Modification and Performance Evaluation of a Biomass Pelleting Machine

S. O. Jekayinfa, Folorunso Adegboyega Ola, F. Akande, Mutairu Abiola Adesokan, Ibrahim Akinola Abdulsalam
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Abstract

The use of biomass as a source of energy has been identified to be energy intensive, involving high handling costs. However, pelletization reduces the bulk density of biomass, thereby reducing the handling costs and enhancing ease of use. This study modified and evaluated an existing hand-operated fish feed pelleting machine. The parts of the machine that were redesigned were the hopper and the power transmission unit. Corncob was used to evaluate the modified machine using the die hole diameter (5, 6 and 7 mm) and the binder quantity (0, 2.5 and 5 wt%) as factors. The average results obtained for machine efficiency, throughput, pellet length and bulk density were 58.83%, 4.24 kg/h, 15.51 mm and 0.160 g/cm3, respectively. The die hole diameter had a significant effect on the pellet length only. The binder quantity had a significant effect on machine efficiency, throughput and pellet length. Machine efficiency and throughput decreased as the quantity of binder increased, and the pellet length increased with the increasing quantity of binder.
生物质制粒机的改造和性能评估
将生物质用作能源被认为是能源密集型的,涉及高昂的处理成本。然而,制粒可降低生物质的体积密度,从而降低处理成本并提高易用性。本研究对现有的手动鱼饲料制粒机进行了改造和评估。重新设计的机器部件是料斗和动力传动装置。使用玉米芯来评估改进后的机器,使用的因素包括模孔直径(5、6 和 7 毫米)和粘合剂量(0、2.5 和 5 wt%)。机器效率、产量、颗粒长度和体积密度的平均结果分别为 58.83%、4.24 kg/h、15.51 mm 和 0.160 g/cm3。模孔直径仅对颗粒长度有显著影响。粘合剂量对机器效率、产量和颗粒长度有显著影响。机器效率和产量随着粘合剂用量的增加而降低,而颗粒长度则随着粘合剂用量的增加而增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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