
2
School of Energy and Power Engineering, Northeast Electric Power University, Jilin 132012, China
3
School of Energy Science and Engineering, Harbin Institute of Technology, Harbin 150001, China
*
Authors to whom correspondence should be addressed.
These authors contributed equally to this work.
Molecules 2023, 28(12), 4732; https://doi.org/10.3390/molecules28124732
Submission received: 27 May 2023 / Revised: 9 June 2023 / Accepted: 9 June 2023 / Published: 13 June 2023

Abstract

Wheat straw, a typical agricultural solid waste, was employed to clarify the effects of torrefaction on the structural features and combustion reactivity of biomass. Two typical torrefaction temperatures (543 K and 573 K), four atmospheres (argon, 6 vol.% O2, dry flue gas and raw flue gas) were selected. The elemental distribution, compositional variation, surface physicochemical structure and combustion reactivity of each sample were identified using elemental analysis, XPS, N2 adsorption, TGA and FOW methods. Oxidative torrefaction tended to optimize the fuel quality of biomass effectively, and the enhancement of torrefaction severity improved the fuel quality of wheat straw. The O2, CO2 and H2O in flue gas could synergistically enhance the desorption of hydrophilic structures during oxidative torrefaction process, especially at high temperatures. Meanwhile, the variations in microstructure of wheat straw promoted the conversion of N-A into edge nitrogen structures (N-5 and N-6), especially N-5, which is a precursor of HCN. Additionally, mild surface oxidation tended to promote the generation of some new oxygen-containing functionalities with high reactivity on the surface of wheat straw particles after undergoing oxidative torrefaction pretreatment. Due to the removal of hemicellulose and cellulose from wheat straw particles and the generation of new functional groups on the particle surfaces, the ignition temperature of each torrefied sample expressed an increasing tendency, while the Ea clearly decreased. According to the results obtained from this research, it could be concluded that torrefaction conducted in a raw flue gas atmosphere at 573 K would improve the fuel quality and reactivity of wheat straw most significantly.
Keywords: torrefaction; biomass; structural feature; combustion kinetics; reactivity torrefaction; biomass; structural feature; combustion kinetics; reactivity

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MDPI and ACS Style

Yang, X.; Zhao, Y.; Zhang, L.; Wang, Z.; Zhao, Z.; Zhu, W.; Ma, J.; Shen, B. Effects of Torrefaction Pretreatment on the Structural Features and Combustion Characteristics of Biomass-Based Fuel. Molecules 2023, 28, 4732. https://doi.org/10.3390/molecules28124732

AMA Style

Yang X, Zhao Y, Zhang L, Wang Z, Zhao Z, Zhu W, Ma J, Shen B. Effects of Torrefaction Pretreatment on the Structural Features and Combustion Characteristics of Biomass-Based Fuel. Molecules. 2023; 28(12):4732. https://doi.org/10.3390/molecules28124732

Chicago/Turabian Style

Yang, Xu, Yaying Zhao, Lei Zhang, Zhuozhi Wang, Zhong Zhao, Wenkun Zhu, Jiao Ma, and Boxiong Shen. 2023. "Effects of Torrefaction Pretreatment on the Structural Features and Combustion Characteristics of Biomass-Based Fuel" Molecules 28, no. 12: 4732. https://doi.org/10.3390/molecules28124732

APA Style

Yang, X., Zhao, Y., Zhang, L., Wang, Z., Zhao, Z., Zhu, W., Ma, J., & Shen, B. (2023). Effects of Torrefaction Pretreatment on the Structural Features and Combustion Characteristics of Biomass-Based Fuel. Molecules, 28(12), 4732. https://doi.org/10.3390/molecules28124732

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