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Data on physico-chemical characteristics and elemental composition of gray forest soils (Greyzemic Phaeozems) in natural-technogenic landscapes of Moscow brown coal basin

机译:莫斯科棕色煤盆地自然技术景观灰林土(Greyzemic Phaeozems)物理化学特性及元素组成的数据

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摘要

Waste rocks material and acid mine drainage (AMD) in sulfur coal mining areas of Moscow brown coal basin lead to significant transformation of landscape components (soils, surface, and groundwaters). Most of the abandoned sulfide-bearing spoil heaps have not been reclaimed and toxic products of their weathering cause the risk of long-term soil contamination. In this article, we report original data on some physico-chemical properties and elemental composition of liquid and solid soil phases, waste dumps and AMD from twо abandoned spoil heaps of the Moscow basin and adjacent territories (the Tula region, Central Russia). Soil samples were collected from each genetic horizon of soil depth profile at sites affected by waste dumps and mine subsidence, as well as at natural sites. Waste material was sampled from the different parts of the spoil heaps. Sampling of AMD was performed in technogenic reservoirs near waste dumps. In displaced liquid phases (by ethanol) from soils and waste dump material, natural superficial waters and AMD pH-value, electrical conductivity (EC), the content and composition of readily soluble salts (by high-performance liquid chromatography (HPLC)), as well as titratable acidity (H+and Al3+) and, water-soluble Fe (using UV/Vis spectrophotometry) were measured. In bulk soil samples organic carbon (Corg), exchangeable cations (Cа2+, Mg2+, H+, Al3+ in KCl-extracts) and hydrolytic acidity (in CH3COONa-extracts) were determined. The obtained data can be used to understand the behavior of сhemical elements in soil profiles polluted by coal mining; the negative impact of mine wastes on soil salinity; when identifying pollution levels of potentially hazardous elements in soils affected by coal mining and for complex remediation of spoil heaps in Moscow brown coal basin.
机译:莫斯科棕色煤盆中硫磺煤矿地区的废岩材料和酸性矿山排水(AMD)导致景观部件(土壤,表面和地下水)的显着转变。大多数废弃的硫化物含量堆积堆尚未回收,其风化的有毒产品导致长期土壤污染的风险。在本文中,我们向莫斯科盆地和邻近地区(Tula地区,俄罗斯图拉地区)的液体和固体土壤阶段,废物垃圾箱和AMD的一些物理化学性质和液体和固体土壤阶段,废物垃圾和AMD的元素组成报告原始数据。在受废物倾卸和矿井沉降的遗址以及天然遗址,从每个土壤深度剖面的每个遗传范围内收集土壤样品。从弃土堆的不同部位取样废料。 AMD的抽样是在废物垃圾上附近的技术储层中进行的。在流离失所液相(通过乙醇)从土壤和废物倾卸材料,天然浅表水和AMD pH值,导电性(EC),易溶性盐的含量和组成(通过高效液相色谱(HPLC)),除了可滴定酸度(H +和Al3 +),测量水溶性Fe(使用UV / Vis分光光度法)。在散装土壤样品中,测定可交换阳离子(CORG),可交换阳离子(CAS2 +,Mg2 +,H +,Al3 +在KCl-提取物中)和水解酸度(在CH 3 COPA-提取物中)。所获得的数据可用于了解煤矿污染土壤型材中Сhemical元素的行为;矿井废物对土壤盐度的负面影响;当鉴定受煤矿影响的土壤中潜在危险因素的污染水平以及在莫斯科棕色煤池中复杂地修复破坏堆。

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