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The Impact of Fly Ash after SNCR Treated with Tannin-Based Products on AAC Production

机译:单宁基产品SNCR处理后粉煤灰对AAC生产的影响

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This paper is focused on the effect of treatment of fly ash after selective non-catalytic reduction (SNCR) with tannin on autoclaved aerated concrete (AAC) production in order to reduce or stop ammonia leakage from the fresh mixture due to its alkalinity. A pure form of tannin and a tannin-based product „Farmatan" were used as a treatment in dosage ranging from 0,5 g - 3 g of agent per 1 kg of fly ash. Efficient dosage was determined at 2 wt.% of fly ash by the speed of an indicator change due to gaseous ammonia diluted in water. The rheological properties of fresh mixtures were observed by consistency test in Viskomat showing that Farmatan causes delay of hydration. The results of bulk density and compressive strength testing revealed that Farmatan causes an increase of bulk density and at higher amount decreases the compressive strength because of thermal crack formation due to combined effect of delayed hydration and thixotropy. Using x-ray diffraction (XRD) analysis there were no differences in phase composition observed.
机译:本文针对单宁选择性非催化还原(SNCR)后的粉煤灰处理对蒸压加气混凝土(AAC)生产的影响,以减少或阻止由于碱性而导致的新鲜混合物中氨的泄漏。纯净的单宁和单宁产品“ Farmatan”用于治疗,剂量范围为每1千克粉煤灰0.5克至3克药剂,有效剂量经确定为2重量%的粉煤灰氨气在水中稀释后指示剂的变化导致灰分变化;在Viskomat中通过稠度测试观察了新鲜混合物的流变特性,结果表明,Farmatan引起了水合作用的延迟;堆积密度和抗压强度测试的结果表明,Farmatan引起了水合作用的延迟。由于延迟水合作用和触变性的共同作用,由于形成热裂纹,堆积密度的增加和含量的增加降低了抗压强度,使用X射线衍射(XRD)分析没有观察到相组成的差异。

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