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利用硅灰石、铁矾土及其混合物,为含有再生沥青路面集料的混凝土铺路砖混合物的可持续发展做出贡献。

Utilization of wollastonite, jarosite, and their blends for the sustainable development of concrete paver block mixes containing reclaimed asphalt pavement aggregates.

机构信息

Department of Civil Engineering, Indian Institute of Technology Roorkee, Roorkee, 247667, India.

Department of Civil Engineering, Indian Institute of Technology Gandhinagar, Gandhinagar, 382355, India.

出版信息

Environ Sci Pollut Res Int. 2024 Mar;31(13):20048-20072. doi: 10.1007/s11356-024-32338-6. Epub 2024 Feb 19.

Abstract

While several research studies considered the utilization of reclaimed asphalt pavement (RAP) aggregates for asphalt and concrete pavements, very few attempted its possible utilization for precast concrete applications like concrete paver blocks (CPBs). Moreover, few attempts made in the recent past to improve the strength properties of RAP inclusive concrete mixes by incorporating certain supplementary cementitious materials (SCMs) have reported an insignificant or marginal effect. The present study attempts to comprehensively investigate the utilization potential of some locally and abundantly available materials having suitable physicochemical properties to improve the performance of a zero-slump CPB mix containing 50% RAP aggregates. The studied filler materials, namely, wollastonite (naturally occurring calcium metasilicate mineral) and jarosite (hazardous zinc industry waste), were used to replace 5-15% and 10-20% by volume of Portland cement in the 50% RAP CPB mix. Apart from their individual effects, the efficacy of wollastonite-jarosite blends was also investigated. Considering the lack of indoor storage facilities and economic aspects of CPBs, the influence of water spray curing regime on the performance of the RAP CPB mixes was studied and compared to that of continuous water curing regime. Inclusion of the considered fillers was found to statistically and significantly enhance the flexural strength, tensile splitting strength, and abrasion resistance of the 50% RAP CPB mix; however, the compressive strength (in most cases), permeable voids, water absorption, and water permeability properties showed an insignificant improvement. Results of thermogravimetric analysis confirmed the occurrence of pozzolanic reactivity, and microstructure analysis revealed improvements in packing of concrete matrix and ITZ with filler inclusion qualitatively substantiating the improvements in strength and durability characteristics. The toxicity characteristics of heavy metals that may leach from the hazardous jarosite-based RAP CPB mixes were found to be within permissible limits. Based on the performance requirements specified by IS, IRC, and ASTM standards, all the RAP CPB mixes with filler inclusions fulfilled the acceptance criteria for heavy traffic applications, and water spray curing can enact as an alternate method for curing these mixes. However, to avail maximum performance benefits, it is recommended to use 5% wollastonite, 15% jarosite, and a combination of 10% wollastonite and 10% jarosite as a Portland cement substitute to produce sustainable eco-friendly RAP CPB mixes.

摘要

虽然有几项研究考虑了再生沥青路面(RAP)集料在沥青和混凝土路面中的应用,但很少有研究尝试将其用于预制混凝土应用,如混凝土摊铺机砌块(CPB)。此外,最近很少有尝试通过掺入某些辅助胶凝材料(SCM)来提高 RAP 混凝土混合物的强度特性的尝试,这些尝试报告的效果微不足道或微不足道。本研究试图全面研究一些具有适当物理化学性质的本地和丰富材料的利用潜力,以提高含有 50%RAP 集料的零坍落度 CPB 混合物的性能。所研究的填充材料,即硅灰石(天然存在的硅酸钙矿物质)和黄钾铁矾(危险的锌工业废物),以 5-15%和 10-20%的体积取代 50%RAP CPB 混合物中的波特兰水泥。除了它们各自的效果外,还研究了硅灰石-黄钾铁矾混合物的功效。考虑到 CPB 缺乏室内储存设施和经济方面的因素,研究了喷水养护制度对 RAP CPB 混合物性能的影响,并与连续水养护制度进行了比较。结果表明,所考虑的填料的加入可以显著提高 50%RAP CPB 混合物的抗弯强度、拉伸劈裂强度和耐磨性;然而,在大多数情况下,抗压强度、可渗透空隙、吸水率和水渗透性都没有得到显著改善。热重分析的结果证实了火山灰反应的发生,微观结构分析显示,随着填料的加入,混凝土基体和 ITZ 的堆积得到了改善,这从定性上证实了强度和耐久性特性的提高。从危险的基于黄钾铁矾的 RAP CPB 混合物中浸出的重金属的毒性特征被发现处于允许范围内。根据 IS、IRC 和 ASTM 标准规定的性能要求,所有含有填料的 RAP CPB 混合物都符合重交通应用的验收标准,喷水养护可以作为这些混合物的替代养护方法。然而,为了获得最大的性能收益,建议使用 5%硅灰石、15%黄钾铁矾以及 10%硅灰石和 10%黄钾铁矾的混合物作为波特兰水泥的替代品来生产可持续的环保型 RAP CPB 混合物。

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