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Influence of magnesium hydroxide content and fineness on the carbonation of calcium hydroxide

机译:氢氧化镁含量和细度对氢氧化钙碳酸化的影响

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Accelerated carbonation material is a kind of air hardening cementitious materials. The influence of magnesium content on the properties of carbonate binder, such as compressive strength, CO_2 mass gain degree and products morphology, were investigated. Solid state carbonation method that low water to solid ratio (W/S) of 0.10 was performed in this study. The samples were prepared at a range of compaction pressures (0 MPa-8.0 MPa). And then the samples were exposed at a constant CO_2 gas pressure (0.2 MPa) for different carbonation time. The result showed that different calcium to magnesium mole (C/M) ratios has a significant impact on compressive strength and CO_2 mass gain degree of samples. The CO_2 mass gain degree increased at first, reached the maximum, and then decreased with the increasing C/M ratio. The C/M ratio of that CO_2 mass gain degree reached the maximum was 5. The compressive strength not only changed by magnesium content but also influenced by the fineness of magnesium hydroxide, more finer practical size more higher compressive strength. SEM photographs showed that the morphology of carbonated products changed by different compaction pressures and content of magnesium hydroxide.
机译:加速碳化材料是一种空气硬化水泥材料。研究了镁含量对碳酸盐粘结剂性能的影响,如抗压强度,CO_2质量增加度和产品形态。在这项研究中进行了固态碳酸化方法,低水固比(W / S)为0.10。在一定的压实压力范围(0 MPa-8.0 MPa)下制备样品。然后将样品在恒定的CO_2气压(0.2 MPa)下暴露不同的碳化时间。结果表明,不同的钙镁摩尔比(C / M)对样品的抗压强度和CO_2质量增加度有显着影响。随着C / M比的增加,CO_2质量增加度首先增加,达到最大值,然后降低。该CO 2质量增加度达到最大的C / M比为5。抗压强度不仅受镁含量的影响,而且受氢氧化镁细度的影响,实用尺寸越小抗压强度越高。 SEM照片表明,碳酸化产物的形貌随压实压力和氢氧化镁含量的变化而变化。

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