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Re-use of stabilised flue gas ashes from solid waste incineration in cement-treated base layers for pavements

机译:固体废物焚化产生的稳定烟气灰在水泥处理的路面基层中的再利用

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Fly ash from coal-burning power plants has been used extensively as a pozzolan and fine filler in concrete for many years. Laboratory experiments were performed investigating the effect of substituting the coal'based fly ash with chemically stabilised flue gas ashes (FGA) from waste incineration. Two types of FGA were treated by the Ferrox-process, which removes the majority of the easily soluble salts in the FGA and provides binding sites for heavy metals in terms of ferrihydrite. Cubes of cement treated base layer materials containing 5% stabilised FGA were cast, sealed and cured for two weeks. Cylinders (diameter 100 mm, length 150 mm) were drilled from these cubes for tank leaching experiments. Duplicate specimens were subject to compression strength testing and to tank leaching experiments. The compressive strength of the CTB ful filled the Danish requirements for CTB, i.e. strength more than 5 MPa after 7 days. The tank leaching tests revealed that leaching of heavy metals was not significantly affect ed by the use of chemically stabilised flue gas ashes from waste incineration. Assuming that diffusion controls the leaching process it was calculated that less than 1% of the metals would leach during a 100-year period from a 0.5 m thick concrete slab exposed to water on one side. Leaching of the common ions Ca, Cl, Na and SO_4 was increased 3-20 times from the specimens with chemically stabilised flue gas ashes from waste incineration. However, the quantities leached were still modest. These experiments suggest that FGA from waste incineration after Ferroxtreatment could be reused in CTB without compromising the strength and leaching from the base layer.
机译:多年以来,燃煤电厂的粉煤灰已广泛用作火山灰和精细填料。进行了实验室实验,研究了用废物焚烧中的化学稳定烟气灰(FGA)代替煤基粉煤灰的效果。两种类型的FGA通过Ferrox工艺进行处理,该工艺去除了FGA中的大多数易溶盐,并提供了以重铁矿为形式的重金属结合位点。将含有5%稳定FGA的水泥处理过的基础层材料的立方体浇铸,密封并固化两周。从这些立方体上钻出圆柱体(直径100毫米,长度150毫米)以进行罐浸实验。重复的标本经过抗压强度测试和储罐浸出实验。 CTB的抗压强度满足了丹麦对CTB的要求,即7天后强度超过5 MPa。储罐的浸出试验表明,重金属的浸出不受废物焚烧过程中化学稳定的烟气灰的使用的影响。假设扩散控制着浸出过程,则可以计算出在100年的时间内,从一侧暴露于水的0.5 m厚混凝土板中浸出的金属不到1%。废物焚化产生的化学稳定烟气灰分使标本中的常见离子Ca,Cl,Na和SO_4的浸出增加了3-20倍。但是,浸出的数量仍然很少。这些实验表明,经过Ferrox处理后的垃圾焚烧产生的FGA可在CTB中重复使用,而不会影响强度和从基层中浸出。

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