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废机械油热解制备热解油及其特性研究。

Production and characterization of pyrolytic oils by pyrolysis of waste machinery oil.

机构信息

Department of Chemistry, Science Faculty, Ankara University, Ankara 06100, Turkey.

出版信息

J Hazard Mater. 2010 Jan 15;173(1-3):420-6. doi: 10.1016/j.jhazmat.2009.08.100. Epub 2009 Aug 27.

Abstract

The main objective of this work is to propose an alternative method for evaluation of the waste machinery oil which is an environmental problem in Turkey. For this purpose, pyrolysis of waste machinery oil was conducted in a tubular reactor. Effect of the experimental conditions (various temperatures, catalyst type) on the formation of pyrolytic oil, gas, and char was investigated. Nickel supported on silica and zeolite (HZSM-5) were used as catalysts. Properties of the pyrolytic oils were characterized by gas chromatograph equipped with a mass selective detector (GC-MS), gas chromatography with flame ionization detector (GC-FID for boiling point range distribution), nuclear magnetic resonance ((1)H NMR) spectroscopy, higher heating value measurement, and elemental analysis. The behavior of the metals in the waste machinery oil and the pyrolytic oil samples was also quantitatively detected by inductively coupled plasma (ICP) analysis. As, Cd and Cr contents of the all pyrolytic oils were found as <0.05 ppm, while Cu content of the pyrolytic oils varied between 0.3 ppm and 0.61 ppm. Only Vanadium contents of the pyrolytic oils obtained at 800 degrees C (0.342 ppm) and in the presence of HZSM5 (0.57 ppm) increased compared to that obtained by waste machinery oil (0.1 ppm). Lower metal contents of the pyrolytic oils reveal that pyrolysis of the waste machinery oils leads to the formation of environmental friendly pyrolytic oils with higher heating values.

摘要

这项工作的主要目的是提出一种替代方法来评估废机械油,这是土耳其的一个环境问题。为此,在管式反应器中进行了废机械油的热解。考察了实验条件(各种温度、催化剂类型)对热解油、气体和焦炭形成的影响。使用负载在硅石和沸石(HZSM-5)上的镍作为催化剂。通过配备质量选择性检测器的气相色谱仪(GC-MS)、带有火焰电离检测器的气相色谱仪(GC-FID 用于沸点范围分布)、核磁共振(1H NMR)光谱、高位发热量测量和元素分析对热解油的性质进行了表征。通过电感耦合等离子体(ICP)分析还定量检测了废机械油和热解油样品中金属的行为。所有热解油中的 As、Cd 和 Cr 含量均<0.05 ppm,而 Cu 含量在 0.3 ppm 到 0.61 ppm 之间变化。只有在 800°C 下获得的热解油(0.342 ppm)和在 HZSM5 存在下获得的热解油(0.57 ppm)中的 V 含量与废机械油(0.1 ppm)相比有所增加。热解油中较低的金属含量表明,废机械油的热解导致形成具有高热值的环保型热解油。

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