Engineering Perspectives of the Hemp Plant, Harvesting and Processing

Ying Chen, Jude Liu, J. Gratton
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引用次数: 4

Abstract

Abstract The special characteristics of the hemp (Cannabis sativa L.) plant make it one of the most challenging crops to handle. Several studies, both in the laboratory and the field, have been conducted at the University of Manitoba, Canada, on the engineering perspectives of hemp production, including the physical and mechanical properties of the hemp plant, hemp harvesting and processing. Physical properties of the hemp plant, such as plant height, seed-head length, stem diameter and stem specific mass, vary highly within a field and across fields. The force and energy required for cutting a hemp stem are much greater than those required for cutting maize stalk and forage crops. The two-windrow harvesting concept has been demonstrated to be feasible and can be implemented into a commercial windrower for harvesting dual-purpose hemp. Conditioned hemp dries significantly faster than unconditioned hemp. However, conditioning hemp requires more power than conditioning a forage crop. The basic machine functions required for hemp fibre processing are separating the fibre from the core and cleaning the fibre. A field-going processing unit can be formed by combining a modified forage harvester and a straw walker from a grain combine. However, the effectiveness of such a unit is limited, and the design of new separating and cleaning devices may be required for higher fibre yield and purity.
大麻植物、收获和加工的工程前景
大麻(Cannabis sativa L.)植物的特殊特性使其成为最难处理的作物之一。加拿大马尼托巴大学在实验室和实地进行了几项关于大麻生产的工程观点的研究,包括大麻植物的物理和机械特性,大麻收获和加工。大麻植物的物理特性,如株高、种头长、茎直径和茎比质量,在田间和田间变化很大。切割大麻茎所需的力和能量比切割玉米秸秆和饲料作物所需的力和能量大得多。双窗收获的概念已被证明是可行的,可以实施到一个商业的风机收获两用大麻。经过条件处理的大麻干得比未经条件处理的大麻快得多。然而,调节大麻需要比调节饲料作物更多的力量。大麻纤维加工所需的基本机器功能是将纤维与芯分离并清洗纤维。田间处理单元可由改良的饲草收割机和来自谷物联合收割机的秸秆行走器组合而成。然而,这种装置的有效性是有限的,为了提高纤维产量和纯度,可能需要设计新的分离和清洗装置。
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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