温度对生物质三组分热解制备生物炭理化特性的影响
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农业部重点实验室开放项目(KLERUAR2015-01)、公益性行业(农业)科研专项(201503135-18)和陕西省农业专项(2015-136)


Effect of Temperature on Physicochemical Properties of Biochar Prepared by Pyrolysis of Three Components of Biomass
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    摘要:

    以纤维素、木聚糖和木质素为研究对象,利用真空气氛炉热解制备生物炭,探究温度对生物质三组分热解制备生物炭理化特性的影响规律,为生物炭的性能调控和机理研究提供理论依据。结果表明:纤维素和木聚糖的热解温度范围主要集中在300~500℃,纤维素生物炭产率由35.38%下降至20.93%,木聚糖生物炭产率由46.28%下降至29.40%,木质素热解温度范围主要集中在300~600℃,木质素生物炭产率由81.22%下降至51.53%;热解温度对生物质三组分制备生物炭的C、H、O、N元素含量的影响规律基本相同,即C元素含量逐渐升高,H、O、N元素含量逐渐降低,C元素质量分数分别由69.42%、72.92%、54.75%升至96.39%、77.26%、67.97%;热解温度对生物质三组分制备生物炭的灰分、挥发分、固定碳和热值的影响规律基本相同,即挥发分逐渐降低,而灰分、固定碳和热值均逐渐升高,挥发分分别由50.67%、44.89%、39.99%降至7.63%、5.52%、14.41%,固定碳分别由47.95%、55.03%、35.41%升至90.18%、94.11%、53.70%,热值分别由25652.58、26681.81、21173.29kJ/kg升至34602.52、33965.15、24142.62kJ/kg;热解温度对木质素生物炭的比表面积和孔径分布影响明显,对纤维素和木聚糖生物炭的影响较小,500℃时纤维素和木聚糖达到最优的比表面积和微孔体积,600℃时木质素达到最优的比表面积和微孔体积;热解温度在500℃时,纤维素和木聚糖制备的生物炭达到最大的碘吸附值,纤维素生物炭碘吸附值为422.46mg/g,木聚糖生物炭碘吸附值为115.06mg/g,热解温度在600℃时,木质素制备的生物炭达到最大的碘吸附值,为460.35mg/g。

    Abstract:

    With the aim to study the performance regulation and mechanism of different biochar-based biomasses, cellulose, hemicellulose and lignin were used as the raw materials to prepare biochar by pyrolysis in vacuum atmosphere furnace. The results manifested that the pyrolysis temperature of cellulose and hemicellulose ranged from 300℃ to 500℃, and the yields of biochar decreased from 35.38% (cellulose), 46.28% (hemicellulose) to 20.93%, 29.40%, respectively. Meanwhile, the pyrolysis temperature range of lignin was 300~600℃, and the yields of biochar decreased from 81.22% to 51.53%. Moreover, the effect of pyrolysis temperature on C, H, O and N contents of prepared biochar were similar in the three feedstocks. The content of C raised up gradually according to the temperature increase, while the contents of H, O, N decreased gradually. Detailly, the content of C increased from 69.42%, 72.92%, 54.75% to 96.39%, 77.26%, 67.97% for cellulose, hemicellulose and lignin, respectively. The effect of pyrolysis temperature on the content of ash, volatile, fixed carbon and the calorific value was basically the same in the three feedstocks. The volatile relatively decreased, and the ash, fixed carbon and calorific value increased gradually. Specifically, the volatile from the cellulose, hemicellulose and lignin fell to 7.63%, 5.52%, 14.41% from 50.67%, 44.89%, 39.99%, respectively. The fixed carbon increased from 47.95%, 55.03%, 35.41% to 90.18%, 94.11%, 53.70%, respectively. The calorific value rose to 34602.52kJ/kg, 33965.15kJ/kg, 24142.62kJ/kg from 25652.58kJ/kg, 26681.81kJ/kg, 21173.29kJ/kg, respectively. The significant effect of pyrolysis temperature on the specific surface area and pore size distribution of the prepared biochar was observed for lignin, however, insignificant effect was shown for cellulose and hemicellulose. The optimal surface area and pore volume of the biochar produced from cellulose and hemicellulose was obtained at 500℃, and the lignin was at 600℃. Besides, when the pyrolysis temperature was at 500℃, the iodine adsorption value of the biochar from cellulose and hemicellulose reached their respective maximum values at 422.46mg/g and 115.06mg/g. Meanwhile, at the pyrolysis temperature of 600℃, the iodine adsorption value of the biochar from lignin reached the maximum point of 460.35mg/g.

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杨选民,王雅君,邱凌,赵立欣,孟程琳.温度对生物质三组分热解制备生物炭理化特性的影响[J].农业机械学报,2017,48(4):284-290.

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  • 收稿日期:2016-07-20
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  • 在线发布日期: 2017-04-10
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