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Rapid Compressive Strength Achievement of Coal Bottom Ash Based Geopolymer by Employing Microwave Energy

机译:利用微波能量快速实现粉煤灰基地质聚合物的抗压强度

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Coal bottom ash (CBA), one of the coal combustion byproducts, is a source material good enough for the synthesis of geopolymers considering its high silica and alumina contents, although it has not been used widely because of large particle size. We grind CBA to have a mean particle size of 44.57 μm, and synthesize the geopolymer by activating it with 14 M NaOH solution. To achieve a high compressive strength within a short time, we synthesize the geopolymer by following the procedure: (1) mix CBA with an adequate amount of activator NOT to make it flowable, and then mold it in 5 cm cube, (2) demold specimens and heat them in 75 °C oven below 36 hours, and then (3) irradiate 700 W microwave for several minutes. The compressive strength reaches to above 40 MPa by microwaving specimen for 3 minutes after oven curing for 36 hours. Our experiment shows that high compressive strength can be achieved rapidly by employing microwave combined with conventional oven curing.
机译:煤底灰(CBA)是煤燃烧的副产品之一,考虑到其高的二氧化硅和氧化铝含量,它是足以合成地质聚合物的原料,尽管由于粒径大而未被广泛使用。我们将CBA研磨成平均粒径为44.57μm,然后通过用14 M NaOH溶液活化它来合成地质聚合物。为了在短时间内获得高抗压强度,我们按照以下步骤合成了地质聚合物:(1)将CBA与适量的活化剂混合,使其不易流动,然后将其模制成5厘米立方体,(2)脱模标本,并在75°C的烤箱中加热36小时以下,然后(3)用700 W微波辐照几分钟。烤箱固化36小时后,通过微波试样3分钟使抗压强度达到40 MPa以上。我们的实验表明,采用微波与常规烤箱固化相结合可以快速实现高抗压强度。

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