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Impact of Pyrolysis Temperature on the Properties of Eucalyptus Wood-Derived Biochar

机译:热解温对桉树木材衍生生物炭性能的影响

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摘要

Pyrolysis conditions directly influence biochar properties and, consequently, influence the potential use of biochar. In this study, we evaluated the effects of different pyrolysis temperatures (450, 550, 650, 750, 850, and 950 °C) on the hydrogen potential, electrical conductivity, ash content, yield, volatile matter content, elemental analysis, Fourier-transform infrared spectroscopy results, X-ray diffraction results, scanning electron microscopy results, specific surface area, and micropore volume of eucalyptus wood-derived biochar. The degree of linear association between pyrolysis temperatures and biochar properties was examined using the Pearson correlation coefficient. The results showed a positive correlation of the pyrolysis temperature with the hydrogen potential value, electrical conductivity, and elemental carbon. There was a negative correlation of the pyrolysis temperature with the yield, volatile matter content, elemental oxygen, elemental hydrogen, surface area, aromaticity, hydrophilicity, and polarity indexes. The Fourier-transform infrared spectroscopy data indicated an increase in aromaticity and a decrease in the polarity of high-temperature biochar. The increased pyrolysis temperature caused the loss of cellulose and crystalline mineral components, as indicated by X-ray diffraction analysis and scanning electron microscopy images. These results indicated that changing the pyrolysis temperature enables the production of biochar from the same raw material with a wide range of physicochemical properties, which allows its use in various types of agricultural and environmental activities.
机译:热解病症直接影响生物炭特性,从而影响生物炭的潜在使用。在这项研究中,我们评估了不同热解温度(450,550,650,750,850和950c)对氢电位,导电性,灰分含量,产率,挥发物质含量,元素分析,傅里叶 - 的影响转化红外光谱结果,X射线衍射结果,扫描电子显微镜结果,比表面积和桉树衍生的Biochar的微孔体积。使用Pearson相关系数检查热解温度和生物凝块性质之间的线性关联程度。结果表明热解温与氢电位值,电导率和元素碳的正相关。热分解温度与产率,挥发物质含量,元素氧,元素氢,表面积,芳香性,亲水性和极性指标存在负相关性。傅立叶变换红外光谱数据表明芳香性的增加和高温BioChar的极性的降低。随着X射线衍射分析和扫描电子显微镜图像所示,增加热解温度导致纤维素和结晶矿物成分的损失。这些结果表明,改变热解温可使BioChon从相同的原料生产具有广泛的物理化学性质,这允许其在各种类型的农业和环境活动中使用。

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