Key Laboratory of Coal Gasification and Energy Chemical Engineering of Ministry of Education, Shanghai Engineering Research Center of Coal Gasification, East China University of Science and Technology, Shanghai 200237, PR China.
Key Laboratory of Coal Gasification and Energy Chemical Engineering of Ministry of Education, Shanghai Engineering Research Center of Coal Gasification, East China University of Science and Technology, Shanghai 200237, PR China.
Bioresour Technol. 2014 May;159:143-9. doi: 10.1016/j.biortech.2014.02.117. Epub 2014 Mar 6.
Gasification reactivities of six different carbonaceous material chars with CO2 were determined by a Thermogravimetric Analyzer (TGA). Gasification reactivities of biomass chars are higher than those of coke and coal chars. In addition, physical structures and chemical components of these chars were systematically tested. It is found that the crystalline structure is an important factor to evaluate gasification reactivities of different chars and the crystalline structures of biomass chars are less order than those of coke and coal chars. Moreover, initial gasification rates of these chars were measured at high temperatures and with relatively large particle sizes. The method of calculating the effectiveness factor η was used to quantify the effect of pore diffusion on gasification. The results show that differences in pore diffusion effects among gasification with various chars are prominent and can be attributed to different intrinsic gasification reactivities and physical characteristics of different chars.
采用热重分析仪(TGA)测定了 6 种不同炭质材料与 CO2 的气化反应活性。生物质炭的气化反应活性高于焦炭和煤焦。此外,还对这些炭的物理结构和化学组成进行了系统测试。结果表明,结晶结构是评价不同炭气化反应活性的重要因素,生物质炭的结晶结构不如焦炭和煤焦有序。此外,在较高温度和较大粒径下测量了这些炭的初始气化速率。采用有效因子η的计算方法来量化孔扩散对气化的影响。结果表明,不同炭气化过程中孔扩散效应的差异显著,这归因于不同炭的固有气化反应活性和物理特性的不同。