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Stabilization of FGD gypsum for its disposal in landfills using amorphous aluminium oxide as a fluoride retention additive

机译:使用非晶态氧化铝作为氟化物保留添加剂的FGD石膏在填埋场中的处理稳定性

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The applicability of amorphous aluminium oxide as a fluoride retention additive to flue gas desulphurisation (FGD) gypsum was studied as a way of stabilizing this by-product for its disposal in landfills. Using a batch method the sorption behaviour of amorphous aluminium oxide was evaluated at the pH (about 6.5) and background electrolyte conditions (high chloride and sulphate concentrations) found in FGD gypsum leachates. It was found that fluoride sorption on amorphous aluminium oxide was a very fast process with equilibrium attained within the first half an hour of interaction. The sorption process was well described by the Langmuir model, offering a maximum fluoride sorption capacity of 61.7 mgg~(-1). Fluoride sorption was unaffected by chloride co-existing ions, while slightly decreased (about 20%) by competing sulphate ions. The use of amorphous aluminium oxide in the stabilization of FGD gypsum proved to greatly decreased its fluoride leachable content (in the range 5-75% for amorphous aluminium oxide doses of 0.1-2%, as determined by the European standard EN 12457-4 [EN-12457-4 Characterization of waste-leaching-compliance test for leaching of granular waste materials and sludges-Part 4: one stage batch test at a liquid to solid ratio of 101/kg for materials with particle size below 10 mm (without or with size reduction)]), assuring the characterization of this by-product as a waste acceptable at landfills of non-hazardous wastes according to the Council Decision 2003/33/EC [Council Decision 2003/33/EC of 19 December 2002. Establishing criteria and procedures for the acceptance of waste at landfills pursuant to Article 16 of and Annex Ⅱ to Directive 1999/31/EC] on landfill of wastes. Furthermore, as derived from column leaching studies, the proposed stabilization system proved to be highly effective in simulated conditions of disposal, displaying a fluoride leaching reduction value about 81% for an amorphous aluminium oxide added amount of 2%.
机译:研究了无定形氧化铝作为氟化物截留添加剂在烟气脱硫(FGD)石膏中的适用性,以此作为稳定该副产物用于掩埋场的一种方法。使用批处理方法,评估了在FGD石膏浸出液中的pH(约6.5)和背景电解质条件(高氯化物和硫酸盐浓度)下无定形氧化铝的吸附行为。已发现氟化物在非晶态氧化铝上的吸附是一个非常快的过程,在相互作用的前半小时内达到了平衡。 Langmuir模型很好地描述了吸附过程,最大氟化物吸附能力为61.7 mgg〜(-1)。氟化物吸附不受氯化物共存离子的影响,而竞争性硫酸根离子则略有降低(约20%)。事实证明,在FGD石膏的稳定化过程中使用无定形氧化铝可大大降低其氟化物的可浸出含量(按欧洲标准EN 12457-4的规定,无定形氧化铝的剂量为0.1-2%时,在5-75%的范围内[ EN-12457-4对颗粒状废料和污泥进行浸出的废浸顺应性测试的特征-第4部分:液固比为101 / kg的粒度小于10 mm的物料的一级分批试验尺寸减小)]),并根据理事会第2003/33 / EC号决议[2002年12月19日理事会第2003/33 / EC号决议,确保将该副产品表征为非危险废物填埋场可接受的废物。 [关于垃圾掩埋的指令1999/31 / EC的第16条和附件Ⅱ的准则和程序]。此外,从柱浸出研究中得出的结果证明,所提出的稳定系统在模拟的处理条件下非常有效,对于2%的无定形氧化铝,其氟化物浸出减少值约为81%。

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