Investigation on Gaseous Product Distributions During Co-Pyrolysis of Platanus Wood and Different Rank Coals From Northwestern China in a Drop Tube Furnace

Author(s):  
Haiyu Meng ◽  
Shuzhong Wang ◽  
Lin Chen ◽  
Wu Zhiqiang ◽  
Jun Zhao

Co-thermochemical conversion of municipal solid waste blends with coal has the advantage of diversifying energy resources and decreasing consumption of fossil fuels. As the initial and fundamental stage of co-thermochemical conversion, co-pyrolysis of municipal solid waste and coal has important influence on performance of the further co-combustion or co-gasification process. In this paper, gaseous product distributions during co-pyrolysis of platanus wood (wood waste from urban roadside trees platanus acerifolia) and two different rank coals (Shenmu bituminous and Pingzhuang lignite from northwestern China) were investigated through a semi-batch type drop tube furnace at different temperatures. The platanus wood/coal blends were fed into the furnace with five different mass ratios of 100/0, 70/30, 50/50, 30/70, and 0/100. The gaseous products (H2, CO, CO2, CH4 and light hydrocarbons) were continuously collected and then determined by gas chromatography. Experimental results indicated that the gaseous product distributions from pyrolysis of the platanus wood and coal blends were significantly affected by the temperature, the platanus wood/coal mass ratio and coal type. Compared the experimental results with the calculated values obtained from individual samples based on weighted average, some signs about positive or negative synergistic effect were observed on the formation of the major gas composition. The synergistic effect could probably be caused by the secondary reactions between volatiles and chars. In addition, the coal rank appeared to have different influence on the synergistic effect between platanus wood and coal during co-pyrolysis process.

2018 ◽  
Vol 32 (4) ◽  
pp. 5396-5404 ◽  
Author(s):  
Xiaoqing Lin ◽  
Zhiliang Chen ◽  
Shengyong Lu ◽  
Shaorui Zhang ◽  
Mengmei Zhang ◽  
...  

2018 ◽  
Vol 81 ◽  
pp. 33-40 ◽  
Author(s):  
Shaorui Zhang ◽  
Xiaoqing Lin ◽  
Zhiliang Chen ◽  
Xiaodong Li ◽  
Xuguang Jiang ◽  
...  

Author(s):  
Vignesh Venkatasubramanian ◽  
Jingran Duan ◽  
Stephen A. Giles ◽  
Steve R. Duke ◽  
Ruel Overfelt

2014 ◽  
Vol 14 (4) ◽  
pp. 1160-1167 ◽  
Author(s):  
Wangsheng Chen ◽  
Jun Han ◽  
Linbo Qin ◽  
Masami Furuuchi ◽  
Hata Mitsuhiko

2013 ◽  
Vol 12 (2) ◽  
pp. 51
Author(s):  
L. Zimmer ◽  
F. M. Pereira ◽  
P. S. Schneider

In the present work a one-dimensional model for coal combustion in a Drop Tube Furnace (DTF) is developed. The equations that characterize the flow, heat transfer phenomena and coal combustion reactions are programmed in a FORTRAN90 language code. The results are compared with a reference model and experimental data, showing good agreement. A sensitivity study is performed to understand the behavior of coal combustion due to changes of some working parameters of the DTF. From the variation of the oxygen concentration, working temperature and input flow rates the response of the coal combustion in terms of unburned fraction can be obtained.


2017 ◽  
Vol 105 ◽  
pp. 4216-4221 ◽  
Author(s):  
Jianbo Li ◽  
Mingming Zhu ◽  
Zhezi Zhang ◽  
Kai Zhang ◽  
Guoqing Shen ◽  
...  

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