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首页> 外文期刊>International journal of environmental engineering >Formation, properties and revegetation prospects for bauxite processing residue and the effects of seawater neutralisation
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Formation, properties and revegetation prospects for bauxite processing residue and the effects of seawater neutralisation

机译:铝土矿加工残渣的形成,性质和植被恢复前景以及海水中和的影响

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摘要

Partial neutralisation of bauxite residue (by treatment with seawater) prior to its deposition in land-based lagoons or impoundments minimises the need to treat the alkaline, sodic drainage both during operation of the alumina refinery and following its closure. Some of the Na present in the residue is replaced by Mg, Ca and K present in the seawater and reactive, soluble alkalinity is converted to poorly soluble alkaline solids (Mg and Ca hydroxides and hydroxycarbonates) with the result that the pH is reduced from 10-13 down to 8.5-9.0. However, the extent to which pH rises again during storage is unclear. There are, as yet, no reports of revegetation of seawater neutralised material. Growth limiting factors are likely to include alkalinity, sodicity, salinity, nutrient deficiencies and poor soil physical conditions but the severity of these constraints are as yet unknown. Research into the technology required for revegetation of this material is warranted.
机译:在铝土矿残渣沉积在陆上泻湖或蓄水池之前,部分中和铝土矿(通过海水处理)可以最大程度地减少氧化铝精炼厂运营期间和关闭后对碱,钠排水的处理。残留物中的某些Na被海水中的Mg,Ca和K取代,反应性的可溶性碱度转化为难溶的碱性固体(Mg和Ca的氢氧化物和羟基碳酸盐),结果pH值从10降低-13降至8.5-9.0。但是,在存储过程中pH值再次升高的程度尚不清楚。迄今为止,还没有关于海水中和物质重新植被的报道。生长限制因素可能包括碱度,碱度,盐度,营养缺乏和土壤物理条件差,但这些限制的严重性尚不清楚。有必要对重新植被此材料所需的技术进行研究。

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