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Optimizing the accelerated hardening of sawdust light weight concrete with carbon dioxide gas

机译:用二氧化碳气体优化锯末轻重混凝土加速硬化

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Recent increases in the amount of industrial wastes to be removed has made dealing with such waste products and gases an issue that needs to be solved with some urgency. The accelerated hardening mechanisms of light weight concrete (LWC) using carbon dioxide gas were thus studied in an experimental study to investigate the mechanical performance of concrete incorporating waste sawdust. The final results were optimised to maximise strength and minimise density using two different parameters: gas concentrations and sawdust percentages. All samples were subjected to tests of their mechanical and physical properties, including compressive strength, splitting tensile strength, water absorption, and density using the relevant standards. Parts of the samples were also submitted to thermogravimetric analysis (TGA) following the process of accelerated curing in order to quantify the consumed calcium hydroxide (Ca(OH)2) and the produced calcium carbonate (CaCO3). The results of the study showed an improvement in the physical and mechanical properties of all investigated specimens using the accelerated CO2 curing method. In addition, a 7% sawdust addition with 53% CO2 concentration resulted in higher strength in all cases. The TGA results proved that the carbonation curing resulted in lower Ca(OH)2 and higher CaCO3 content, with associated enhancement in the mechanical performance. This indicates that CO2-rich industrial emissions could find a value adding use in carbonation curing of sustainable wood-based concrete.
机译:要去除工业废水量近年来增加做出了处理这类废物和气体的问题,需要有一些紧迫感来解决。因此使用二氧化碳气体轻质混凝土的硬化加速机构(LWC)进行了研究中的实验研究,调查混凝土结合废物锯末的机械性能。最终的结果被优化以最大化强度,并使用两个不同的参数最小化密度:气体浓度和锯末百分比。所有样品进行它们的机械和物理性能的测试,包括抗压强度,劈裂拉伸强度,吸水率,以及密度使用相关标准。样品的部分,以量化所消耗的氢氧化钙也已提交到加速固化过程以下的热重分析(TGA)(的Ca(OH)2)和所产生的碳酸钙(CaCO3计)。该研究的结果表明,在使用加速CO 2固化方法所有研究样品的物理和机械性能的改善。此外,有7%的锯末除了用53%CO 2浓度导致在所有情况下更高的强度。的TGA结果表明,碳酸固化导致较低的Ca(OH)2和更高的CaCO3含量,与在机械性能相关的增强。这表明,富含CO2的工业排放能找到一个碳化增值使用固化可持续木质混凝土。

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