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Determining alkali leaching during accelerated ASR performance testing and in field exposed cubes using cold water extraction (CWE) and µXRF

机译:使用冷水提取(CWE)和μXRF在加速ASR性能测试期间确定碱浸出和现场暴露立方体

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摘要

Considerable leaching of alkali metals was documented, both in concrete samples exposed to accelerated laboratory testing and field samples. CWE allowed to quantitatively determine the free alkali metal profiles as a function of the depth. However, CWE cannot account for the changes in the paste content towards a cast surface leading to a seemingly increase in alkali metals. The μXRF allowed to distinguish paste and aggregates. It allowed thereby to determine qualitative Na and K profiles in the cement paste phase of the concrete samples. The laboratory exposed samples showed a clear leaching profile into a depth of about 15 mm after 21 weeks of exposure at 60°C. Corresponding numbers for the 12 years field exposed cube were 50-60 mm. Alkali sorption by alkali silica gel was detected using the μXRF. For the laboratory exposed samples, the prisms prepared with Portland fly ash cement leached less alkali compared to the prisms prepared with ordinary Portland cement, as expected. The leaching in the middle of the prisms estimated based on the μXRF profiles agreed rather well with the level of alkali leaching determined based on the analysis of the leachate (i.e. the water below the samples during exposure).
机译:对碱金属的相当大的浸出进行了记录,两者都在暴露于加速的实验室测试和田间样本中的混凝土样本中。 CWE允许定量地确定自由碱金属型材作为深度的函数。然而,CWE不能考虑粘附含量朝向铸造表面的变化,导致碱金属看似增加。 μXRF允许区分浆料和聚集体。由此允许在混凝土样品的水泥浆料相中测定定性NA和K型材。实验室暴露的样品在60℃下暴露于21周后,在约15mm的深度中显示出透明的浸出曲线。 12年的相应数字暴露的立方体为50-60毫米。使用μXRF检测碱硅胶的碱吸附。对于实验室暴露的样品,与普通波特兰水泥制备的棱镜相比,用波特兰粉煤灰水泥制备的棱镜浸出较低的碱。基于μXRF曲线估计的棱镜中间的浸出与基于渗滤液分析确定的碱浸出水平(即样品在暴露期间的样品下方的水)的水平相同。

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