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Chemical composition and minerals in pyrite ash of an abandoned sulphuric acid production plant

机译:废弃硫酸生产厂黄铁矿灰的化学成分和矿物

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摘要

The extraction of sulphur produces a hematite-rich waste, known as roasted pyrite ash, which contains significant amounts of environmentally sensitive elements in variable concentrations and modes of occurrence. Whilst the mineralogy of roasted pyrite ash associated with iron or copper mining has been studied, as this is the main source of sulphur worldwide, the mineralogy, and more importantly, the characterization of submicron, ultrafine and nanoparticles, in coal-derived roasted pyrite ash remain to be resolved. In this work we provide essential data on the chemical composition and nanomineralogical assemblage of roasted pyrite ash. XRD, HR-TEM and FE-SEM were used to identify a large variety of minerals of anthropogenic origin. These phases result from highly complex chemical reactions occurring during the processing of coal pyrite of southern Brazil for sulphur extraction and further manufacture of sulphuric acid. Iron-rich submicron, ultrafine and nanoparticles within the ash may contain high proportions of toxic elements such as As, Se, U, among others. A number of elements, such as As, Cr, Cu, Co, La, Mn, Ni, Pb, Sb, Se, Sr, Ti, Zn, and Zr, were found to be present in individual nanoparticles and submicron, ultrafine and nanominerals (e.g. oxides, sulphates, clays) in concentrations of up to 5%. The study of nanominerals in roasted pyrite ash from coal rejects is important to develop an understanding on the nature of this by-product, and to assess the interaction between emitted nanominerals, ultra-fine particles, and atmospheric gases, rain or body fluids, and thus to evaluate the environmental and health impacts of pyrite ash materials.udud
机译:硫的提取会产生富含赤铁矿的废物,称为烤黄铁矿灰,其中含有大量浓度和发生方式不同的环境敏感元素。虽然已经研究了与铁或铜开采相关的烤黄铁矿灰的矿物学,但由于这是全世界硫的主要来源,所以矿物学,更重要的是,煤衍生的黄铁矿灰的亚微米,超细和纳米颗粒的表征有待解决。在这项工作中,我们提供了有关烤黄铁矿灰的化学组成和纳米矿物学组成的重要数据。 XRD,HR-TEM和FE-SEM用于鉴定多种人为来源的矿物。这些阶段是由于在巴西南部的硫铁矿用于硫磺提取和进一步制造硫酸的过程中发生的高度复杂的化学反应而产生的。灰分中富含铁的亚微米,超细和纳米颗粒可能包含高比例的有毒元素,例如As,Se,U等。发现各种元素,例如砷,铬,铜,钴,镧,锰,镍,铅,锑,硒,锶,钛,锌和锆存在于单个纳米颗粒和亚微米,超细和纳米矿物中(例如氧化物,硫酸盐,粘土)的浓度最高为5%。研究煤渣中的焙烧黄铁矿灰中的纳米矿物对于了解这种副产物的性质,评估排放的纳米矿物,超细颗粒与大气气体,雨水或体液之间的相互作用非常重要,并且因此可以评估黄铁矿灰材料对环境和健康的影响。 ud ud

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