Effects of pyrolysis parameters on the distribution of pyrolysis products of Miscanthus

Author:

Hu Zhangmao1,Zhou Tong1,Tian Hong1,Feng Leihua1,Yao Can2,Yin Yanshan1,Chen Donglin1

Affiliation:

1. School of Energy & Power Engineering, Changsha University of Science & Technology, Changsha, China

2. School of Energy and Environment, Southeast University, Nanjing, China

Abstract

This work presents a comprehensive study on the effects of pyrolysis parameters (pyrolysis temperature, residence time, and heating rate) on the distribution of pyrolysis products of Miscanthus. Py-GC/MS (Pyrolysis-gas chromatography/mass) was conducted to identify building blocks of value-added chemical from Miscanthus. The results showed that the main pyrolysis products of Miscanthus were ketone, aldehyde, phenol, heterocycles, and aromatic compounds. The representative compounds of ketone and aldehyde compounds produced at different pyrolysis temperatures changed obviously, while the representative compounds of phenolic, heterocyclic, and aromatic compounds had no obvious change. Large-scale pyrolysis of Miscanthus had begun at 400°C, and the relative content of pyrolysis products from Miscanthus reached the maximum of 98.34% at 700°C. The relative peak area ratio of phenol and aromatic compounds reached the maximum and minimum at the residence time of 5 and 10 s, while the relative peak area ratio of ketone compounds showed the opposite trend. The relative peak area ratio of aldehyde compounds was higher under shorter or longer residence time. For heterocyclic compounds, the relative peak area ratio reached the maximum of 27.0% at residence time of 10 s. The faster or slower heating rate was beneficial to the production of aldehyde and phenol compounds. The relative peak area ratio of ketone compounds reached the maximum at 10,000°C/s, 70°C/s, and 10°C/s, and the relative peak area ratio tendency of heterocyclic compounds was similar to ketone. For aromatic compounds, the overall fluctuations were large, and the relative peak area ratio was the highest at the heating rate of 100°C/s.

Funder

the Natural Science Foundation of China for Young Scholars

the Natural Science Foundation of Hunan Province of China for Young Scholars

Open Fund of Key Laboratory of Renewable Energy Electric-Technology of Hunan Province

the Innovative Team of Key Technologies of Energy Conservation, Emission Reduction and Intelligent Control for Power-Generating Equipment and System at CSUST

Open Fund of Innovation Platform of Hunan Provincial Education Department of China

Publisher

SAGE Publications

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