Natural forming of vegetation cover on black coal mining dumps in the environs of Kopeysk (Chelyabinsk Oblast)

N. N. Nazarenko, Xenia A. Dolgonos
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Abstract

The article considers the current forming of vegetation and biotopes as a result of natural overgrowth of territories disturbed during black coal mining in the environs of Kopeysk town (Chelyabinsk Oblast). The 88 species of vascular plants were detected on the waste banks and spaces between them, the 7 species of vascular plants are woody species. It has been established that in the process of natural overgrowth of dumps, forest and meadow plant communities are actively formed from pioneer ruderal and halophytic communities. By methods of multidimensional statistics, 15 phytocoenochores have been determined and the discriminate of which is d identified by the tree species, which are forming the forest canopy. The identified plant communities are characterized by specific regimes of the fundamental abiotic factors of biotopes and make up a series of biotopic and coenotic substitution, forming a sylvant (forest) and pratant (meadow) successional series. It has been shown that in the process of natural overgrowth, the formation of forest (primarily birch) and meadow coenoses proceeds in parallel, and the invasive species Acer negundo L. plays an active role in sylvatization. It has been established that the leading hand in the formation of the coenotic structure of communities belongs to soil mineralization, acidity, aeration and variability of soil moisture. The obtained data on biotopes and successional series can be used in the development of the biological stage of landfill revegetation after coal mining impacts with the formation of woody or grass plant communities.
科佩斯克市(车里雅宾斯克州)周边黑色采煤场植被的自然形成
文章研究了科佩斯克市(车里雅宾斯克州)周边地区在黑色煤矿开采过程中受到干扰的区域自然过度生长而形成的植被和生物群落现状。在废料堆和废料堆之间的空隙中发现了 88 种维管束植物,其中 7 种为木本植物。研究证实,在垃圾堆自然过度生长的过程中,森林和草甸植物群落是由先驱原生群落和盐生群落积极形成的。通过多维统计的方法,确定了 15 个植物群落,并根据形成林冠的树种对其进行了鉴别。已确定的植物群落以生物群落基本非生物因素的特定制度为特征,并构成一系列生物群落和同生代替代,形成了森林和草甸的演替系列。研究表明,在自然过度生长的过程中,森林(主要是桦树)和草甸同生区的形成是同步进行的,入侵物种 Acer negundo L. 在森林化过程中发挥了积极作用。研究表明,群落同生结构的形成主要取决于土壤矿化度、酸度、通气性和土壤水分的变化。所获得的生物群落和演替系列数据可用于开发煤矿开采影响后垃圾填埋场重新植被的生物阶段,形成木本或草本植物群落。
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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