Mustafa Kemal University, Faculty of Engineering, Department of Petroleum and Natural Gas Engineering, 31200 İskenderun, Hatay, Turkey.
Waste Manag. 2011 Aug;31(8):1772-82. doi: 10.1016/j.wasman.2011.04.005. Epub 2011 May 4.
In this study, the non-catalytic and catalytic pyrolysis experiments were conducted on the sample of tire waste using expanded perlite as an additive material to determine especially the effect of temperature and catalyst-to-tire ratio on the products yields and the compositions and qualities of pyrolytic oils (NCPO and CPO). Non-catalytic studies, which were carried out under the certain conditions (a nitrogen flow of 100mL/min and a heating rate of 10°C/min), showed that the highest yield of pyrolytic oil (NCPO) was 60.02wt.% at 425°C. Then, the catalytic pyrolysis studies were carried out at catalyst-to-tire ratio range of 0.05-0.25 and the highest catalytic pyrolytic oil (CPO) yield was 65.11wt.% at the ratio of 0.10 with the yield increase of 8.48wt.% compared with the non-catalytic pyrolysis. Lastly, the pyrolytic oils were characterized with applying a various techniques such as elemental analyses and various chromatographic and spectroscopic techniques (GC-MS, (1)H NMR, FT-IR, etc.). The characterization results revealed that the pyrolytic oils which were complex mixtures of C(5)-C(15) organic compounds (predominantly aromatic compounds) and also the CPO compared to the NCPO was more similar to conventional fuels in view of the certain fuel properties.
在这项研究中,使用膨胀珍珠岩作为添加剂材料,对轮胎废物样品进行了非催化和催化热解实验,以确定温度和催化剂与轮胎的比例对产物产率以及热解油(NCPO 和 CPO)的组成和质量的影响。在一定条件下(氮气流量为 100mL/min,加热速率为 10°C/min)进行的非催化研究表明,在 425°C 时,热解油(NCPO)的最高产率为 60.02wt.%。然后,在催化剂与轮胎的比例范围为 0.05-0.25 时进行了催化热解研究,在比例为 0.10 时,催化热解油(CPO)的最高产率为 65.11wt.%,与非催化热解相比,产率增加了 8.48wt.%。最后,通过应用各种技术(如元素分析和各种色谱和光谱技术(GC-MS、(1)H NMR、FT-IR 等))对热解油进行了表征。表征结果表明,热解油是 C(5)-C(15)有机化合物(主要是芳香族化合物)的复杂混合物,与 NCPO 相比,CPO 更类似于常规燃料,因为其具有某些燃料特性。