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Enhancement of recycled aggregates and concrete by combined treatment of spraying Ca~(2+) rich wastewater and flow-through carbonation

机译:通过组合治疗喷洒Ca〜(2+)富含废水和流通碳酸化合物的增强循环聚集和混凝土

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Accelerated carbonation, regarded as one of the sustainable and economical methods for enhancing recycled concrete aggregates (RCAs), has a potential to be further enhanced through pretreating the RCA with Ca2+ rich solutions before carbonation as the externally provided Ca2+ was expected to yield more precipitation of calcium carbonate in the pores. This study utilized wastewater sourced from a ready-mix concrete plant combined with a flow-through carbonation method in order to enhance the quality of RCA as well as recycled aggregate concrete (RAC). The density and water absorption of (i) natural aggregate (NA), (ii) RCA, (iii) carbonated RCA (C-RCA), and (iv) wastewater pretreated and carbonated RCA (WW-C-RCA) were compared. The density, water absorption, sorptivity, compressive strength, chloride penetration of the concrete prepared with these four types of aggregate were analyzed and compared. The results showed that (1) pretreating RCA by the Ca2+ rich wastewater could further enhance the effects of the flow-through carbonation for RCA; (2) the improvement in RCA quality resulted in a better RAC performance; and (3) the microscopic analysis revealed the enhancement of RCA was attributed to a reduced porosity and an increased microhardness value of the adhered mortar of WW-C-RCA. This study demon-strated a feasible approach to combine three waste resources (RCA, wastewater, and waste CO2) to produce green concrete. (C) 2021 Elsevier Ltd. All rights reserved.
机译:被加速的碳酸化被认为是增强再循环混凝土聚集体(RCAS)的可持续和经济方法之一,通过在碳酸化之前预处理Ca2 +富含溶液的RCA进行进一步增强潜力,因为预期为Ca2 +预期产生更多沉淀碳酸钙在孔隙中。本研究利用了从准备混合混凝土植物中使用的废水与流通碳酸化方法相结合,以提高RCA的质量以及再生骨料混凝土(RAC)。 (I)天然骨料(NA),(II)RCA,(III)碳酸镍RCA(C-RCA)和(IV)废水预处理和碳化RCA(WW-C-RCA)的密度和吸水性。分析了用这四种聚集体制备的混凝土的密度,吸水,吸附性,抗压强度,氯化物渗透。结果表明,Ca2 +富废水的预处理RCA可以进一步增强RCA的流通碳酸化的影响; (2)RCA质量的改善导致了更好的RAC表现; (3)显微镜分析显示RCA的增强归因于孔隙率降低和WW-C-RCA粘附砂浆的增加的显微硬度值。本研究表明了一种可行的方法来结合三种废物资源(RCA,废水和废物CO2)来生产绿色混凝土。 (c)2021 elestvier有限公司保留所有权利。

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