Impact of tillage systems on maize emergence

István Sojnóczki, János Nagy, István Kecskés
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Abstract

In Europe, there has been a significant change in the way tillage is approached in recent years. This change is due to a growing awareness among farmers, politicians and society as a whole that soil is not a renewable resource in itself. From an agricultural point of view, the greatest impact on soil condition can be achieved through the use of the applied tillage systems.  My research takes this approach as a basis when examining the different tillage systems and their impact on the environment. In this context, conventional and a variety of no-tillage systems are examined in this paper. As a next step, it is examined how the environmental conditions created by the different tillage systems influence the emergence of maize hybrids. The analyses are carried out in a multi-factorial, long-term tillage field experiment. The same batch of the same hybrid seed was sown in several crop years, and the effects of environmental conditions on the emergence process were examined. Environmental effects and emergence-related uptake were measured in the examined plots. Measurements of environmental effects included air temperature, precipitation, soil temperature measured at seeding depth, as well as % cover of stem residue on the surface in the treated plots. The first emergence time measurements of the sown crop in the plots of each treatment were compared and relationships between these factors were investigated.
耕作制度对玉米出苗的影响
在欧洲,近年来耕作方式发生了重大变化。这种变化是由于农民、政治家和整个社会越来越意识到土壤本身并不是一种可再生资源。从农业的角度来看,对土壤条件的最大影响可以通过使用耕作制度来实现。我的研究以这种方法为基础,考察了不同的耕作制度及其对环境的影响。在此背景下,本文对传统免耕制度和各种免耕制度进行了研究。下一步,研究了不同耕作制度所产生的环境条件如何影响玉米杂交种的出现。分析是在一个多因素、长期耕作的田间试验中进行的。将同一批杂交种子分几个作物年播种,考察了环境条件对其出苗过程的影响。在检查的地块中测量了环境影响和与突发性相关的吸收。环境效应的测量包括气温、降水、播种深度测量的土壤温度,以及处理地块表面茎残盖度%。比较了各处理地块上播种作物的首次出苗时间,并探讨了这些因素之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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