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首页> 外文期刊>New Zealand journal of geology & geophysics >Acid mine drainage analysis for the Reddale Coal Mine, Reefton, New Zealand
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Acid mine drainage analysis for the Reddale Coal Mine, Reefton, New Zealand

机译:新西兰雷夫顿雷德代尔煤矿的酸性矿山排水分析

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The Reddale Coal Mine is located within the Brunner Coal Measures, which are often assumed to be potentially acid-forming rocks that will release acidity when disturbed by mining. The pre-mining assessment of the site acid mine drainage (AMD) potential assumed overburden acid-neutralising capacity was negligible, similar to Brunner Coal Measures in other areas, and that AMD would occur almost immediately. Column trials using poorly stored and partially oxidised drill core indicated potentially acid-forming (PAF) overburden readily produced acidity with no lag period. Based on the pre-mining assessment, a Ca(OH)(2) dosing plant was constructed for AMD management. Once mining commenced, tiphead samples collected during construction of the Ferndale engineered landform showed that the net acid-producing potential of the potentially acid-forming overburden was overestimated by about one-third when acid-neutralising capacity and non-sulphide forms of sulphur were accounted for. When coupled with material properties which resulted in good compaction of waste rock, construction of the engineered landform in 4m lifts to minimise convective oxygen flux and aglime (<2.5mm CaCO3) amendments to each lift, acidity loads from the Ferndale engineered landform were negligible. Compliance monitoring downstream of the mine site at Red4 shows that, to date, site discharge pH has remained circum-neutral. Pre-mining AMD management decisions, primarily construction of a Ca(OH)(2) dosing plant that was never commissioned, therefore proved overly conservative. The timing and expense of AMD management has the potential to influence project feasibility and needs to be well understood.
机译:雷德代尔煤矿位于布伦纳煤矿区,通常被认为是可能形成酸的岩石,当受到采矿干扰时会释放出酸性。与其他地区的Brunner Coal措施相似,假定酸性上浮的中和能力的现场酸性矿山排水(AMD)潜力的开采前评估可以忽略不计,而且AMD几乎会立即发生。使用储存不良和部分氧化的钻芯进行的柱试验表明,潜在的成酸(PAF)覆盖层很容易产生酸度,没有滞后时间。根据开采前的评估,建造了用于AMD管理的Ca(OH)(2)加药装置。一旦开始开采,在计算Ferndale工程地貌的过程中收集的尖端样品显示,当考虑到酸中和能力和非硫化物形式的硫时,潜在成酸覆盖层的净产酸潜力被高估了约三分之一。对于。再加上材料特性可很好地压实waste石,在4m的举升机中建造工程地形以最小化每个举升机的对流氧气通量和aglime(<2.5mm CaCO3)修正物,Ferndale工程地形的酸度负荷可忽略不计。 Red4矿场下游的合规性监测表明,迄今为止,现场排放pH值始终保持中性。因此,在开采前的AMD管理决策中,主要是建造从未投产的Ca(OH)(2)加药装置,因此被证明过于保守。 AMD管理的时间和费用有可能影响项目的可行性,因此需要充分理解。

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