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Robust synthesis of coal bottom ash-based geopolymers using additional microwave heating and curing for high compressive strength properties

机译:利用额外的微波加热和固化,鲁棒合成煤底灰基地质聚合物对高压压强度性能的固化

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摘要

While coal bottom ash (CBA) contains an amount of amorphous silica and alumina as high as coal fly ash (CFA), its irregular particle shapes and excess unburnt carbon content compared to CFA are known to decrease the compressive strength of CBA-based geopolymers. Hence, we propose an advanced synthetic method of high-strength CBA-based geopolymer by appending microwave heating to conventional oven curing process without pretreatments for carbon removal. First, we blended finely crushed CBA with a moderate amount of 14 M NaOH alkali activator to make a mixture in a slightly wet state. Then, we fabricated precast samples by casting the mixture against 5-cm cubic molds with the help of a hand press. Next, the samples were hardened through the two-stage process of pre-dry-oven curing (12, 24 and 36 hr at 75 degrees C) and post-microwave-oven heating (up to 7 min under 700 W power). In essence, the specimens cured for 36 hr in the dry oven showed a considerable improvement in compressive strength just after being heated for 3 min in the microwave oven (from 12.8 to 40.5 MPa). This newly proposed synthetic method is proven to be very cost-effective for producing CBA-based geopolymer with high compressive strength.
机译:虽然煤底灰(CBA)含有一定量的无定形二氧化硅和氧化铝,但是,已知与CFA相比,其不规则的颗粒形状和过量的未燃烧碳含量降低CBA基地质聚合物的抗压强度。因此,我们通过将微波加热加热到常规烘箱固化过程,提出了一种高强度CBA基地质聚合物的先进合成方法,而无需预处理即可碳去除。首先,我们用适量的14M NaOH碱活化剂混合精细的CBA,使混合物略微湿润。然后,我们通过在手机的帮助下浇铸对5cm立方模具的混合物来制造预制样品。接下来,将样品通过两级方法通过两阶段的前干燥烘箱固化(12,24和36小时以75℃)和微波烘箱加热(在700W以下的7分钟下)的两阶段方法进行硬化。实质上,在干燥烘箱中固化36小时的标本显示在微波炉中加热3分钟后的抗压强度大大提高(从12.8至40.5MPa)。这种新提出的合成方法被证明是对生产CBA的地质聚合物具有高抗压强度来说是非常成本的。

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