Ecosystem approach to the assessment of land reclamation on the example of Zaporizhzhskiy manganese ore quarry

I. Loza, O. Pakhomov
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Abstract

Mining industry is the one of the powerful factors leading to the degradation of native ecosystems. Disturbed ecosystems developed instead the native may be remediated using certain reclamation techniques. The purpose of this work was assessment of the remediation quality within Ordzhonikidze Ore Mining and Processing Integrated Plant on the possibility of their economic use and suitability for the existence of soil biota, as well as providing recommendations for further rational economic use. Technical remediation of the surveyed area included such stages as removal of topsoil with gross method, followed by its storage in piles; reformation and levelling of overburden above-ore dump disposed in the exhaust space of career by gross way; keeping of levelled rocks up to 3 years with the purpose of their subsidence; surface repair after subsidence; application of humic layer; ploughing of reclaimed lands. Assessment of soil quality was carried out by comparing a quality score of reclaimed soils with a quality score of zonal soil. Data collection and processing were carried out on values of humus layer thickness; humus content in filling top layer; content of physical clay in topsoil and subsoil; granulometric composition of one-meter thick fill layer; topsoil and subsoil salinity; composition and properties of underlying rocks. As a result of mining operations, topsoil of remediated soil is depleted in chemical elements necessary for plant growth; as a result, the soil becomes more calcareous, and contains humus 1,5–2 times less than that in topsoil of undisturbed soil. Topsoil thickness is on average 58 cm. Humus content in the filled layer on average is 2.2%. Mechanical composition of the arable layer is middle loamy. The soil is compacted below the plow pan. Mechanical composition of the underlying rock is fine-textured. Salinization with water-soluble salts above the toxicity threshold in the arable layer of the studied soils was not found. Before agricultural use of reclaimed lands, it is essential to repair it with the techniques of biological reclamation. This is achieved through cultivation of salt-resistant perennial grasses for 3–5 years.
土地复垦评价的生态系统方法——以扎波罗热日斯基锰矿场为例
采矿业是导致当地生态系统退化的重要因素之一。受干扰的生态系统的发展,而不是本地可以补救使用某些开垦技术。本研究的目的是评价鄂尔多斯基尔沁矿石综合选矿厂的修复质量,评价其经济利用的可能性和土壤生物群存在的适宜性,并提出进一步合理经济利用的建议。调查地区的技术补救包括以下阶段:用粗法去除表土,然后将其堆放在桩中;粗放式排土场覆岩排土场的改造与整平将平整的岩石保留长达3年,以使其沉降;下沉后的地表修复;腐殖质层的应用;开垦土地的耕作。将复垦土壤质量分值与地带性土壤质量分值进行比较,对土壤质量进行评价。对腐殖质层厚度值进行数据采集和处理;灌浆表层腐殖质含量;表层土和底土物理性粘土含量;1米厚充填层的粒度组成;表土和底土盐度;下伏岩石的组成和性质。由于采矿作业,修复土壤的表层土壤中植物生长所必需的化学元素已经耗尽;结果,土壤钙化程度增加,腐殖质含量比未受扰动土壤的表土少1.5 - 2倍。表土厚度平均为58厘米。填充层中腐殖质含量平均为2.2%。可耕地层的机械组成为中壤土。犁盘下面的土壤被压实了。下伏岩石的机械成分是精细的。在研究土壤的可耕层中未发现水溶性盐超过毒性阈值的盐渍化。复垦土地在农业利用前,必须采用生物复垦技术对其进行修复。这是通过种植3-5年的耐盐多年生草来实现的。
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