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Aspects of chemical recycling of complex plastic waste via the gasification route

机译:通过气化路线复合塑料废物的化学回收方面

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Oxygen blown high-temperature gasification constitutes an opportunity for chemical recycling of plastic wastes. This article summarizes the results from comparative tests of combustion and gasification of two complex plastic wastes: a plastic reject (PR) from processing recycled paper and an automotive shredder residue (ASR). Calculated gasification efficiencies corresponded to about 80% and 60%, respectively. Gasification resulted in lower yields of polychlorinated dibenzo-p-dioxins and dibenzofurans (PCDD/F) compared to direct combustion. A two-stage process, including gasification followed by syngas combustion, reduced the emissions of HC1 and PCDD/F in the flue gas to <1.4% and <0.2%, respectively, compared to the levels from direct combustion of the PR feedstock. Most of the PCDD/F (>99%) was captured along with paniculate matter (soot) during gasification. The contribution to the toxic concentration of PCDD/F was mainly from the PCDF congeners. Fly ash particulate matter from ASR combustion contained a significant proportion of zinc, which thus constitutes a great potential for use in zinc recycling.
机译:氧气吹过的高温气化构成了塑料废物化学回收的机会。本文总结了两种复杂塑料废物的燃烧和气化的比较试验结果:从加工再生纸和汽车粉碎机残留物(ASR)的塑料拒绝(PR)。计算的气化效率分别对应于约80%和60%。与直接燃烧相比,气化导致聚氯氯二苯甲苯-P-二恶英和二苯并呋喃(PCDD / F)产生较低的产率。与来自PR原料的直接燃烧的水平相比,分别是合成气燃烧,包括SINGAS燃烧的两级工艺,然后分别将HC1和PCDD / F的排放量降低至<1.4%和<0.2%。在气化过程中捕获大部分PCDD / F(> 99%)与胰岛素(烟灰)一起捕获。 PCDD / F的毒浓度的贡献主要来自PCDF Congeners。来自ASR燃烧的粉煤灰颗粒物质含有显着比例的锌,因此构成锌回收中使用的巨大潜力。

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