School of Chemistry and Materials Science, Hunan Agricultural University, Changsha, 410128, People's Republic of China.
Hunan Engineering Research Center for Biochar, Changsha, 410128, People's Republic of China.
Environ Sci Pollut Res Int. 2022 Dec;29(59):89235-89244. doi: 10.1007/s11356-022-21887-3. Epub 2022 Jul 18.
Catalytic fast pyrolysis (CFP) for biomass treatment is a research hotspot but there is little information about the difference between the in situ and ex situ methods. In present work, the Ni-Fe/CaO-AlO catalysts with different Ni/Fe ratios have been synthesized by coprecipitation method, and the product distribution about the Chinese herb residue (CHR) catalytic fast pyrolysis by in situ and ex situ methods in a quartz tube reactor system has been investigated. The results show that the CFP pyrolysis would upgrade the quality of bio-oil but decrease the yields, no matter in situ or ex situ CFP process. During the in situ CFP process, heteroatoms may be absorbed by the catalyst support and cannot be transferred to the bio-oil, but the results of ex situ CFP are the opposite. In addition, the ex situ CFP reaction significantly increases the content of aromatic hydrocarbons. As to the gas products' distribution, the effect of Fe in catalysts to promote CH formation is reflected in in situ CFP process, while the promotion effect of H generation for Ni added in catalyst is mainly reflected in ex situ CFP process. However, due to the high reaction temperature (800 °C), the adsorption of CO by CaO support is not particularly significant. The possible mechanism of CHR in CFP process has also been summarized for understanding the process of in situ and ex situ CFP, and this study may provide a choice or reference for CHR treatment.
生物质的催化快速热解(CFP)是一个研究热点,但原位法和异位法之间的差异信息较少。本工作采用共沉淀法合成了不同 Ni/Fe 比的 Ni-Fe/CaO-Al2O3 催化剂,并在石英管反应器系统中考察了原位和异位法对中药渣(CHR)催化快速热解的产物分布。结果表明,CFP 热解无论在原位还是异位 CFP 过程中,都会提高生物油的品质,但降低产率。在原位 CFP 过程中,杂原子可能被催化剂载体吸收,而无法转移到生物油中,但异位 CFP 的结果则相反。此外,异位 CFP 反应显著增加了芳烃的含量。至于气体产物的分布,催化剂中 Fe 促进 CH 形成的作用在原位 CFP 过程中得到体现,而 Ni 加入催化剂后促进 H 生成的促进作用主要在异位 CFP 过程中体现。然而,由于反应温度较高(800°C),CaO 载体对 CO 的吸附作用并不特别明显。还总结了 CHR 在 CFP 过程中的可能机制,以了解原位和异位 CFP 过程,本研究可为 CHR 的处理提供一种选择或参考。