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A Novel Approach to Minimize Energy Requirements and Maximize Biomass Utilization of the Sugarcane Harvesting System in Sri Lanka

机译:一种最大限度地减少能量需求和最大化斯里兰卡甘蔗收集系统的生物量利用的新方法

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摘要

Sugarcane harvesting requires a significant amount of energy and time to manage dry leaves after the harvesting process. Therefore, the objective of this study was to minimize the energy requirement to process the cane and dry leaves’ harvesting (CDLH) for sugarcane while, at the same time, maximizing sugar production from cane and energy from dry leaves in Sri Lanka. The CDLH was conceptualized using a novel approach to optimize sugarcane harvesting to maximize biomass supply for energy production while reducing supply chain sugar-loss. The CDLH was investigated for manual harvesting capacity, energy consumption, sugar loss, and biomass energy potential. It was observed that CDLH consumed higher energy compared to the present practices of harvesting. However, the energy used for fieldwork was reduced because of the shifting of cane chopping and cleaning from the field to the factory. Low bulk density of the harvested cane of the CDLH system had a higher energy requirement in transportation. Comparatively, CDLH showed higher biomass energy potential and less sugar loss. High energy potential increases the energy potential to consumption ratio compared to the existing method. Therefore, the theoretical evaluation showed that the CDLH system can produce more than 20 kg of sugar and 879 MJ of electricity when processing 1 t of sugarcane.
机译:甘蔗收获需要大量的能量和时间来在收获过程后管理干燥的叶子。因此,本研究的目的是最大限度地减少加工甘蔗的甘蔗和干叶“收获(CDLH)的能量要求,同时,在斯里兰卡的干燥叶中最大化蔗化的糖生产。 CDLH采用新方法概念化,以优化甘蔗收获,以最大限度地提高能源生产的生物量供应,同时减少供应链糖丧失。研究了CDLH以进行手动收获容量,能量消耗,糖损和生物质能源潜力。观察到与目前的收获实践相比,CDLH消耗了更高的能量。然而,由于甘蔗斩波和从场清洁到工厂的情况,因此减少了用于野外工业的能量。 CDLH系统的收获甘蔗的低堆积密度在运输中具有更高的能量要求。相对轻地,CDLH显示出更高的生物质能量潜力和较少的糖损失。与现有方法相比,高能量电位增加了消费比率的能量电位。因此,理论评价表明,当加工1℃的甘蔗时,CDLH系统可以生产超过20千克的糖和879 MJ电力。

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