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石膏处理粉煤灰作为废物处置设施的衬垫。

Gypsum treated fly ash as a liner for waste disposal facilities.

机构信息

Department of Civil Engineering, Indian Institute of Science, Bangalore, India.

出版信息

Waste Manag. 2011 Feb;31(2):359-69. doi: 10.1016/j.wasman.2010.07.017.

Abstract

Fly ash has potential application in the construction of base liners for waste containment facilities. While most of the fly ashes improve in the strength with curing, the ranges of permeabilities they attain may often not meet the basic requirement of a liner material. An attempt has been made in the present context to reduce the hydraulic conductivity by adding lime content up to 10% to two selected samples of class F fly ashes. The use of gypsum, which is known to accelerate the unconfined compressive strength by increasing the lime reactivity, has been investigated in further improving the hydraulic conductivity. Hydraulic conductivities of the compacted specimens have been determined in the laboratory using the falling head method. It has been observed that the addition of gypsum reduces the hydraulic conductivity of the lime treated fly ashes. The reduction in the hydraulic conductivity of the samples containing gypsum is significantly more for samples with high amounts of lime contents (as high as 1000 times) than those fly ashes with lower amounts of lime. However there is a relatively more increase in the strengths of the samples with the inclusion of gypsum to the fly ashes at lower lime contents. This is due to the fact that excess lime added to fly ash is not effectively converted into pozzolanic compounds. Even the presence of gypsum is observed not to activate these reactions with excess lime. On the other hand the higher amount of lime in the presence of sulphate is observed to produce more cementitious compounds which block the pores in the fly ash. The consequent reduction in the hydraulic conductivity of fly ash would be beneficial in reducing the leachability of trace elements present in the fly ash when used as a base liner.

摘要

粉煤灰在废物储存设施的基础衬垫建设中有潜在的应用。虽然大多数粉煤灰在养护过程中强度提高,但它们达到的渗透率范围往往不符合衬垫材料的基本要求。在目前的情况下,尝试通过添加高达 10%的石灰含量来降低两种选定的 F 类粉煤灰的水力传导率。已经研究了使用石膏来进一步提高水力传导率,因为石膏已知通过增加石灰反应性来加速无侧限抗压强度。使用落头法在实验室中确定了压实试样的水力传导率。已经观察到,添加石膏会降低石灰处理粉煤灰的水力传导率。对于含有高石灰含量(高达 1000 倍)的样品,石膏添加降低样品水力传导率的效果明显比含有较低石灰含量的样品更为显著。然而,对于含有较低石灰含量的石膏添加到粉煤灰的样品,强度的增加相对较大。这是因为添加到粉煤灰中的过量石灰不能有效地转化为火山灰化合物。即使存在石膏,也观察到它不会激活过量石灰的这些反应。另一方面,在硫酸盐存在下的较高石灰含量会产生更多的胶凝化合物,从而堵塞粉煤灰中的孔隙。粉煤灰的水力传导率降低将有助于减少用作基础衬垫时粉煤灰中痕量元素的浸出率。

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