State Key Laboratory of Coal Combustion, Huazhong University of Science and Technology, 1037 Luoyu Road, 430074 Wuhan, PR China.
State Key Laboratory of Coal Combustion, Huazhong University of Science and Technology, 1037 Luoyu Road, 430074 Wuhan, PR China.
Bioresour Technol. 2017 Jun;233:15-20. doi: 10.1016/j.biortech.2017.02.070. Epub 2017 Feb 20.
We herein investigate the various roles of calcium oxide in the pyrolysis of biomass at a variant temperatures. The evolution of pyrolysis products was examined to propose the various roles of Ca at a range of temperatures and CaO addition ratios with cotton stalk on a fixed-bed reactor. We found that upon the addition of CaO, the content of ketones produced increased, while that of acidic compounds decreased. Under similar conditions, the concentration of evolved H and CH increased, while that of CO decreased. Thus, variation in the CaO/biomass (Ca/B) mass ratios and pyrolysis temperatures indicated that CaO could act as a reactant, an absorbent, and a catalyst at Ca/B ratios of <0.2, >0.2, and >0.4, respectively. Moreover, at temperatures >600°C, the roles of CaO as an absorbent and a reactant were less apparent, while its role as a catalyst was enhanced.
我们在此研究了氧化钙在不同温度下生物质热解中的各种作用。通过在固定床反应器上使用棉秆,考察了不同温度下氧化钙的各种作用以及氧化钙添加比例对热解产物演变的影响。我们发现,加入氧化钙后,酮类产物的含量增加,而酸性化合物的含量减少。在相似条件下,H 和 CH 的浓度增加,而 CO 的浓度降低。因此,氧化钙/生物质(Ca/B)质量比和热解温度的变化表明,氧化钙在 Ca/B 比分别为<0.2、>0.2 和>0.4 时,分别可以作为反应物、吸收剂和催化剂。此外,在温度高于 600°C 时,氧化钙作为吸收剂和反应物的作用不太明显,而作为催化剂的作用增强。