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南非高灰分煤与垃圾衍生燃料的共燃烧性能及反应动力学

The co-combustion performance and reaction kinetics of refuse derived fuels with South African high ash coal.

作者信息

Isaac Kerina, Bada Samson O

机构信息

DSI-NRF SARChI Clean Coal Technology Research Group, Faculty of Engineering and the Built Environment, University of the Witwatersrand, South Africa.

出版信息

Heliyon. 2020 Jan 29;6(1):e03309. doi: 10.1016/j.heliyon.2020.e03309. eCollection 2020 Jan.

Abstract

This research focuses on the co-firing of low-quality coal with refuse derived fuel (RDF) as a means to reduce the volume of waste dumped in landfill sites. The co-combustion behaviour and kinetics of various RDF/coal blends at different weight ratios, along with their physicochemical characteristics were investigated. The physicochemical analysis revealed that the run-of-mine and discard coal have relatively low calorific values of 21.7 MJ/kg and 16.7 MJ/kg, respectively. The RDF samples, plastic blend (31.2 MJ/kg) and paper blend (22.4 MJ/kg), were found to have higher energy contents. The thermogravimetric analysis was performed in an atmosphere of air, over a temperature range of 25-850 °C, and the results showed that the RDF samples had lower ignition, devolatilisation, and burnout temperatures compared to the coals. The ignition temperatures for the blended fuel occurs in the lower temperature region when RDF is added to the blend, likewise the peak temperatures and burnout temperature shifted to a lower temperature zone. The activation energies (E) were determined using the Coats-Redfern method. The E for the run-of-mine (ROM) coal of 104.4 kJ/mol, was found to reduce to 31.4 kJ/mol for the 75% PB + 25% ROM coal blend and 35 kJ/mol for the 75% PL + 25% ROM coal blend, respectively. The discard coal which had an E of 109.9 kJ/mol was reduced to 30.9 kJ/mol for the 75% PB + 25% discard blend, and 33.5 kJ/mol for the 75% PL + 25% discard coal blend. It was determined that the most favourable blend for co-combustion was 70% discard coal + 30% PL RDF due to the similarity of the combustion profile to that of 100% coal and the simultaneous reduction in apparent activation energy.

摘要

本研究聚焦于将劣质煤与垃圾衍生燃料(RDF)混合燃烧,以此减少倾倒在垃圾填埋场的废物量。研究了不同重量比的各种RDF/煤混合物的共燃烧行为和动力学,以及它们的物理化学特性。物理化学分析表明,原矿煤和废弃煤的热值相对较低,分别为21.7兆焦/千克和16.7兆焦/千克。发现RDF样品,即塑料混合物(31.2兆焦/千克)和纸张混合物(22.4兆焦/千克),具有更高的能量含量。在空气气氛中,于25 - 850℃的温度范围内进行了热重分析,结果表明,与煤相比,RDF样品的着火、挥发和燃尽温度较低。当向混合物中添加RDF时,混合燃料的着火温度出现在较低温度区域,同样,峰值温度和燃尽温度也转移到较低温度区。使用Coats - Redfern方法确定了活化能(E)。原矿(ROM)煤的E为104.4千焦/摩尔,对于75%塑料混合物 + 25% ROM煤的混合物,E降至31.4千焦/摩尔,对于75%纸张混合物 + 25% ROM煤的混合物,E为35千焦/摩尔。废弃煤的E为109.9千焦/摩尔,对于75%塑料混合物 + 25%废弃煤的混合物,E降至30.9千焦/摩尔,对于75%纸张混合物 + 25%废弃煤的混合物,E为33.5千焦/摩尔。经确定,共燃烧最有利的混合物是70%废弃煤 + 30%塑料RDF,这是因为其燃烧曲线与100%煤的相似,且同时表观活化能降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b280/6994845/07a15684eeaf/gr1.jpg

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