| Literature DB >> 29727985 |
Guanyi Chen1, Ruixue Zhang2, Wenchao Ma3, Bin Liu4, Xiangping Li4, Beibei Yan2, Zhanjun Cheng2, Tiejun Wang5.
Abstract
The catalytic cracking upgrading reactions over HZSM-5 of different model compounds of bio-oil have been studied with a self-designed fluid catalytic cracking (FCC) equipment. Typical bio-oil model compounds, such as acetic acid, guaiacol, n-heptane, acetol and ethyl acetate, were chosen to study the products distribution, reaction pathway and deactivation of catalysts. The results showed: C6-C8 aromatic hydrocarbons, C2-C4 olefins, C1-C5 alkanes, CO and CO2 were the main products, and the selectivity of olefins was: ethylene>propylene>butylene. Catalyst characterization methods, such as FI-IR, TG-TPO and Raman, were used to study the deactivation mechanism of catalysts. According to the catalyst characterization results, a catalyst deactivation mechanism was proposed as follows: Firstly, the precursor which consisted of a large number of long chain saturated aliphatic hydrocarbons and a small amount CC of aromatics formed on the catalyst surface. Then the active sites of catalysts had been covered, the coke type changed from thermal coke to catalytic coke and gradually blocked the channels of the molecular sieve, which accelerated the deactivation of catalyst.Entities:
Keywords: Bio-oil; Catalytic cracking; Deactivation mechanism; Model compounds; Reaction pathway
Year: 2018 PMID: 29727985 DOI: 10.1016/j.scitotenv.2018.03.147
Source DB: PubMed Journal: Sci Total Environ ISSN: 0048-9697 Impact factor: 7.963