Effect of Soil Conditioning on Soil Penetration Resistance and Traction Power Demand of Ploughing

Géza Tuba, G. Kovács, Lúcia Sinka, P. Nagy, Arzu Rivera-García, Zuzana Bajusová, P. Findura, J. Zsembeli
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引用次数: 2

Abstract

Abstract Soil compaction and degradation due to improper tillage are problems involving significant natural and economic damages. On compacted soils, suitable cultivation can be implemented only with higher energy and traction force input. In our study, the effect of a soil conditioner (Neosol) was examined on the penetration resistance of the soil and the traction power demand for ploughing in the experiment set up in the East-Slovak Plain in 2017 ‒ 2018 to justify several preliminary results showing that long-term soil conditioning results in enhanced root system, improved soil structure, cultivability, water- and salt regime. We found a positive effect of Neosol application with both investigated parameters and its long-term effect was also justified. The penetration resistance values of the soil of the untreated plot were 17 ‒ 23% higher, while the traction power demand values were 9 ‒ 32% lower in comparison with the Neosol treated plot in the first and the second year of the study, respectively. We assume the cumulative positive effect of soil conditioning on the physical soil properties in the study area, therefore the long-term application of Neosol is recommended for farms having similar soil properties.
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土壤调节对土壤穿透阻力和犁耕牵引功率需求的影响
由于不当耕作导致的土壤压实和退化是造成重大自然和经济损失的问题。在压实的土壤上,只有更高的能量和牵引力输入才能进行适宜的耕作。在我们的研究中,在2017 - 2018年在斯洛伐克东部平原进行的试验中,研究了土壤调理剂(Neosol)对土壤渗透阻力和犁耕牵引力需求的影响,以证明几个初步结果的合理性,这些结果表明,长期土壤调理剂可以增强根系,改善土壤结构,可耕性,改善水盐状况。我们发现Neosol应用的积极效果与所调查的参数和其长期效果也是合理的。试验第一年和第二年,未经处理的土壤穿透阻力值分别比处理后的土壤高17 ~ 23%,牵引力需求值分别比处理后的土壤低9 ~ 32%。我们假设土壤调节对研究区域土壤物理性质的累积积极影响,因此建议具有类似土壤性质的农场长期使用Neosol。
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