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Strength Development of Lime Treated Artificial Organic Soil

机译:石灰治疗人工有机土的力量发展

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In over many years, considerable research has been carried out on organic soils which consists of various components of organic matter but the effect of particular organic matter is less reported. Thus, some of contributing factors for each organic matter are not fully understood yet. Hence, the aim of this study is to determine the effect of organic acid concentration on the strength of artificial organic soil. There are four types of artificial organic soil created by mixing kaolin (inorganic matter) and organic acid (a kind of humified organic matter) in different concentrations. Unconfmed Compressive Strength test (UCT) was carried out for all soil samples after being cured for 7 and 28 days under room temperature and 50°C. Soil samples shows highest strength when cured for 28 days under 50°C compared to those cured under room temperature. However, when the organic acid concentration decrease, the strength increased for soil 2 after 7 and 28 days cured under room temperature and 50°C. Apart from this, soil 3 and soil 4 that were cured under room temperature shows decrease in strength when the organic acid concentration decreasing but different result shown for both samples when cured under 50°C.
机译:多年来,已在有机土壤上进行了相当大的研究,其中包括有机物质的各种组分,但特定有机物质的效果较少。因此,尚未完全理解每个有机物质的一些贡献因素。因此,本研究的目的是确定有机酸浓度对人工有机土的强度的影响。通过在不同浓度下混合高岭土(无机物质)和有机酸(一种湿化的有机物)产生四种人工有机土壤。在室温下固化7和28天后,对所有土壤样品进行无次压缩强度试验(UCT)对50℃进行固化7和28天。与室温下固化的那些,土壤样品在50℃下固化28天时显示出最高强度。然而,当有机酸浓度降低时,在室温下固化的7和28天后,土壤2的强度增加了50℃。除此之外,在室温下固化的土壤3和土壤4显示,当有机酸浓度降低但在50℃下固化时,对于两种样品所示的不同结果,可以降低。

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