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在沉降管固定床反应器中煤与生物质的共热解

Simultaneous Pyrolysis of Coal and Biomass in a Drop-Tube-Fixed-Bed Reactor.

作者信息

Zhao Yibo, Chang Lu, Huang Tingting, Yin Guojun, He Wenjing, Zhang Lanjun, Cui Minjie, Xu Shuyue, Liu Ziheng

机构信息

School of Environment and Chemical Engineering, Jiangsu Ocean University, Lianyungang, Jiangsu 222005, P. R. China.

Shandong Provincial Key Lab of Chemical Engineering and Process, Yantai University, Yantai, Shandong 264005, China.

出版信息

ACS Omega. 2022 Mar 2;7(10):8717-8723. doi: 10.1021/acsomega.1c06912. eCollection 2022 Mar 15.

Abstract

Copyrolysis of coal and biomass has been extensively studied to exploit its inherent synergistic effects; however, the different pyrolysis temperature zones of coal and biomass seriously affect the realization of these effects. Therefore, a new copyrolysis method (preheating the coal to a certain temperature and then adding the biomass in a drop-tube-fixed-bed reactor, denoted as M1) was designed herein to achieve "simultaneous" pyrolysis of coal and biomass. The yields of products and the characteristics of M1-produced tar were estimated and compared with those of tar obtained by fixed-bed-reactor (denoted as M2)-based copyrolysis. M1 achieved a higher tar yield and lower water content than M2. The M1-generated tar exhibited a lower free-radical concentration, higher H/C ratio, higher levels of uncondensed aromatic hydrogen, and shorter side-chains than that produced by M2. The temperature of HLBE coal at which the WSs were fed to the reactor in M1, denoted as , affects the "simultaneous" pyrolysis. values of 300, 400, and 500 °C were studied, and it was found that the tar yield obtained at a of 400 °C (the main pyrolysis temperature of coal) is the highest, the water yield is the lowest, and the free-radical concentration of the tar is also the lowest among the investigated samples.

摘要

煤与生物质的共热解已得到广泛研究,以利用其固有的协同效应;然而,煤和生物质不同的热解温度区间严重影响了这些效应的实现。因此,本文设计了一种新的共热解方法(将煤预热至一定温度,然后在滴管固定床反应器中加入生物质,记为M1),以实现煤和生物质的“同时”热解。对产物产率和M1热解产生的焦油特性进行了评估,并与基于固定床反应器(记为M2)的共热解所获得的焦油进行了比较。M1的焦油产率更高,含水量更低。与M2产生的焦油相比,M1产生的焦油具有更低的自由基浓度、更高的H/C比、更高水平的未缩合芳香氢以及更短的侧链。在M1中向反应器进料WSs时HLBE煤的温度(记为 )影响“同时”热解。研究了300、400和500℃的 值,发现在400℃(煤的主要热解温度)下获得的焦油产率最高,产水量最低,且在所研究的样品中焦油的自由基浓度也是最低的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cff7/8928531/f76c42d0fdcd/ao1c06912_0002.jpg

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