Pyrolytic topping of coal-algae composite under mild inert conditions

IF 0.6 4区 工程技术 Q4 ENERGY & FUELS Journal of Energy in Southern Africa Pub Date : 2019-09-19 DOI:10.17159/2413-3051/2019/v30i3a5763
H. Baloyi, Gary M. Dugmore
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Abstract

Co-processing of coal and biomass has been a focus of several research studies aimed at addressing the negative environmental attributes associated with thermal processing of coal alone, as well as improving the thermal behaviour of coal. Biomass materials are regarded as a clean, renewable source, so thermal co-processing of biomass with coal is considered an effective way to utilise coal in a sustainable manner. In this study, coal fines were blended with Scenedesmus microalgae slurry to form a coal-algae composite. Pyrolytic topping of coal-algae composite was performed at 450 ºC on a batch reactor. Parent fuels and resultant chars were analysed for their proximate properties using an Eltra thermostep TGA; a Vario EL cube Elementar was used to determine the elemental composition of the chars and oils. A simulated distillation (SimDis) method was used to determine the boiling point distribution of the produced oils. The objective of the study was to examine the effects of microalgae slurry on the pyrolytic behaviour of waste coal fines with respect to product yields, composition and quality. Results showed that the yields of volatile components from pyrolysis of coal-algae composite were high compared with those from pyrolysis of coal alone. A significant degree of deoxygenation, dehydrogenation and denitrification was observed in coal-algae char than coal char. SimDis results showed that the fossil bio-crude oil has different boiling point characteristics from coal tar. The study has shown that microalgae slurry has potential to influence the pyrolytic behaviour of waste coal under mild inert conditions.
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温和惰性条件下煤藻复合材料的热解顶化
煤和生物质的共同加工一直是若干研究的重点,其目的是处理与煤单独热加工有关的负面环境属性,以及改善煤的热行为。生物质材料被认为是一种清洁的可再生能源,因此生物质与煤的热加工被认为是可持续利用煤炭的有效途径。本研究将煤粉与Scenedesmus微藻浆混合,形成煤藻复合材料。在间歇式反应器上对煤藻复合材料在450℃下进行了热解顶化。使用Eltra热步热重分析仪分析了母燃料和产物炭的近似性质;用Vario EL立方体元素测定了焦炭和油的元素组成。采用模拟蒸馏法(SimDis)测定出油的沸点分布。这项研究的目的是检查微藻浆对废煤细粒热解行为在产品产量、组成和质量方面的影响。结果表明,煤藻复合热解的挥发性组分产率高于煤的单独热解。煤藻炭的脱氧、脱氢和反硝化作用显著高于煤焦。SimDis实验结果表明,生物化石原油的沸点特征与煤焦油不同。研究表明,微藻浆料在温和惰性条件下具有影响废煤热解行为的潜力。
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来源期刊
CiteScore
3.00
自引率
0.00%
发文量
16
审稿时长
6 months
期刊介绍: The journal has a regional focus on southern Africa. Manuscripts that are accepted for consideration to publish in the journal must address energy issues in southern Africa or have a clear component relevant to southern Africa, including research that was set-up or designed in the region. The southern African region is considered to be constituted by the following fifteen (15) countries: Angola, Botswana, Democratic Republic of Congo, Lesotho, Malawi, Madagascar, Mauritius, Mozambique, Namibia, Seychelles, South Africa, Swaziland, Tanzania, Zambia and Zimbabwe. Within this broad field of energy research, topics of particular interest include energy efficiency, modelling, renewable energy, poverty, sustainable development, climate change mitigation, energy security, energy policy, energy governance, markets, technology and innovation.
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