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首页> 外文期刊>The Science of the Total Environment >The properties of the nano-minerals and hazardous elements: Potential environmental impacts of Brazilian coal waste fire
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The properties of the nano-minerals and hazardous elements: Potential environmental impacts of Brazilian coal waste fire

机译:纳米矿物质和有害元素的特性:巴西煤炭垃圾大火对环境的潜在影响

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摘要

Brazilian coal area (South Brazil) impacted the environment by means of a large number of coal waste piles emplaced over the old mine sites and the adjacent areas of the Criciuma, Urussanga, and Sideropolis cities. The area studied here was abandoned and after almost 30 years (smokeless visual) some companies use the actual minerals derived from burning coal cleaning rejects (BCCRs) complied in the mentioned area for industry tiles or refractory bricks. Mineralogical and geochemical similarities between the BCCRs and non-anthropogenic geological environments are outlined here. Although no visible flames were observed, this study revealed that auto-combustion existed in the studied area for many years. The presence of amorphous phases, mullite, hematite and other Fe-minerals formed by high temperature was found. There is also pyrite, Fe-sulphates (eg. jarosite) and un-burnt coal present, which are useful for comparison purposes. Bad disposal of coal-dump wastes represents significant environmental concerns due to their potential influence on atmosphere, river sediments, soils and as well as on the surface and groundwater in the surroundings of these areas. The present study using advanced analytical techniques were performed to provide an improved understanding of the complex processes related with sulphide-rich coal waste oxidation, spontaneous combustion and mineral formation. It is reporting huge numbers of rare minerals with alunite, montmorillonite, szomolnokite, halotrichite, coquimbite and copiapite at the BCCRs. The data showed the presence of abundant amorphous Si-Al-Fe-Ti as (oxy-)hydroxides and Fe-hydro/ oxides with goethite and hematite with various degrees of crystallinity, containing hazardous elements, such as Cu, Cr, Hf, Hg, Mo, Ni, Se, Pb, Th, U, Zr, and others. By Principal Component Analysis (PCA), the mineralogical composition was related with the range of elemental concentration of each sample. Most of the nano-minerals and ultra-fine particles found in the burned coal-dump wastes are the same as those commonly associated with coal cleaning rejects, in which oxidation of sulphides plays an important role to environment and human health.
机译:巴西的煤区(巴西南部)通过在旧矿场以及Criciuma,Urussanga和Sideropolis城市的邻近区域上放置大量的煤waste石,对环境产生了影响。此处研究的区域已被废弃,近30年后(无烟视觉),一些公司将上述区域中燃烧的煤炭清洁废料(BCCR)产生的实际矿物用于工业砖或耐火砖。此处概述了BCCR与非人为地质环境之间的矿物学和地球化学相似性。尽管未观察到可见的火焰,但这项研究表明,研究区域已存在多年自燃现象。发现存在由高温形成的非晶相,莫来石,赤铁矿和其他铁矿物。还存在黄铁矿,硫酸铁(例如黄钾铁矾)和未燃煤,它们可用于比较目的。垃圾场处置不善,对环境,河流沉积物,土壤以及这些地区周围的地表水和地下水都有潜在的影响,这对环境造成了重大影响。本研究使用先进的分析技术进行了研究,以提供对与富含硫化物的煤渣氧化,自燃和矿物形成相关的复杂过程的更好理解。据报道,BCCRs上有大量稀有矿物,包括亚矾石,蒙脱石,szomolnokite,钠长石,锂云母和锂辉石。数据表明存在大量的非晶态Si-Al-Fe-Ti(氢氧化物)和Fe-hydro /氧化物以及针铁矿和赤铁矿,其结晶度各不相同,并含有诸如Cu,Cr,Hf,Hg等有害元素,Mo,Ni,Se,Pb,Th,U,Zr等。通过主成分分析(PCA),矿物成分与每个样品的元素浓度范围有关。燃煤堆放废物中发现的大多数纳米矿物和超细颗粒与通常与煤炭清洁废弃物相关的纳米矿物和超细颗粒相同,其中硫化物的氧化对环境和人类健康具有重要作用。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第15期|892-900|共9页
  • 作者单位

    Laboratory of Environmental Researches and Nanotechnology Development, Centra Universitario La Salle, Victor Barreto, 2288 Centra, 92010-000 Canoas, RS, Brazil;

    Laboratory of Environmental Researches and Nanotechnology Development, Centra Universitario La Salle, Victor Barreto, 2288 Centra, 92010-000 Canoas, RS, Brazil;

    University of the Basque Country (UPV/EHU), Faculty of Science and Technology, Department of Analytical Chemistry, P.O. Box 644,48080 Bilbao, Spain;

    University of the Basque Country (UPV/EHU), Faculty of Science and Technology, Department of Analytical Chemistry, P.O. Box 644,48080 Bilbao, Spain;

    Laboratory of Environmental Researches and Nanotechnology Development, Centra Universitario La Salle, Victor Barreto, 2288 Centra, 92010-000 Canoas, RS, Brazil;

    Laboratory of Environmental Researches and Nanotechnology Development, Centra Universitario La Salle, Victor Barreto, 2288 Centra, 92010-000 Canoas, RS, Brazil;

    Laboratory of Environmental Researches and Nanotechnology Development, Centra Universitario La Salle, Victor Barreto, 2288 Centra, 92010-000 Canoas, RS, Brazil;

    Laboratory of Environmental Researches and Nanotechnology Development, Centra Universitario La Salle, Victor Barreto, 2288 Centra, 92010-000 Canoas, RS, Brazil;

    University of the Basque Country (UPV/EHU), Faculty of Science and Technology, Department of Analytical Chemistry, P.O. Box 644,48080 Bilbao, Spain;

    Laboratory of Environmental Researches and Nanotechnology Development, Centra Universitario La Salle, Victor Barreto, 2288 Centra, 92010-000 Canoas, RS, Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Coal fires; Nano-minerals; Human exposure; Burning coal cleaning rejects (BCCRs);

    机译:燃煤大火;纳米矿物;人体暴露;燃煤清洁废料(BCCR);

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