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Researches Concerning some Elements of Agroecological Monitoring in Codrilor Plateau from Republic of Moldova

机译:关于摩尔多瓦共和国科德洛尔高原农业生态监测某些要素的研究

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Several elements of agroecological monitoring have been investigated as component parts, and also subsystems of the integrated ecological monitoring, the first aiming to survey and control the agroecosystems in order to determine formation of highly effective agrocoenoses, ecologically balanced, able to harmoniously work with the agricultural environment, biotic and abiotic factors. Surveillance of the physical-mechanical indices in time and space in various ecosystems, including ecosystems without agricultural impact is an important and necessary component in controlling the overall condition of soil, in maintaining the productive capacity of lands on long term, in distinguishing changes in case of land degradation and application of regulation measures directed to the sustainable development of soils. Research of gray mollisols (greyzems, faeziom) and cambic chernozems belonging to the Central Moldavian Plateau has been complexly performed, by monitoring three groups of indicators - the diagnosis, seasonal changes (short-term) and long-term changes. Along with research of the physico-chemical properties of soil, the study of the physical-mechanical properties (plasticity, adhesion) has been realised in key polygons, included in the database monitoring network of soil quality. Were investigated soils of different textures within several agroecosystems - field crops in crop rotation, ecosystems as fruit growing, vegetables, fallow, as compared with natural ecosystems (forest), which can provide data for background monitoring. Research has shown that the clay-sandy varieties of the mollic gray soils recorded sensitive values a€?a€?passing from the lower to the higher limit of plasticity. The light varieties of soils are more affected by the processes of aridity degradation as compared to the clay loam varieties. Anthropogenic influence by tillage significantly alters the plasticity and adherence. In the mollic gray soil of the fruit growing ecosystem, the physical-mechanical indicators have worsened as a result of cleaning works and of surface work necessary for plantation maintenance. Soil adherence can be used as diagnostic parameter in assessing the level of human impact within agroecosystems. Highlighting the value of optimal humidity for soil tillage based on plasticity and adherence can provide methods for mitigation of land degradation, and measures for work, and subsequently - energy saving
机译:农业生态监测的几个要素已作为组成部分进行了研究,也是综合生态监测的子系统,第一个目标是调查和控制农业生态系统,以确定生态平衡良好,能够与农业和谐合作的高效农业生态的形成。环境,生物和非生物因素。监测各种生态系统(包括没有农业影响的生态系统)的时空物理机械指标是控制土壤总体状况,长期保持土地生产能力,区分情况变化的重要和必要组成部分。土地退化问题和针对土壤可持续发展的调控措施的应用。通过监测三组指标-诊断,季节性变化(短期)和长期变化,对属于摩尔多瓦高原中部的灰质毛囊(灰质,faeziom)和长生黑钙质进行了复杂的研究。随着对土壤理化性质的研究,对关键多边形的物理-机械性质(可塑性,附着力)的研究已经实现,包括在土壤质量数据库监测网络中。与自然生态系统(森林)相比,研究了几种农业生态系统内不同质地的土壤-轮作的田间作物,水果种植的生态系统,蔬菜,休耕地,可以为背景监测提供数据。研究表明,软体动物灰色土壤的粘土沙质品种记录的敏感值从可塑性的下限到上限都变高了。与粘土壤土品种相比,土壤轻质品种受干旱降解过程的影响更大。耕作的人为影响会显着改变可塑性和附着力。在果树生长生态系统的灰质灰土中,由于进行了清洁工作和维护人工林所需的表面工作,物理机械指标恶化了。土壤依附性可以用作评估农业生态系统中人类影响程度的诊断参数。通过可塑性和附着力突出土壤耕作的最佳湿度值可以提供减轻土地退化的方法,工作措施,以及随后的节能措施

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