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首页> 外文期刊>Journal of Hydroinformatics >An object-oriented particle tracking code for pyrite oxidation and pollutant transport in mine spoil heaps
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An object-oriented particle tracking code for pyrite oxidation and pollutant transport in mine spoil heaps

机译:面向对象的粒子跟踪代码,用于矿渣堆中黄铁矿的氧化和污染物的运输

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摘要

A physically based contaminant transport model, POTOMAC (Pyrite Oxidation products Transport: Object-oriented Model for Abandoned Colliery sites), has been developed to simulate the pyrite oxidation process in mine spoil heaps and the subsequent transport of the reaction products. This is believed to represent the first particle tracking model created using object-oriented technology and has proved capable of simulating the large time scales (on the order of centuries) required for this application. The model conceptualises a spoil heap as a series of 'columns', each representing a portion of the unsaturated zone, where active weathering and precipitation of secondary minerals takes place. The columns are then connected to a saturated zone, beneath the water table, where the contaminants are transported to the heap discharge. A form of particle tracking, the 'random walk method', is used to transport both the oxidant, oxygen, and the products, ferrous iron and sulfate. The subsequent oxidation of ferrous iron and precipitation of ferric oxyhydroxide is incorporated to provide an iron 'sink', where iron is effectively removed from the transport process. The application of POTOMAC to a case study, the Morrison Busty spoil heap in County Durham, UK, has produced encouraging results.
机译:已经开发了基于物理的污染物运输模型POTOMAC(黄铁矿氧化产物运输:废弃煤矿场的面向对象模型),以模拟矿渣堆中黄铁矿的氧化过程以及反应产物的后续运输。据信这代表了使用面向对象技术创建的第一个粒子跟踪模型,并且已被证明能够模拟该应用所需的大时间尺度(数个世纪)。该模型将弃土堆概念化为一系列“列”,每个“列”代表不饱和区的一部分,在该区中发生活跃的风化作用和次生矿物的沉淀。然后,将这些柱连接到地下水位以下的饱和区,在那里污染物被输送到堆放物。粒子追踪的一种形式,即“随机游走法”,用于运输氧化剂,氧气以及产品(亚铁和硫酸盐)。铁的后续氧化和羟基氧化铁的沉淀被结合在一起,形成铁“沉”,从运输过程中有效地去除了铁。将POTOMAC应用于案例研究(英国达勒姆郡的Morrison Busty弃渣堆)产生了令人鼓舞的结果。

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