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Study on the Feasibility of Plasma (DBD Reactor) Cracking of Different Hydrocarbons ( (n) -Hexadecane, Lubricating Oil, and Heavy Oil)

机译:不同烃类(DBD反应器)裂化的可行性研究( (n) -十六烷,润滑油和重油)

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In this paper, the cracking ability of plasma in the oil refinery, as a novel study, has been discussed. Furthermore, the cracking of n-hexadecane, lubricating oil, and heavy oil by a nonthermal plasma reactor was studied to investigate the liquid and gaseous products, gas chromatography, and simulated distillation (Sim Dis) analyzer were used. The results showed the production of hydrogen, ethane, ethylene, propane, propylene, and other hydrocarbons as a result of feedstock cracking. In these experiments, both lighter and heavier hydrocarbons were produced. In the first part, the n-hexadecane (C16H34) was injected to the reactor. The production rate of hydrogen, ethylene, and propylene were 12.74, 6.91, and 2.32 sccm, respectively. In the second part, lubricating oil, containing heavier hydrocarbons (C13–C42), was chosen as a feed. Plasma was able to crack this feed to C4–C12 with 39.77% (weight percent). In this part, the weight percent of C17+ (heavy hydrocarbons) decreased from 93.0% to 40.19%, showing that 56.8% of the heavy fraction of lubricating oil was cracked to lighter hydrocarbons. Finally, heavy oil was injected to the reactor and Sim Dis data showed that 95% of eluted materials were taken at 628 °C and 459 °C temperatures for raw and plasma treated heavy oils, showing 169 °C difference in the distribution of the boiling point of samples. This difference was due to the presence of lighter hydrocarbons with lower boiling point.
机译:本文讨论了炼油厂等离子的裂解能力,这是一项新颖的研究。此外,还研究了用非热等离子体反应器裂解正十六烷,润滑油和重油以研究液体和气体产物,气相色谱法和模拟蒸馏(Sim Dis)分析仪。结果表明,由于原料裂解,产生了氢气,乙烷,乙烯,丙烷,丙烯和其他碳氢化合物。在这些实验中,产生了较轻和较重的烃。在第一部分中,将正十六烷(C 16 H 34 )注入到反应器中。氢气,乙烯和丙烯的生产率分别为12.74、6.91和2.32 sccm。在第二部分中,选择了包含重烃(C 13 –C 42 )的润滑油作为进料。血浆能够将该进料裂解为C 4 –C 12 ,重量百分比为39.77%。在这部分中,C 17 + (重烃)的重量百分比从93.0%降低至40.19%,表明56.8%的重质润滑油被裂解为轻质烃。最后,将重油注入到反应器中,Sim Dis数据显示95%的洗脱物质是在628°C和459°C的温度下处理的原油和等离子处理过的重油,表明沸点分布相差169°C样品点。这种差异是由于存在沸点较低的轻质烃。

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