Genesis, Uses and Environment Implications of Iron Oxides and Ores

D. Egirani, Mohd Talib Latif, Nanfe. R. Poyi, Napoleon Wessey, S. Acharjee
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引用次数: 2

Abstract

Iron oxides are chemical complexes which occur naturally, comprising iron and oxygen. Here, together, 16 types of iron oxides and oxyhydroxides have been identified. These two components of oxides are widely spread naturally. They are vital to humans and useful in most geological and biological activities. In addition, they are useful as pigments and catalyst in industries and hemoglobin in blood circulation. The interplay and conversion of these components from one form to another are essentially controlled by bacterial species. These contain 70 and 72% iron, respectively. Furthermore, iron ores are classified in terms of occurrence. Banded iron formation (BIF) comprises 15% iron, com prising minerals of iron that are bedded besides silica. Beneficiation processes of iron ore generate dust in the atmosphere, acid mine drainage in the ecosystem and metallic iron for steelmaking. Beneficiation process requires dissolution of minerals surrounding the ore and the release of metals and cement matrix into water courses. These generates acid leading to acid mine drainage. Therefore, there is a need for impact assessment of the environment in the planned beneficiation cycle. Sustainable beneficiation must be done to reduce impact on the natural, social or economic environment.
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氧化铁及其矿石的成因、用途及环境意义
氧化铁是由铁和氧组成的天然化合物。在这里,总共鉴定出16种氧化铁和氢氧化物。这两种氧化物成分在自然界中广泛存在。它们对人类至关重要,在大多数地质和生物活动中都很有用。此外,它们还可用作工业上的色素和催化剂,以及血液循环中的血红蛋白。这些成分从一种形式到另一种形式的相互作用和转化基本上是由细菌物种控制的。它们分别含有70%和72%的铁。此外,铁矿石是按产状分类的。带状铁地层(BIF)含有15%的铁,除了二氧化硅外,还含有层状的铁矿物。铁矿选矿过程在大气中产生粉尘,在生态系统中产生酸性矿山废水,在炼钢过程中产生金属铁。选矿过程需要溶解矿石周围的矿物,并将金属和水泥基质释放到水道中。这些产生的酸导致酸性矿井水。因此,有必要对规划的选矿周期进行环境影响评价。必须进行可持续选矿,以减少对自然、社会或经济环境的影响。
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