4.7 Article

Slow pyrolysis of flax straw biomass produced in Kazakhstan: Characterization of enhanced tar and high-quality biochar

期刊

FUEL
卷 324, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.fuel.2022.124676

关键词

Flax straw; Biomass; Thermo-gravimetric analysis; Physical and chemical characterization; Pyrolysis

资金

  1. Nazarbayev University [11022021FD2918, 11022021FD2905, 4VGF/21]

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This study analyzed the physical and chemical characteristics of local flax straw waste biomass samples and found that they have higher calorific value, cellulose and hemicellulose content, and lower lignin content, making them a promising feedstock for bioenergy production.
In the present study, local flax straw waste biomass samples were studied for their physical and chemical characteristics using a thermogravimetric analyzer (TGA) and thermal properties. Thermochemical conversion of the flax straw samples was performed in an electrically heated horizontal tube furnace from 400 to 600 degrees C. Thermal analysis of the flax straw biomass showed higher calorific value of 18.2 MJ/kg, cellulose (27.4 wt%) and hemicellulose (24.8 wt%) content and lower lignin content (21.2 wt%). Mass balance of pyrolysis products showed 40.3% for bio-oil fraction at temperature of 500 degrees C, which resulted in a notable reduction in the biochar yield by 34.6% compared to biochar yield at temperature of 400 degrees C. Pyrolysis of flax straw samples further shows a notable reduction in moisture, ash and fixed carbon by 4.4%, 2.9% and 11.4%, respectively. In addition, it was noted that the tar obtained from flax straw is mostly composed of phenolic components, while XRD analysis confirms the degradation of cellulose in biochar fraction. Due to the higher de-volatilization behavior, calorific value, cellulose and hemicellulose content, also lower lignin and ash content, flax straw biomass can be used as a promising feedstock for bioenergy production.

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