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Improved strength and reduced permeability of stabilized peat: Focus on application of kaolin as a pozzolanic additive

机译:提高强度和降低稳定泥炭的渗透性:专注于高岭土作为火山灰添加剂的应用

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摘要

The aim of this work is to demonstrate the application of kaolin as a pozzolanic additive of stabilized peat. In addition to kaolin, Portland composite cement, calcium chloride and silica sand were used as the materials to stabilize the peat. To achieve such aim, test specimens of both untreated and stabilized peats were tested in laboratory in order to evaluate its unconfined compressive strength and rate of permeability. Each test specimen was prepared in such a way that it has to simulate the in situ condition of deep peat stabilization by deep mixing method. It was found that test specimen with 10 partial replacement with kaolin has the highest unconfined compressive strength that exceeds the minimal required unconfined compressive strength of 345 kPa. The test specimen was subjected to 100 kPa initial pressure and cured in water for 7 days. The unconfined compressive strength of the test specimen was discovered to be 33.7 times greater than that of untreated peat specimen. In laboratory permeability tests, the rate of permeability of untreated peat was found to be 6.43 � 106 times higher than that of stabilized peat. Samples of the test specimens were examined using Energy Dispersive X-ray (EDX) and Scanning Electron Microscope (SEM). High peaks of calcium element from the EDX results of stabilized peat specimens imply that the specimens have high calcium composition as a result of cement hydrolysis, and addition of kaolin is believed to induce secondary pozzolanic reaction in which the cementation crystals of mainly calcium silicate hydrate were formed to bind the soil. Based on the observation of SEM of the stabilized peat specimens, it was found that there was a significant pore refinement in the test specimens as a result of the filler effect of silica sand and pozzolanic activity of kaolin.
机译:这项工作的目的是证明高岭土作为稳定泥炭的火山灰添加剂的应用。除高岭土外,波特兰复合水泥,氯化钙和硅砂还用作稳定泥炭的材料。为了达到这个目的,未经处理的泥炭和稳定的泥炭都在实验室进行了测试,以评估其无限制的抗压强度和渗透率。每个样品的制备方式都必须通过深度混合法模拟深层泥炭稳定的原位条件。结果发现,用高岭土部分替换了10个试样后,其最高无侧限抗压强度超过了345 kPa的最低限度无侧限抗压强度。使试样经受100kPa的初始压力并且在水中固化7天。发现该试样的无侧限抗压强度是未经处理的泥炭试样的无侧限抗压强度的33.7倍。在实验室的渗透率测试中,未处理的泥炭的渗透率比稳定的泥炭的渗透率高6.43×106倍。使用能量分散X射线(EDX)和扫描电子显微镜(SEM)检查测试样品的样品。稳定泥炭样品的EDX结果中钙元素的峰值很高,表明该样品由于水泥的水解而具有较高的钙组成,高岭土的添加被认为会引起二次火山灰反应,其中主要为水合硅酸钙的胶结晶体为形成绑定土壤。基于对稳定的泥炭样品的SEM的观察,发现由于硅砂的填充作用和高岭土的火山灰活性,在测试样品中存在明显的孔细化。

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    Wong L.S.; Hashim R.; Ali F.;

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