Reduction Effect of Extra Biochar on PAHs Originating from Corn Stover Pyrolysis
Lijie Li, Xiuli Shen, Haibo Meng, Yujun Shen, Jingtao Ding, Hongbin Cong, Mingsong Chen

TL;DR
This paper explores how adding extra biochar during corn stover pyrolysis can reduce harmful PAHs in biochar and tar at certain temperatures.
Contribution
The study introduces a new fixed-bed pyrolysis process using extra biochar as a catalyst to reduce PAHs.
Findings
Adding extra biochar reduced PAHs in biochar from 7.15 mg/kg to 1.25 mg/kg at 500°C.
PAHs in residual tar decreased from 132.23 mg/kg to 101.10 mg/kg at lower temperatures.
PAHs in residual tar increased at higher temperatures (600°C, 700°C).
Abstract
As attention to environmental risks from the PAHs in biochar production increases, developing a low-cost and easy-to-operate optimized pyrolysis process is urgent. The effect of extra biochar was investigated in order to minimize polycyclic aromatic hydrocarbons (PAHs) on biochar and residual tar for the development of a new fixed-bed pyrolysis process. Hence, the effect of extra biochar as a catalyst on the reduction effect on PAHs originating from corn stover pyrolysis was inspected and explored in this study. Pyrolysis was conducted at 500, 600, and 700 °C in a tube furnace reactor with corn stover as the biomass feedstock. Biochar prepared at 500 °C, 600 °C, and 700 °C was used as a catalyst by stacking extra biochar on top of the corn stover raw material. Then, the concentration of PAHs in corn stover biochar and residual tar inside the reactor was examined. The physicochemical…
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Taxonomy
TopicsThermochemical Biomass Conversion Processes · Carbon Dioxide Capture Technologies · Thermal and Kinetic Analysis
