巴什科尔托斯坦共和国(俄罗斯南乌拉尔)北部森林草原地区废弃土地的现状

IF 2 Q3 SOIL SCIENCE
R. Suleymanov, I. Yaparov, I. Saifullin, I. Vildanov, P. Shirokikh, A. Suleymanov, M. Komissarov, P. Liebelt, A. Nigmatullin, R. Khamidullin
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引用次数: 6

摘要

本文介绍了巴什科尔托斯坦共和国(南乌拉尔)北部森林草原带土壤覆盖以后农化灰色腐殖土(Regosols)为代表的后农化生态系统状态(土地轮作后18-20年)的结果。可能,不利的土壤物理和农化性质是获得有利可图的作物产量的限制因素,这是土地退出农业用途的一个原因。自从农田不再轮作以来的18至20年间,在农业生产后的土壤上形成了多样化的植被覆盖。NDVI(归一化植被指数)分析表明,50%以上的领土被平均和高植被发展(低草草甸和森林群落)覆盖。研究区内自然植被的主动更新是在地带型植被的影响下发展起来的,正处于由原始群落向低草草甸和不同年龄次生林过渡的阶段,以阔叶和轻针叶树种为主。在这一恢复阶段,后农业土壤中有机碳和基本养分含量低,并不影响植被覆盖的形成和多样性。然而,植被继续遭受长期农业利用的后果(主要是机械影响),导致植被群落的明确马赛克,植物区系组成的贫穷和多年生杂草物种的大量存在。最好对废弃土地进行养护,进一步改善土壤性质,减少水土流失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The current state of abandoned lands in the northern forest-steppe zone at the Republic of Bashkortostan (Southern Ural, Russia)
This paper presents the results of the state of postagrogenic ecosystems (18-20 years after the land was taken out of crop rotation) in the northern forest-steppe zone, Republic of Bashkortostan (South Ural) where soil cover is represented by postagrogenic gray-humus soils (Regosols). Probably, the unfavorable physical and agrochemical soil properties were a limiting factor in obtaining a profitable crop yield, and it was a reason for the withdrawal of land from agricultural use. Eighteen to twenty years since agricultural fields were taken out of crop rotation, a diverse vegetation cover has formed on postagrogenic soils. Analysis of the NDVI (Normalized Difference Vegetation Index) showed that more than 50% of the territory is covered by average and high vegetation development (low-grass meadows and forest communities). The active renewal of natural vegetation is conducted in the studied territory, which develops under the influence of zonal type vegetation and is in the transition stage from ruderal communities to low-grass meadows and different-aged secondary forests with domination of broad-leaved and light-coniferous tree species. The low content of organic carbon and basic nutrients in postagrogenic soils, at this stage of restoration, does not influence the formation and diversity of vegetation cover. However, vegetation continues to suffer the consequences of long-term agricultural use (mainly mechanical impact), resulting in a well-defined mosaic of vegetation communities, the poverty of the floristic composition and the presence of perennial weed species occurring in high abundance. It is better to maintain the land abandoned to further improve soil properties and reduce erosion.
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来源期刊
CiteScore
2.20
自引率
0.00%
发文量
13
期刊介绍: The Spanish Journal of Soil Science (SJSS) is a peer-reviewed journal with open access for the publication of Soil Science research, which is published every four months. This publication welcomes works from all parts of the world and different geographic areas. It aims to publish original, innovative, and high-quality scientific papers related to field and laboratory research on all basic and applied aspects of Soil Science. The journal is also interested in interdisciplinary studies linked to soil research, short communications presenting new findings and applications, and invited state of art reviews. The journal focuses on all the different areas of Soil Science represented by the Spanish Society of Soil Science: soil genesis, morphology and micromorphology, physics, chemistry, biology, mineralogy, biochemistry and its functions, classification, survey, and soil information systems; soil fertility and plant nutrition, hydrology and geomorphology; soil evaluation and land use planning; soil protection and conservation; soil degradation and remediation; soil quality; soil-plant relationships; soils and land use change; sustainability of ecosystems; soils and environmental quality; methods of soil analysis; pedometrics; new techniques and soil education. Other fields with growing interest include: digital soil mapping, soil nanotechnology, the modelling of biological and biochemical processes, mechanisms and processes responsible for the mobilization and immobilization of nutrients, organic matter stabilization, biogeochemical nutrient cycles, the influence of climatic change on soil processes and soil-plant relationships, carbon sequestration, and the role of soils in climatic change and ecological and environmental processes.
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