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Thermal and catalytic pyrolysis of a mixture of plastics from small waste electrical and electronic equipment (WEEE)

机译:来自小型废物电气和电子设备(WEEE)的塑料混合物的热催化热解

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摘要

Pyrolysis seems a promising route for recycling of heterogeneous, contaminated and additives containing plastics from waste electrical and electronic equipment (WEEE). This study deals with the thermal and catalytic pyrolysis of a synthetic mixture containing real waste plastics, representative of polymers contained in small WEEE. Two zeolite-based catalysts were used at 400 °C: HUSY and HZSM-5 with a high silica content, while three different temperatures were adopted for the thermal cracking: 400, 600 and 800 °C. The mass balance showed that the oil produced by pyrolysis is always the main product regardless the process conditions selected, with yields ranging from 83% to 93%. A higher yield was obtained when pyrolysis was carried out with HZSM-5 at 400 °C and without catalysts, but at 600 and 800 °C. Formation of a significant amount of solid residue (about 13%) is observed using HUSY. The oily liquid product of pyrolysis, analysed by GC–MS and GC-FID, as well as by elemental analysis and for energy content, appeared lighter, less viscous and with a higher concentration of monoaromatics under catalytic condition, if compared to the liquid product derived from thermal degradation at the same temperature. HZSM-5 led to the production of a high yield of styrene (17.5%), while HUSY favoured the formation of ethylbenzene (15%). Energy released by combustion of the oil was around 39 MJ/kg, thus suggesting the possibility to exploit it as a fuel, if the recovery of chemical compounds could not be realised. Elemental and proximate analysis of char and GC-TCD analysis of the gas were also performed. Finally, it was estimated to what extent these two products, showing a relevant ability to release energy, could fulfil the energy demand requested in pyrolysis.
机译:热解似乎是从废电气和电子设备(WEEE)的含有塑料的异质,污染和添加剂的有前途途径。该研究涉及含有真正废塑料的合成混合物的热催化热解,代表小型WEEE中包含的聚合物。使用高二氧化硅含量的400℃:HASY和HZSM-5使用两种沸石催化剂,而热裂纹采用三种不同的温度:400,600和800℃。质量平衡表明,无论选定的工艺条件,热解产生的油始终是主要产物,产率范围为83%至93%。当用HZSM-5在400℃和不含催化剂的HZSM-5进行热解时获得更高的产量,但在600和800℃下进行。使用Husy观察到形成大量固体残基(约13%)。通过GC-MS和GC-FID分析的热解的油性液体产物,以及通过元素分析和用于能量含量,如果与液体产物相比,催化条件下较轻,粘稠且浓度较低,并且在催化条件下具有较高浓度的单甘露钒。在相同温度下衍生自热降解。 HZSM-5导致生产高产苯乙烯(17.5%),而HALY赞成乙苯的形成(15%)。如果油的燃烧释放的能量约为39mJ / kg,这表明如果无法实现化合物的恢复,则可能将其利用作为燃料的可能性。还进行了对气体的Char和GC-TCD分析的元素和近分析。最后,估计这两种产品在多大程度上显示出相关的释放能量能力,可以满足热解中所要求的能量需求。

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