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Production of Clean Fuels by Catalytic Hydrotreating a Low Temperature Coal Tar Distillate in a Pilot-Scale Reactor

加氢脱硫 加氢脱氧 化学 焦炭 煤焦油 滴流床反应器 tar(计算) 催化作用 碳化 蒸馏 废物管理 化学工程 有机化学 吸附 工程类 选择性 程序设计语言 计算机科学
作者
Dong Li,Wen‐Gang Cui,Xiangping Zhang,Qinghua Meng,Qiucheng Zhou,Baoqi Ma,Menglong Niu,Wenhong Li
出处
期刊:Energy & Fuels [American Chemical Society]
卷期号:31 (10): 11495-11508 被引量:39
标识
DOI:10.1021/acs.energyfuels.7b01971
摘要

China is one of the largest coal producers in the world and abundant coal tar is produced from coal gasification and carbonization every year. Thus, catalytic hydrotreating coal tar for the production of clean fuel has received substantial attention. In this work, clean liquid fuel was obtained from the catalytic hydrogenation of a low temperature coal tar (LTCT) distillate in a four-stage fixed bed reactor with various catalyst combinations on the pilot scale. Effects of dominant hydrotreating parameters, reaction temperature (290–390 °C), H 2 pressure (8–15 MPa), and liquid hourly space velocity (0.2–0.6 h –1 ), on hydrotreating activity, the intermediate and final products, and chemical components of the hydrogenated oils were evaluated. Meanwhile, a possible reaction scheme for the conversion of alkyl-naphthalenes (AN) and phenols in feedstock was probed. The results showed that the four-stage reacting system was capable of removing sulfur and nitrogen to less than 10 μg/g. Furthermore, after hydrotreating, AN were transformed into decalins, tetralin, and indenes, and alkyl-cycloalkanes (CA) were the main and final products of phenolic compound hydrodeoxygenation (HDO). In addition, coke formation of the spent catalysts was also studied by thermogravimetric techniques, which suggested that the coke deposits are mainly concentrated in the second and third stages of the reactor. The results of this work show that high-quality clean fuels can be obtained through the multistage hydrotreating process with a catalyst gradation technology, which may bridge the gap between fundamental research and industrial production and offer a route for deep processing of LTCT.
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