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Environmental properties of vitrified fly ash from hazardous and municipal waste incineration

机译:危险和城市垃圾焚烧产生的玻璃化粉煤灰的环境特性

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A process for vitrification of fly ash has been developed by the Swedish company ScanArc Plasma Technologies AB, and the Norwegian company Kvaerner Oil & Gas a.s. The process is named VITROARC. During 1996 the process was tested on different types of fly-ash under different process conditions, and the slag produced was tested for leaching behaviour in an extensive program at Netherlands Energy Reseaserch Foundation (ECN) in Holland. The project was supported by N.V. Afvalsverwerking Rijnmond (AVR) which also delivered most of the fly ash. Fly ash was also delivered from AVR Chemi and Roteb in Holland, Tiru in France and Borlange Energiverk in Sweden. The main target of the program was to verify that the produced slag fulfilled the requirements to category I material according to the Dutch regulation for building materials. During this particular program about 50 tonnes of fly ash have been vitrified individually and mixed in series of tests under different conditions. The tests have been performed in a pilot plant with capacity of processing one ton of flyash per hour. The main conclusions from this study are as follows: the VITROARC process does produce a slag material that qualifies directly for category 1 material for almost all elements. In most cases well below the crucial limit value. In the evaluation of the leaching behaviour of vitrified slag from fly ash antimony leaching proves to be the only crucial aspect in view of the Dutch regulatory requirements for building materials. The leachability of Sb varies around the limit value. It should be noted that compared with other materials, the leachability of the slag is largely surface related and almost surface limited. This implies that the leaching from VITROARC slag in the long term will be far less than in most systems, meeting the criteria also for Sb, but showing a steady release of material due to solubility control. This benefit of the treatment cannot be evaluated in the current regulatory rules in Holland. It should also be noted that the Sb limit value for Nl quality in the Dutch regulation for construction materials (0.054 mg/kg) is extremely low compared for instance to As (0.91 mg/kg), bearing in mind that As is regarded as being 10 times more poisonous than Sb is that leaching limits for Sb are not given in several other regulations. An overall conclusion from this is that the process represents a reliable, environment friendly and safe solution for stabilising and converting incinerator fly ash into useful products. The slag is also tested according to German, Austrian and Swiss regulations and fulfils their requirements for disposal of inert material. Also according to French and US regulations the leaching from the VITROARC slag is below the regulatory limits.
机译:瑞典ScanArc Plasma Technologies AB公司和挪威Kvaerner Oil&Gas a.s公司已经开发了一种粉煤灰玻璃化方法。该过程称为VITROARC。在1996年期间,该过程在不同的过程条件下对不同类型的粉煤灰进行了测试,并且所产生的矿渣在荷兰的荷兰能源再研究基金会(ECN)的一项广泛计划中进行了浸出行为测试。该项目得到了N.V. Afvalsverwerking Rijnmond(AVR)的支持,该公司还提供了大部分粉煤灰。还从荷兰的AVR Chemi和Roteb,法国的Tiru和瑞典的Borlange Energiverk运送了粉煤灰。该计划的主要目标是根据荷兰关于建筑材料的规定,核实所产生的炉渣是否符合I类材料的要求。在此特定程序中,约50吨的粉煤灰已分别进行了玻璃化处理,并在不同条件下进行了一系列测试。该测试已在一个每小时处理一吨粉煤灰的中试工厂中进行。这项研究的主要结论如下:VITROARC工艺确实产生了一种炉渣材料,该炉渣材料几乎直接适用于几乎所有元素的1类材料。在大多数情况下,远低于关键限值。考虑到荷兰对建筑材料的监管要求,在评估粉煤灰中玻璃化渣的浸出行为时,锑的浸出被证明是唯一关键的方面。 Sb的浸出性在极限值附近变化。应该注意的是,与其他材料相比,炉渣的浸出性在很大程度上与表面有关,并且几乎受到表面的限制。这意味着从长期来看,VITROARC炉渣的浸出将远少于大多数系统中的浸出,也满足了Sb的标准,但由于溶解度的控制,其显示出稳定的物料释放。荷兰现行法规无法评估这种治疗的益处。还应注意,荷兰法规中针对建筑材料的N1质量的Sb限值(0.054 mg / kg)与As(0.91 mg / kg)相比极低,请记住,As被认为是毒性比Sb高10倍的原因是,其他一些法规中未给出Sb的浸出极限。由此得出的总体结论是,该工艺代表了一种稳定,环保和安全的解决方案,用于稳定焚烧炉粉煤灰并将其转化为有用的产品。炉渣还根据德国,奥地利和瑞士的规定进行了测试,并符合其处理惰性材料的要求。同样,根据法国和美国法规,VITROARC炉渣的浸出量低于法规限值。

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