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The Use of Municipal Solid Waste Incinerator Ash to Stabilize Dune Sands

机译:利用城市固体废物焚化炉灰稳定沙丘

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Dune sands are problematic soils because they have low shear strength and are susceptible to collapse upon wetting. Dosages of municipal solid waste incinerator ash between 10 and 80 % were used to improve the engineering properties of dune sands. The soil-ash mixtures were allowed to cure for periods from 7 to 90 days. Laboratory tests such as compaction, unconfined compression, shear box and hydraulic conductivity tests were performed to measure the engineering characteristics of the stabilized material. The results showed that the maximum dry density remains approximately constant up to ash content of 30 % and then it decreases with the increase in ash content. The optimum water content increases with the increase in ash content. The unconfined compressive strength substantially increases with ash content up to 30 % and then decreases with the increase in ash content. The angle of friction follows similar trend to the unconfined compressive strength. However, the cohesion shows a steady increase with the ash content. The hydraulic conductivity of the stabilized material consistently decreases with the increase in the ash content. The effect of curing time on the hydraulic conductivity is minimal after 7 days of curing time. However, the unconfined compressive strength and the cohesion slightly increased with curing time up to 90 days.
机译:沙丘沙土是有问题的土壤,因为它们的抗剪强度低并且在润湿时很容易倒塌。市政固体废物焚烧炉灰的用量在10%到80%之间,用于改善沙丘沙的工程性能。使土灰混合物固化7至90天。进行了实验室测试,例如压实,无边压缩,剪切箱和水力传导率测试,以测量稳定材料的工程特性。结果表明,最大干密度在灰分含量达到30%之前大致保持恒定,然后随着灰分含量的增加而降低。最佳水含量随灰分含量的增加而增加。当灰分含量高达30%时,无侧限抗压强度会显着增加,然后随着灰分含量的增加而降低。摩擦角遵循与无限制抗压强度相似的趋势。但是,内聚力随灰分含量稳定增加。稳定材料的水力传导率随着灰分含量的增加而持续降低。固化时间7天后,固化时间对水力传导率的影响极小。但是,随着固化时间延长至90天,无侧限抗压强度和内聚力略有增加。

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