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热解工艺与催化裂解阶段相结合:一种潜在的床垫泡沫废物能源解决方案。

A pyrolysis process coupled to a catalytic cracking stage: A potential waste-to-energy solution for mattress foam waste.

机构信息

Instituto de Carboquímica (ICB-CSIC), C/ Miguel Luesma Castán, 50018 Zaragoza, Spain.

Instituto de Carboquímica (ICB-CSIC), C/ Miguel Luesma Castán, 50018 Zaragoza, Spain.

出版信息

Waste Manag. 2021 Feb 1;120:415-423. doi: 10.1016/j.wasman.2020.09.052. Epub 2020 Oct 29.

DOI:10.1016/j.wasman.2020.09.052
PMID:33132000
Abstract

Pyrolysis coupled to either thermal or catalytic cracking of mattress foam waste was performed in a laboratory-scale facility consisting of a fixed-bed reactor joined to a tubular cracking reactor. The results showed a great potential for the production of syngas specially at high cracking temperatures. Particularly, fixing 800 °C in the cracking reactor, a CO and CH rich gas with a remarkable amount of H was obtained. The addition of catalysts (dolomite, olivine or HiFUEL®) significantly decreased undesirable tar formation, (below 10 wt%), simultaneously increasing the gas yield and keeping CO and CH as the main components in the stream, becoming a preferable route that the non-catalytic process. Accordingly, this stream could be used preferably for further applications in energy generation because its heating value ranged between 15.7 MJ/Nm and 19.6 MJ/Nm. In particular, the gas obtained by the use of dolomite could be advantageous for the production of organic compounds such as dimethyl ether (DME) as well as its use an engine or boiler to generate electricity in small facilities. In addition, the solid fraction obtained after de process could be used as a medium quality refused derived fuel (LHV ~ 12 MJ/kg) in order to support the internal energy requirements of the process.

摘要

将床垫泡沫废物进行热解或催化裂解与热解相结合,在一个由固定床反应器与管式裂解反应器连接而成的实验室规模设备中进行。结果表明,特别是在较高的裂解温度下,该方法具有生产合成气的巨大潜力。特别是在裂解反应器中固定 800°C 的条件下,得到了富含 CO 和 CH 的富氢气体。添加催化剂(白云石、橄榄石或 HiFUEL®)可显著减少不期望的焦油形成(低于 10wt%),同时增加气体产率,并使 CO 和 CH 保持为气流中的主要成分,成为比非催化过程更可取的路线。因此,由于其热值在 15.7 MJ/Nm 和 19.6 MJ/Nm 之间,该气流可优先用于能源发电等进一步应用。特别是使用白云石获得的气体有利于生产二甲醚(DME)等有机化合物,以及在小型设施中使用发动机或锅炉来发电。此外,脱碳过程后获得的固体部分可用作中等质量的废衍生燃料(LHV~12 MJ/kg),以支持该过程的内部能源需求。

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