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以废弃煤 fines 和回收塑料为粘结剂制成的挤出物所衍生的慢速热解产物。

Slow Pyrolysis Products Derived from Extrudates Produced from Discard Coal Fines and Recycled Plastics as Binders.

作者信息

Marais Carel, Bunt John R, Leokaoke Nthabiseng T, Coetzer Roelof L J, Neomagus Hein W J P

机构信息

Centre of Excellence in Carbon-Based Fuels, North-West University, Potchefstroom Campus, Private Bag X6001, Potchefstroom 2520, South Africa.

Focus Area for Pure and Applied Analytics, Faculty of Natural and Agricultural Sciences, North-West University, Potchefstroom 2520, South Africa.

出版信息

ACS Omega. 2024 Jan 29;9(6):6627-6641. doi: 10.1021/acsomega.3c07626. eCollection 2024 Feb 13.

Abstract

The pyrolysis products derived from both coal and plastics have been extensively evaluated in literature; however, their copyrolysis product yields together with the characterization of the generated products have received less attention. Most studies use high heating rates with small particle sizes of the mechanically mixed blends. This study aims to improve the understanding of the slow copyrolysis behavior of extrudates produced from coal fines from the South African Highveld coalfield combined with recycled waste low-density polyethylene (LDPE) and polypropylene (PP). The fraction of plastic was varied between 10 and 100 wt % during extrusion. The extrudates (10 mm diameter) underwent slow pyrolysis in a modified Fischer assay setup by increasing the temperature (5 °C/min) under a nitrogen atmosphere to 520, 720, and 920 °C. The pyrolysis products (char, condensable products, water, and gas) were collected and characterized. The coal fines produced up to 83% char, whereas the plastics produced over 90% condensable products. The slow heating rate and the small reactor volume favored the production of condensable products, which increased with plastic concentration. The extrudates produced char and condensable product yields that fit the additive model of the raw materials. Statistical equations were developed to predict the pyrolysis yields and characteristics as functions of coal and plastic composition. The equations accurately predict the char yield, condensable product yield, fixed carbon content, ash content, sulfur content of chars, and carbon and hydrogen contents of chars and condensable products. Gas chromatography-mass spectrometry results indicate that the extrudates' condensable products consist mainly of alkanes and alkenes, similar to the plastics. Furthermore, the condensable products derived from PP and coal extrudates have fewer components with lower boiling points compared with the raw materials.

摘要

煤和塑料的热解产物在文献中已得到广泛评估;然而,它们的共热解产物产率以及所生成产物的特性却较少受到关注。大多数研究采用高加热速率和机械混合共混物的小粒径颗粒。本研究旨在增进对南非高地煤田细煤粉与回收废低密度聚乙烯(LDPE)和聚丙烯(PP)制成的挤出物的慢速共热解行为的理解。在挤出过程中,塑料的比例在10至100 wt%之间变化。通过在氮气气氛下以5℃/min的升温速率将温度升至520、720和920℃,直径为10 mm的挤出物在改进的费歇尔试验装置中进行慢速热解。收集并表征热解产物(焦炭、可凝产物、水和气体)。细煤粉产生高达83%的焦炭,而塑料产生超过90%的可凝产物。缓慢的加热速率和较小的反应器体积有利于可凝产物的生成,可凝产物随塑料浓度的增加而增加。挤出物产生的焦炭和可凝产物产率符合原料的加和模型。建立了统计方程来预测热解产率和特性与煤和塑料组成的函数关系。这些方程能准确预测焦炭产率、可凝产物产率、固定碳含量、灰分含量、焦炭的硫含量以及焦炭和可凝产物的碳和氢含量。气相色谱 - 质谱结果表明,挤出物的可凝产物主要由烷烃和烯烃组成,与塑料类似。此外,与原料相比,由PP和煤挤出物得到的可凝产物中沸点较低的组分较少。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b91f/10870274/89cca198e5b4/ao3c07626_0001.jpg

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