Simulation study on comprehensive thermal treatment of oil sludge based on Aspen plus

Zhiqiang Gong, Zhiwei Chu, Lingkai Zhu, Xiaoyu Li, Yue Han, Junshan Guo, Panfeng Shang, W. Zheng, Junqi Ding, Mao-cheng Tian
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引用次数: 2

Abstract

Abstract This article proposed an original comprehensive thermal treatment coupled with gasification and combustion (CGC) of oil sludge (OS), which was designed to produce hydrogen-rich syngas. Based on the experimental results of OS gasification with steam, the combustion characteristics of char from OS gasification were analyzed by thermogravimetric experiments under different heating rates of 10, 20 and 30 °C/min. The combustion process of OS gasification char can be divided into three stages, including water evaporation, volatile combustion and heavy component combustion. The average values of activation energy (E) obtained by Friedman, FWO and Starink methods were 89.98 kJ/mol, 147.61 kJ/mol and 143.09 kJ/mol, respectively. According to OS gasification and OS gasification char combustion experiments, the comprehensive thermal treatment process CGC of OS was simulated by Aspen Plus. The simulation results showed that increasing both gasification temperature and the mass ratio of steam to OS (SOS) could promote the hydrogen production. Considering energy consumption, the recommended OS gasification temperature, SOS and char combustion temperature were 800 ∼ 900 °C, 0.3 ∼ 0.5, and 900 ∼ 1000 °C, respectively, which could ensure full burning of char and reduce the generation of pollutants. The CGC process could reduce CO2 emissions by 44.2% from carbon flow analysis.
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基于Aspen plus的油泥综合热处理模拟研究
摘要本文提出了一种独创的油泥综合热处理-气化-燃烧(CGC)工艺,用于生产富氢合成气。以水蒸气气化OS的实验结果为基础,通过热重实验分析了OS在10、20、30℃/min不同升温速率下的燃烧特性。OS气化炭的燃烧过程可分为水分蒸发、挥发性燃烧和重组分燃烧三个阶段。Friedman法、FWO法和Starink法得到的活化能平均值分别为89.98 kJ/mol、147.61 kJ/mol和143.09 kJ/mol。根据OS气化和OS气化炭燃烧实验,利用Aspen Plus对OS的综合热处理过程CGC进行了模拟。模拟结果表明,提高气化温度和蒸汽与OS的质量比(SOS)都能促进制氢。考虑到能源消耗,建议的OS气化温度、SOS和焦炭燃烧温度分别为800 ~ 900℃、0.3 ~ 0.5℃和900 ~ 1000℃,既能保证焦炭充分燃烧,又能减少污染物的产生。通过碳流分析,CGC工艺可以减少44.2%的CO2排放量。
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