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Soil disturbance index as an indicator of seed drill efficiency in no-tillage agrosystems

机译:土壤干扰指数作为免耕农业系统中条播机效率的指标

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摘要

In no-tillage agroecosystems, furrow openers prepare the seed line to place the seeds and fertilizers, and this event represents a unique opportunity to disturb the soil in this kind of crop system. Shanks are used to promote an appropriate soil physical condition, and, in case of soil compaction problems, shanks are used more frequently and at deeper layers of the soil profile. However, this deeper use causes greater draught and does not appropriately disturb the soil because narrow shanks have limited depth performance ("critical depth"). Here, we tested the operation of shanks in Oxisol and Alfisol. We assessed the shank performance 6-18 cm of depth, and we evaluated several soil disturbance parameters, such as area of groove, effective depth, and volume, as well as the demand of power force. Based on this evaluation, we calculated the specific power demand and the disturbance index, which is obtained from the ratio of disturbed area and maximum depth. With increasing depth of operation, the specific power demand increased in both soil types, while the disturbance index remaining approximately constant in the Oxisol and decreasing in the Alfisol. In the latter soil type, the shanks operated at more than 12 cm deep, and the lower disturbance index indicated a loss of efficiency in the soil disturbance. Therefore, the disturbance index is an efficient indicator of both the performance of seed drill shanks and the soil disturbance in no-till systems
机译:在免耕农业生态系统中,开沟器会准备好种系以放置种子和肥料,而此事件代表了这种作物系统中扰乱土壤的独特机会。小腿用于促进适当的土壤物理状况,并且在发生土壤压实问题的情况下,小腿通常在土壤剖面的更深层使用。但是,这种较深的使用会导致更大的吃水深度,并且由于窄柄的深度性能(“临界深度”)有限,因此不会适当地干扰土壤。在这里,我们测试了Oxisol和Alfisol中小腿的操作。我们评估了6-18 cm深度的小腿性能,并评估了几个土壤扰动参数,例如沟槽的面积,有效深度和体积以及对动力的需求。基于此评估,我们计算了比功率需求和扰动指数,这是从受扰面积与最大深度之比得出的。随着作业深度的增加,两种土壤类型的比功率需求均增加,而扰动指数在Oxisol中大致保持恒定,而在Alfisol中则下降。在后一种土壤类型中,小腿在超过12 cm的深度下工作,较低的干扰指数表明土壤干扰效率下降。因此,扰动指数是免耕系统中条播机的性能和土壤扰动的有效指标。

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