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Energy analysis of Jatropha curcas under irrigation and rainfed at the Southeast Brazilian humid subtropical

机译:巴西东南部亚热带湿润地区灌溉和雨养麻风树的能量分析

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Jatropha ( Jatropha curcas L.) is an oil seed species, adaptive to different climate and soil conditions. It is known due to its high-oil-content seed, being an option for biodiesel production and presenting competitive yields under irrigated condition. This study was developed in an experimental area located in a humid subtropical region of Brazil and the objective was to evaluate Jatropha ’s energy balance under irrigation and rainfed condition during the first four years of its cycle. First, the material flows were determined, which supported the calculation of, energy input and output flows were obtained. These were used to determine the energy indices: energy balance ( EB ), and energy return on investment ( EROI ) for both conditions. Fertilizers had the highest contribution on energy input (42.58 GJ ha -1 , 37.7% in irrigated area and 45.9% in rainfed area) followed by fuel consumption (32.96 GJ ha -1 , 29.8% in irrigated area and 35.5% in rainfed area). Total energy input for the first four years in the irrigated area was 114.84 GJ ha -1 (which 19.22% was due to the irrigation) and 92.8 GJ ha -1 in the rainfed area. The output energy flows were 73.78 and 47.88 GJ ha -1 for irrigated and rainfed areas, respectively. In this study, a negative value for EB and unviable EROI ( 1) were obtained. However, EROI showed evolution when evaluated year-by-year, reaching values above 1 in the 4 th year for both systems, as expected from perennial crops. Considering just the period evaluated, this crop was not sustainable for energy production, but this is a long lifespan crop and for the following years it is expected yield levels like the last one and values positive of energy balance.
机译:麻风树(Jatropha curcas L.)是一种油料种子,可以适应不同的气候和土壤条件。众所周知,由于其高含油种子​​,它是生物柴油生产的一种选择,并且在灌溉条件下具有竞争力的产量。这项研究是在巴西一个潮湿的亚热带地区的一个实验区域进行的,目的是评估麻疯树在周期的前四年中在灌溉和雨水条件下的能量平衡。首先,确定物料流,这支持计算,获得了能量输入和输出流。这些用于确定能源指数:两种情况下的能源平衡(EB)和能源投资回报率(EROI)。肥料对能量输入的贡献最大(42.58 GJ ha -1,在灌溉地区为37.7%,在雨养地区为45.9%),其次是燃料消耗(32.96 GJ ha -1,在灌溉地区为29.8%,在雨育地区为35.5%)。 。灌溉区域前四年的总能源输入为114.84 GJ ha -1(其中19.22%是由于灌溉造成的),而在雨养地区为92.8 GJ ha -1。灌溉区和雨养区的输出能量流分别为73.78 GJ ha -1和47.88 GJ ha -1。在这项研究中,EB值为负,EROI值不可行(<1)。但是,按年评估时,EROI表现出了演变,这两个系统在第四年都达到了高于1的值,这与多年生作物的预期一样。仅考虑所评估的时期,该作物就能源生产而言不是可持续的,但这是一种长寿命的作物,在接下来的几年中,其预期的收成水平与上年一样,并且能量平衡为正值。

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