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Mechanical Harvesting Increases Leaf and Stem Debris in Loads of Mechanically Harvested Citrus Fruit

机译:机械采摘增加了机械采摘的柑橘类水果负荷中的叶和茎碎片

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The adoption of mechanical harvesting for processing oranges is a major objective of the Florida citrus industry. A number of issues have slowed the adoption of this new technology, including the observation that the amount of leaves, sterns, and dead branches (collectively termed "debris") is greater in mechanically harvested than in hand-harvested loads of fruit. This debris increases transportation and processing costs. The objective of this research was to determine the amount and types of debris in mechanically harvested loads of sweet oranges compared with hand-harvested controls. Mechanical harvesting was found to increase the amount of debris per load of fruit by as much as 250% compared with hand-harvested fruit. This translates into approximate to 108 kg of debris compared with 71 kg (fresh weight) per 27 t load for mechanically harvested and hand-harvested fruit, respectively. Across harvesting method, leaves were the largest component of debris, accounting for approximate to 60% of total debris, small stems (less than 5 mm diameter) accounted for approximate to 35%, and the remaining 5% was large stems (greater than 5 mm diameter). In addition, the amount of sand on the surface of mechanically harvested fruit that was picked up from the orchard floor was found to be up to 10 times greater compared with hand-harvested controls. Engineers developing debris elimination systems for mechanical harvesting systems can use the data from this study to determine the performance requirements of their systems. The data are also useful for economic analyses of the costs of mechanical harvesting.
机译:采用机械收割机加工橙子是佛罗里达州柑橘产业的主要目标。许多问题已使这项新技术的采用减慢了速度,其中包括观察到,机械收获的叶子,船尾和枯枝(统称为“碎片”)的数量大于手工收获的果实的数量。这些碎片增加了运输和处理成本。这项研究的目的是确定与人工收获的对照相比,机械收获的甜橙负荷物中的残渣数量和类型。与手工收获的水果相比,发现机械收获可以使每份水果的碎屑量增加多达250%。这相当于大约108公斤的碎片,而机械收获和手工收获的水果每27吨负荷分别为71公斤(新鲜重量)。在整个收获方法中,叶片是碎片的最大组成部分,约占总碎片的60%,小茎(直径小于5毫米)约占35%,其余5%是大茎(大于5)。直径)。此外,发现从果园地板上捡拾的机械收获的水果表面的沙子量比手工收获的对照多出10倍。开发用于机械收割系统的杂物消除系统的工程师可以使用本研究中的数据来确定其系统的性能要求。该数据还可用于机械收割成本的经济分析。

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