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Energy Use Efficiency of Organic and Conventional Cropping Systems of Sugarcane

机译:甘蔗有机和常规种植系统的能量利用效率

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摘要

Analysis of energy use efficiency provides an assessment of non-renewable energy consumption; it is a useful indicator of environmental and long-term sustainability when comparing cropping systems. This study aimed to estimate the energy use efficiency of organic and conventional cropping systems of sugarcane for sugar production in central Cuba. Estimation of the energy use efficiency included analysis of four cropping systems. The energy input in the field until harvest and transport to the sugar mill was the limit of this analysis. The results showed that organic cropping systems were less efficient in energy use because of the greater number of field operations, mainly for weed control by manual and mechanical cultivation. Organic cropping systems also had lower yield compared with conventional systems due to their use of low doses of organic products, instead of agrochemical fertilizers, for plant nutrition. In all cropping systems evaluated, sugarcane used for seed was the largest part of theenergy input due to the consumption of 12 t ha'' of seed, representing an average of 89% of the total energy input for the sugarcane cropping systems. The second largest part of the energy input was the fuel consumed during mechanized operations. Irrigation was the third largest part of the energy input for organic cropping systems and the second largest part of the energy input for conventional cropping systems.
机译:能源利用效率分析提供了对不可再生能源消耗的评估;在比较种植系统时,它是一种有用的环境和长期可持续性指标。本研究旨在估算古巴中部糖生产甘蔗的有机和常规种植系统的能量利用效率。估计能源利用效率包括四种种植系统的分析。该领域的能量输入直到收获和运输到糖厂是该分析的极限。结果表明,由于现场运营数量较多,有机种植系统在能量使用中较低,主要是通过手动和机械培养的杂草控制。由于它们使用低剂量的有机产品,而不是农用化学肥,有机种植系统也具有较低的产量,而不是农业化肥。在评估的所有种植系统中,由于种子的2吨HA''的消耗,用于种子的甘蔗是TENENERGY输入的最大部分,其平均值为甘蔗种植系统的总能量输入的89%。能量输入的第二大部分是机械化操作期间消耗的燃料。灌溉是有机种植系统能源输入的第三大部分,以及传统种植系统的能源输入的第二大部分。

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