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用于能源应用的生物质增值:对谷壳的初步研究。

Biomass valorization for energy applications: A preliminary study on millet husk.

作者信息

Kuhe Aondoyila, Terhemba Achirgbenda Victor, Iortyer Humphrey

机构信息

Mechanical Engineering Department, Federal University of Agriculture, Makurdi, Nigeria.

出版信息

Heliyon. 2021 Aug 17;7(8):e07802. doi: 10.1016/j.heliyon.2021.e07802. eCollection 2021 Aug.

Abstract

This study used millet husk which is a waste and gum Arabic as binder to develop briquettes for domestic cooking in Northern Nigeria. The objective was to investigate the effect of particle sizes, compaction pressures and binder concentrations on the physical, mechanical and thermal characteristics of the briquettes. Furthermore, the study also accessed the economic viability of the usage of millet husk briquettes as fuel. Particle sizes of 0.3, 0.4, 0.6 and 1.7mm; compaction pressures of 10, 15, 20 and 25 MPa and binder concentrations (gum Arabic) of 25, 30, 35 and 40% were used to densify the millet husk mixed with gum Arabic at room temperature with the aid of hydraulic press. The caloric value (15.27 MJ/kg) was determined using ASTM D2015, other physical and chemical properties of the millet husk was determined by proximate and ultimate analysis which showed that volatile matter (76%), ash content (6.5%) and sulphur content (0.3%) are within the recommended range for domestic cooking fuels. It was found that the density (438 kg/m and 669 kg/m), impact resistance index (70-93%) and compressive strength of the millet husk briquettes increased with compaction pressures and binder concentrations and decreases with increase in particle sizes, while for porosity of the briquettes, the above case was a reversal. The performance of the briquettes for domestic cooking were accessed by ignition time (109 and 140 s); burning rate (0.09 g/s and 0.18 g/s) and water boiling test which took 5 and 11 min to boil 1 L of water as compared to fuel wood that takes longer. Economic analysis showed that utilizing the millet husk generated in northern Nigeria will lead to huge savings in fuel wood consumption, monetary savings of about ₦ 9,257,869,268.62, and reduction in deforestation and its attendant problems. A structured questionnaire as used to ascertain the acceptability of the produced briquettes. Most of the respondents (90%) in a survey expressed willingness to use millet husk briquette as replacement for wood. The study concludes that millet husk is good for briquetting for energy applications with high potential to reduce energy poverty, minimal waste and reduce indoor pollution for domestic cooking therefore, making millet cultivation more profitable in Northern Nigeria.

摘要

本研究使用作为废弃物的谷壳和阿拉伯树胶作为粘结剂来制作型煤,用于尼日利亚北部的家庭烹饪。目的是研究颗粒尺寸、压实压力和粘结剂浓度对型煤物理、机械和热特性的影响。此外,该研究还评估了使用谷壳型煤作为燃料的经济可行性。使用0.3、0.4、0.6和1.7毫米的颗粒尺寸;10、15、20和25兆帕的压实压力以及25%、30%、35%和40%的粘结剂浓度(阿拉伯树胶),借助液压机在室温下将谷壳与阿拉伯树胶混合进行致密化处理。使用ASTM D2015测定热值(15.27兆焦/千克),通过近似分析和元素分析测定谷壳的其他物理和化学性质,结果表明挥发物(76%)、灰分含量(6.5%)和硫含量(0.3%)在家庭烹饪燃料的推荐范围内。研究发现,谷壳型煤的密度(438千克/立方米和669千克/立方米)、抗冲击指数(70 - 93%)和抗压强度随压实压力和粘结剂浓度的增加而增加,随颗粒尺寸的增加而减小,而型煤的孔隙率情况则相反。通过点火时间(109秒和140秒)、燃烧速率(0.09克/秒和0.18克/秒)以及水煮试验来评估型煤在家庭烹饪中的性能,水煮试验中烧开1升水分别需要5分钟和11分钟,相比之下,使用薪柴所需时间更长。经济分析表明,利用尼日利亚北部产生 的谷壳将大幅节省薪柴消耗,节省资金约9257869268.62奈拉,并减少森林砍伐及其带来的相关问题。使用结构化问卷来确定所生产型煤的可接受性。一项调查中的大多数受访者(90%)表示愿意使用谷壳型煤替代木材。该研究得出结论,谷壳非常适合用于能源应用的型煤制作,具有减少能源贫困、产生最少废弃物以及减少家庭烹饪室内污染的巨大潜力,因此,这使得尼日利亚北部的谷子种植更具盈利性。

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