烧焦
化学
催化作用
反应性(心理学)
热重分析
煤
动力学
化学工程
焊剂(冶金)
无机化学
有机化学
病理
工程类
物理
医学
替代医学
量子力学
作者
Tao Liu,Lirui Mao,Facun Jiao,Chengli Wu,Mingdong Zheng,Hanxu Li
标识
DOI:10.1515/gps-2022-0020
摘要
Abstract Flux, able to improve the ash fusibility, usually contains catalytic metal compounds. Unfortunately, the quantitative analysis of synergistic catalysis effects between different fluxing agents on coal gasification has not been investigated thoroughly. In this study, the effect of the kinds and content of Na/Ca-based fluxes on char gasification was investigated in thermogravimetry analyzer (TGA). The synergistic catalysis effects and mechanism between the two kinds of fluxes were also studied. Finally, based on the TGA tests, the kinetics models for char gasification with flux addition were developed. The results showed that all the four Na-based fluxes could increase the char reactivity. Na 2 CO 3 , which afforded the best activity, could increase the reactivity by 5.3 times when the content was 5%. The five Ca-based fluxes had a weaker catalysis effect compared with Na-based fluxes. CaCl 2 , exhibiting the best activity among the five Ca-based fluxes, could increase the reactivity by 2.3 times when the content was 5%. For composite fluxes, Na 2 CO 3 –CaO and Na 2 CO 3 –CaCO 3 had a remarkable synergistic effect, whereas others had less effect. Na 2 CO 3 could inhibit the aggregation of Ca, which might cause the synergistic effects between Na and Ca fluxes. The random pore model was more suitable to describe the catalytic gasification process.
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