中小型水产养殖鱼料混合制粒机的设计与制造

IF 1.8 Q2 AGRICULTURE, MULTIDISCIPLINARY
C. Okonkwo, Moses O. Isaac, E. Alhassan, Marvel Ogbevire, A. S. Alake, F. Ajao, A. Olayanju
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引用次数: 0

摘要

摘要本研究开发了一种紧凑、单一的鱼类饲料混合和造粒机。在这项工作中,设计、制造了一种紧凑型鱼类饲料混合和造粒机,并对其性能效率进行了评估。机器的基本单元是加工单元、结构支撑和原动机。所用饲料基质的主要成分是玉米、鱼粉、大豆饼、血液和骨粉,它们以不同的比例与湿木薯淀粉混合,以确定机器的性能和效率。结果表明,混合基质中淀粉包合物的不同比例对所研究的机器性能参数有影响。该机器的性能输出显示出最高的造粒效率为80.36%,颗粒耐用性为98.74%,生产能力为4.16 kg/h,以及在淀粉含量为0.125时每公斤0.23工时的最低劳动要求 kg,而最高颗粒堆积密度为0.302 g/cm3记录为0.20和0.125 kg淀粉添加量。机器经济分析表明,这对中小型养鱼户是有益的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and fabrication of a fish feed mixing cum pelleting machine for small-medium scale aquaculture industry
Abstract The study developed a compact, single unit of fish feed mixing and pelleting machine. In this work, a compact fish feed mixing and pelleting machine was designed, fabricated, and evaluated for its performance efficiency. The basic units of the machine are the processing unit, structural support, and the prime mover. The major component of the feed substrates used were maize, fish meal, soya bean cake, blood, and bone meal in their varied proportions blended with wet cassava starch to establish the machine performance and efficiency. The results showed that the varied proportions of starch inclusion in the blended substrate have influence on the investigated machine performance parameters. The performance outputs from the machine revealed the highest pelleting efficiency of 80.36%, pellet durability of 98.74%, throughput capacity of 4.16 kg/h, and the least labour requirement of 0.23 man-hour per kg at a starch inclusion of 0.125 kg, while the highest pellet bulk density of 0.302 g/cm3 was recorded at 0.20 and 0.125 kg starch addition. Machine economic analysis revealed that it can be of benefit for small- to medium-scale fish feed farmers.
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来源期刊
Open Agriculture
Open Agriculture AGRICULTURE, MULTIDISCIPLINARY-
CiteScore
3.80
自引率
4.30%
发文量
61
审稿时长
9 weeks
期刊介绍: Open Agriculture is an open access journal that publishes original articles reflecting the latest achievements on agro-ecology, soil science, plant science, horticulture, forestry, wood technology, zootechnics and veterinary medicine, entomology, aquaculture, hydrology, food science, agricultural economics, agricultural engineering, climate-based agriculture, amelioration, social sciences in agriculuture, smart farming technologies, farm management.
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