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Influence of metal oxide (V_2O_5) in recycled waste materials for advanced durable construction technology

机译:再生废料中金属氧化物(V_2O_5)对先进耐用建筑技术的影响

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For replacement of Portland cement as well as advancement of concrete technology, the low calcium based fly ash with alkali activators plays a significant role as cementitious material in current scenario. As efficacy of fly ash requires very high temperature (= 1400 degrees C) activation, alternative approach of fly ash with addition of 5% vanadium pentoxide (V2O5) has been established for mullitization process at lower temperature (= 1000 degrees C) in this present exertion. The sintered fly ash has been used along with alkali activator for developing the construction composite at ambient temperature. Strength measurement, Ultrasonic pulse velocity, Chloride ion permeability, water absorption and sulphate resistant tests reveal that the V2O5 assimilated fly-ash based geopolymer structures possess higher mechanical strengths and durability. The microstructural studies (FESEM, EDS, XRD, FTIR) of the samples confirm the needle shaped nano sized mullite formation at 1000 degrees C temperature in its matrices. Thermal behaviour of the V2O5 based fly-ash depicted the synthesized nanoparticle was exothermic in reaction. The investigation demonstrates the formation of needle shaped mullite helps to enhance durability with higher bond strength of the composite structure and a new approach to utilize/recycle the vast resources of fly-ash with lower temperature requirement as an effective cementitious-based engineering materials. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了替代波特兰水泥以及改善混凝土技术,在当前情况下,具有碱活化剂的低钙基粉煤灰作为胶凝材料发挥着重要作用。由于粉煤灰的功效需要非常高的温度(> = 1400摄氏度)活化,因此已经建立了添加5%五氧化二钒(V2O5)的粉煤灰替代方法,用于较低温度(<= 1000摄氏度)的乳化过程。目前的努力。烧结的粉煤灰已与碱活化剂一起用于在环境温度下显影建筑复合材料。强度测量,超声波脉冲速度,氯离子渗透性,吸水率和耐硫酸盐测试表明,V2O5吸收的粉煤灰基地聚合物结构具有较高的机械强度和耐久性。样品的微观结构研究(FESEM,EDS,XRD,FTIR)证实了在1000摄氏度的温度下其基质中形成针状纳米尺寸的莫来石。基于V2O5的粉煤灰的热行为描述了合成的纳米粒子在反应中放热。研究表明,针状莫来石的形成有助于提高复合结构的粘结强度,从而提高耐用性,并且是一种利用/循环利用温度要求较低的飞灰的大量资源作为有效的水泥基工程材料的新方法。 (C)2018 Elsevier Ltd.保留所有权利。

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