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首页> 外文期刊>Italian Journal of Agronomy >Knowledge, conservation and sustainable use of soil: physic and morphological aspects
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Knowledge, conservation and sustainable use of soil: physic and morphological aspects

机译:土壤的知识,保护和可持续利用:物理和形态方面

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The main aspects of environmental degradation can be ascribed to soil (erosion, soil compaction, soil crusting, deterioration of soil structure, flooding, losses of organic matter, salinisation, onsite and offsite damages, etc.) following the impact of human activities. Since agricultural conventional production systems have resulted in excessive erosion and soil degradation, there is need to control and fight such degradation. Scientific results have clearly showed that the agricultural management systems can play an important role in preventing soil degradation provide that appropriate management practices are adopted. Long-term field experiments in different types of soils have shown that alternative tillage systems, like minimum tillage, ripper subsoiling, etc., improve the soil structural quality. The continuous conventional tillage causes a decrease of soil organic matter content that is associated to a decrease of aggregate stability, leading, as a consequence, to the formation of surface crusts, with an increase of runoff and erosion risks. Other aspects of very dangerous soil degradation (erosion) in the hilly environments are represented by land levelling and scraping. After levelling, slopes being prepared for plantation (in particularly vineyard) are almost always characterised by the presence of large amounts of incoherent earth materials accumulated with scraper. In this vulnerable condition, a few summer storms can easily cause soil losses exceeding 500 Mg ha-1y-1. Moreover, the land levelling and the following soil loss causes drastic alteration of the landscape and loss of the cultural value of soil. Subsoil compaction is strongly under evaluated, even though the presence of a ploughpan at the lower limit of cultivation is largely widespread in the alluvial soils of the plains cultivated by monoculture and it is responsible of the frequent flooding of such plains in occasion of heavy rains concentrated in a short time (rainstorm), because the presence of this ploughpan strongly reduced drainage. Alternative tillage practices, like ripper subsoiling, are able to avoiding the formation of this compact layer. The soil conservation can be realised through a correct soil management and, therefore, it is essential to know this resource and to have pedological data bases of appropriate detail.
机译:在人类活动的影响下,环境退化的主要方面可归因于土壤(侵蚀,土壤压实,土壤结皮,土壤结构恶化,洪水,有机物流失,盐渍化,现场和非现场破坏等)。由于农业常规生产系统导致过度的侵蚀和土壤退化,因此需要控制和应对这种退化。科学结果清楚地表明,只要采取适当的管理措施,农业管理体系就可以在防止土壤退化中发挥重要作用。在不同类型土壤上的长期田间试验表明,替代耕作系统(如最小耕作,松土深松等)可提高土壤结构质量。传统的连续耕作会导致土壤有机质含量下降,这会降低集料的稳定性,从而导致地表结皮的形成,并增加径流和侵蚀的风险。在丘陵环境中非常危险的土壤退化(侵蚀)的其他方面以土地平整和刮土为代表。整平后,准备种植的斜坡(尤其是葡萄园)几乎总是以刮板堆积大量不连贯的泥土为特征。在这种脆弱的条件下,夏季的几场风暴很容易造成土壤流失超过500 Mg ha-1y-1。而且,土地平整和随后的土壤流失引起景观的急剧变化和土壤文化价值的丧失。即使在单一栽培条件下的平原冲积土壤中广泛存在下耕地,但下耕地的压实程度仍受到强烈评估,即使在暴雨集中的情况下,也经常造成平原泛滥在短时间内(暴雨),因为这种犁ough的存在大大减少了排水。诸如松土机深松等替代耕作方法能够避免形成这种紧密层。可以通过正确的土壤管理来实现土壤保护,因此,必须了解这种资源并拥有适当详细的儿童学数据库。

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