首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >Thermogravimetric investigation of macadamia nut shell, coal, and anthracite in different combustion atmospheres
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Thermogravimetric investigation of macadamia nut shell, coal, and anthracite in different combustion atmospheres

机译:澳洲坚果壳,煤和无烟煤在不同燃烧气氛下的热重分析

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摘要

The combustion and co-combustion behaviour of macadamia nut shell, high-ash coal, and anthracite, along with their blends was studied using thermogravimetry. The reactivities of all samples were analysed in air, oxygen, and CO_2 atmospheres and at different heating rates from 10 to 40°C/min. Macadamia sheE was found to have a lower ash content, 0.36%, than coal with 27.49% ash. The calorific values were similar, 19.64 MJ/kg and 19.44 MJ/kg respectively. The differential thermogravimetric results indicate that as the heating rates increase the ignition, peak, and burnout temperatures increase significantly, leading to high combustion rates. The interaction between the fuels was evaluated using the weighted average model, and the results indicated that there is more synergetic interaction between 20% macadamia plus 80% coal under oxygen than in air and CO_2 atmospheres. The results of the investigation provide the combustion and co-combustion characteristics of various samples and their blends and indicate their combustion compatibilities.
机译:用热重法研究了澳洲坚果壳,高灰煤和无烟煤及其混合物的燃烧和共燃行为。在空气,氧气和CO_2气氛中,以10至40°C / min的不同加热速率分析所有样品的反应性。发现澳洲坚果的灰分含量比煤的灰分含量低,仅为0.36%,而煤炭为27.49%。发热量相似,分别为19.64 MJ / kg和19.44 MJ / kg。差示热重分析结果表明,随着加热速率的增加,点火,峰值和燃尽温度显着提高,从而导致较高的燃烧速率。使用加权平均模型评估了燃料之间的相互作用,结果表明在氧气下20%澳洲坚果加80%煤炭之间的协同相互作用要比在空气和CO_2气氛中更多。研究结果提供了各种样品及其混合物的燃烧和共燃烧特性,并表明了它们的燃烧相容性。

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