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Design of lightweight metakaolin based geopolymer foamed with hydrogen peroxide

机译:基于轻质偏塔林的地质聚合物设计与过氧化氢发泡

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Monolithic metakaolin based geopolymer foams were synthetized by direct foaming using hydrogen peroxide (H2O2) as a blowing agent and surfactants to stabilize the resulting gas bubbles. The influence of the H2O2 content and the nature of the surfactant (cationic vs air entraining) have been investigated in the liquid and the solid state. The reaction rate constants for the oxygen produced by the catalytic decomposition of hydrogen peroxide (k = 5.5 x 10(-4) and 2.1 x 10(-4) s(-1) for the air entraining and cationic based geopolymer foams, respectively) are reported for the first time, as calculated from volume expansion data in the liquid state. These constants were found to be independent of the initial H2O2 content. In the solid state, although the physical, mechanical, and microstructural properties of the resulting foams are known to be influenced by the amount of H2O2 in the geopolymer paste, the chemical composition of the surfactant had a startling effect on the morphology and topology of the macroporous network. Indeed, while faceted closed pores form in the cationic based geopolymer, a 3D network of connected pores forms in the air entraining one. As expected therefore, the cationic samples were found to have a much higher compressive strength than the air entrained ones (0.57-5.9 MPa compared with 0.26-4.3 MPa, respectively) for equivalent apparent densities (varying from 0.23 to 1.1 g cm(-3)).
机译:通过使用过氧化氢(H2O2)作为发泡剂和表面活性剂直接发泡而合成整体型偏脉泡沫,以稳定所得气泡的表面活性剂。在液体和固态中研究了H 2 O 2含量和表面活性剂的性质(阳离子VS空气夹带)的影响。用于通过过氧化氢催化分解产生的氧气(K = 5.5×10(-4)和2.1×10(-4)S(-1)的氧气产生的反应速率常数分别用于空气夹带和阳离子的地质聚合物泡沫)首次报告,如液态中的体积扩展数据计算。发现这些常数与初始H 2 O 2含量无关。在固态中,已知所得泡沫的物理,机械和微观结构受到地质聚合物浆料中的H 2 O 2量的影响,但表面活性剂的化学成分对令人惊恐的影响大孔网络。实际上,在突出的基于阳离子聚合物中形成的孔隙形成,在空气中形成了连接孔的3D网络。因此,如预期的那样,发现阳离子样品具有比空气所夹带的压缩强度更高(分别为0.57-5.9MPa,分别为0.26-4.3MPa),用于等效表观密度(从0.23到1.1g cm(-3) )))。

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