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Effects of Microwave Energy on Fast Compressive Strength Development of Coal Bottom Ash-Based Geopolymers

机译:微波能量对煤底灰基地质聚合物快速抗压强度发展的影响

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摘要

Microwave energy has been shown to be effective for geopolymer synthesis due to its fast and penetrative heating characteristics; however, the changes in the physicochemical properties of the geopolymer, resulting from the microwave irradiation, have not been fully elucidated. Therefore, this study is aimed at investigating the effect of the microwaving on the properties of coal bottom ash(CBA) geopolymers. We prepared geopolymer samples by casting a mixture of ground CBA and 14 M NaOH solution against cubic molds with a hand press machine, followed by pre-curing in a dry oven at 75 °C for 24 h and microwaving under various powers and durations. The compressive strength strongly depended on the moisture content, i.e., the strength increased from 21 to 65 MPa or higher as the moisture content decreased to critical values, after which the strength began to decrease. The results showed that microwave energy stimulated an additional geopolymerization by evaporating the redundant free water. This led to the strength gain, although the over-irradiation generated a high internal stress and poor structural integrity, which resulted in the strength loss. Therefore, the appropriate application of microwave energy is a promising option for synthesizing high-strength geopolymers in a cost- and time-effective manner.
机译:微波能量由于其快速和穿透性的加热特性,已被证明对合成地质聚合物有效。然而,由于微波辐照导致的地质聚合物的理化性质变化尚未得到充分阐明。因此,本研究旨在研究微波对煤底灰(CBA)地质聚合物性能的影响。我们通过以下步骤制备了地聚合物样品:使用手动压力机将研磨的CBA和14 groundM NaOH溶液的混合物浇铸在立方模具上,然后在75°C的干燥箱中预固化24 h,并在不同功率和持续时间下进行微波处理。抗压强度主要取决于水分含量,即,当水分含量降低至临界值时,强度从21增加至65 MPa或更高,此后强度开始降低。结果表明,微波能量通过蒸发多余的自由水而激发了额外的地聚作用。尽管过度辐照会产生较高的内部应力和较差的结构完整性,但仍会导致强度增加,从而导致强度增加。因此,微波能量的适当应用是以经济有效的方式合成高强度地聚合物的一种有前途的选择。

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    Sungil Hong; Hyo Kim;

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  • 年(卷),期 -1(9),-1
  • 年度 -1
  • 页码 15694
  • 总页数 17
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