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The effect of alternations in mineral additives (zeolite, bentonite, fly ash) on physico-chemical behavior of Portland cement based binders

机译:矿物添加剂(沸石,膨润土,粉煤灰)中的替代物对波特兰水泥基粘合剂的物理化学行为的影响

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Instrumental analyses accompanied by analytical modeling tools were employed to assess physico-chemical changes induced by variations in chemical composition of cementitious composites, i.e. mortar binders. Coal combustion ash was utilized as pozzolanic mineral additive. The binders' mix-design was supplemented with sorptive clays to prevent migration of toxic elements from fly ash. The experiment was established on the premise of clay's ion-exchanging ability. Ten binders comprising cement CEM I 42.5 and fly ash, zeolite and/or bentonite additions were prepared in accordance with chemometric experimental design rules. Chemical composition was determined via XRF method. The changes in mineral phases and crystallinity were traced by X-ray diffraction. Hydration mechanisms and thermal behavior were investigated via DTA/TGA. The chemical bonds were identified by FTIR. Morphology of hardened samples was detected by SEM. Mathematical tools employed data sets of instrumental analyses to form a clear differentiation between binders and to assess changes caused by adoption of mineral additives in the mix designs. Sorptive clays showed pozzolanic behavior, thereby causing no incapacitation to the cement hydration mechanism, and classifying as a possible economical resources which can be used in production technology of construction materials to redeem environmental pollution issues of building industry. (C) 2018 Elsevier Ltd. All rights reserved.
机译:使用仪器分析和分析建模工具来评估由水泥基复合材料(即砂浆粘合剂)的化学组成变化引起的物理化学变化。燃煤灰被用作火山灰矿物添加剂。粘合剂的混合设计中添加了吸附性粘土,以防止有毒元素从粉煤灰中迁移出来。实验是在粘土的离子交换能力前提下建立的。根据化学计量实验设计规则,制备了十种包含水泥CEM I 42.5和粉煤灰,沸石和/或膨润土的粘合剂。化学成分通过XRF方法测定。通过X射线衍射追踪矿物相和结晶度的变化。通过DTA / TGA研究了水合机理和热行为。化学键通过FTIR鉴定。通过SEM检测硬化样品的形态。数学工具采用了仪器分析的数据集,以在粘合剂之间形成清晰的区分,并评估混合物设计中采用矿物添加剂引起的变化。吸附性粘土表现出火山灰性质,因此不会引起水泥水化机理的失能,并且被归类为可能的经济资源,可用于建筑材料的生产技术中以赎回建筑业的环境污染问题。 (C)2018 Elsevier Ltd.保留所有权利。

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