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热重分析、傅里叶变换红外光谱和气相色谱-质谱联用研究竹子的气体逸出分析和慢速热解机理。

Evolved gas analysis and slow pyrolysis mechanism of bamboo by thermogravimetric analysis, Fourier transform infrared spectroscopy and gas chromatography-mass spectrometry.

机构信息

Institute of Energy Conservation and Low Carbon Technology, Shenwu Technology Group Corp, Shenniu Road 18, Changping District, Beijing, PR China; School of Chemical Engineering, China University of Petroleum, Beijing, PR China.

Institute of Energy Conservation and Low Carbon Technology, Shenwu Technology Group Corp, Shenniu Road 18, Changping District, Beijing, PR China.

出版信息

Bioresour Technol. 2018 Oct;266:407-412. doi: 10.1016/j.biortech.2018.07.005. Epub 2018 Jul 4.

Abstract

Slow pyrolysis of bamboo is an important conversion pathway to produce biofuels and chemicals such as biomass-derived fertilizer precursor (biochar). In this study, evolved gas analysis during pyrolysis of bamboo was conducted by a combination of TG, FTIR and GC-MS to establish a detailed pyrolysis mechanism of bamboo biomass. The main decomposition temperature zones were 300-400 °C and it reached the maximum mass loss intensity at 350 °C based on DTG curves. The main functional groups escaped from biomass during pyrolysis were -OH, -CH, -CH, CO, C-O, and -COOH. The main compounds during pyrolysis of bamboo were acetic acid and 2-propenoic acid, ethenyl ester at 300 °C, 2-oxo-propanoic acid and 1-hydroxy-2-propanone at 350 °C and acetic acid and acetic acid ethenyl ester at 400 °C. Evolved gas analysis indicated that components in bamboo occurred in different temperatures and pyrolysis mechanisms and resulted in distinguishing pyrolysis product emission characteristics.

摘要

竹子的慢速热解是生产生物燃料和化学品(如生物质衍生肥料前体(生物炭))的重要转化途径。在这项研究中,通过 TG、FTIR 和 GC-MS 的组合对竹子的热解过程中的逸出气体进行了分析,以建立竹子生物质的详细热解机制。根据 DTG 曲线,主要分解温度区域为 300-400°C,在 350°C 时达到最大质量损失强度。热解过程中从生物质中逸出的主要官能团为-OH、-CH、-CH、CO、C-O 和-COOH。竹子热解过程中的主要化合物为在 300°C 时的乙酸和 2-丙烯酸、乙烯酯,在 350°C 时的 2-氧代丙酸和 1-羟基-2-丙酮,以及在 400°C 时的乙酸和乙酸乙烯酯。逸出气体分析表明,竹子中的成分在不同的温度和热解机制下发生反应,导致其热解产物具有不同的排放特征。

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