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Environmental Implications of Quarry Rock Dust: A Sustainable Alternative Material to Sand in Concrete

机译:采石岩粉尘的环境影响:混凝土中可持续替代材料

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Sand is a vital natural resource of our ecosystem, yet the construction industry is threatening its availability. Excessive mining of sand imposes adverse effects on our environment, and this problem is becoming extremely severe as it is exposing the river ecosystem and endangering marine biodiversity across the world (i.e., Tamil Nadu in India, Poyang in China, and California in the United States). Quarry rock dust (QRD), a waste obtained during the quarrying process is a significant source of air pollution yet has the potential of becoming a sustainable and economical alternative to sand in concrete. Studies confirmed that replacing sand in conventional concrete with QRD increases its durability and robustness by ten percent. The objective of this study is to determine QRD's environmental implications through carbon footprint analysis. To achieve this, the research utilizes one of the very few case studies of Barbados Quarry site that produces more than 35,000 tons of aggregates per month and 500,000 tons of QRD is produced as a by-product. This research prepares a preliminary life cycle analysis of QRD, its carbon dioxide emissions as well as the economical analysis of QRD. The findings of this study promote the use of QRD considering its less environmental impact in comparison to sand when used in concrete. The study also encourages a paradigm shift in concrete practices, which not only paves for a more resilient alternative to concrete but also a more sustainable construction process.
机译:沙子是我们生态系统的重要自然资源,但建筑业正在威胁其可用性。过度采矿沙子对我们的环境产生了不利影响,而这一问题变得非常严重,因为它暴露于世界各地的河流生态系统和危及海洋生物多样性(即印度的泰米尔纳德邦,在中国鄱阳,以及美国加利福尼亚州) )。采石场岩尘(QRD),采石过程中获得的废物是一种重要的空气污染来源,但却具有在混凝土中成为沙子的可持续和经济替代品。研究证实,用QRD替换常规混凝土中的砂将其耐用性和鲁棒性提高了10%。本研究的目的是通过碳足迹分析确定QRD的环境影响。为此,该研究利用了Barbados采石场的案例研究中的一个,这些方法是每月生产超过35,000吨的聚集体,500,000吨QRD作为副产品生产。本研究准备了QRD的初步生命周期分析,其二氧化碳排放以及QRD的经济分析。本研究的结果促进了QRD的使用,考虑到混凝土中使用时与沙子相比的环境影响较差。该研究还鼓励在具体实践中进行范式转变,这不仅可以为混凝土提供更具弹性的替代方案,而且还有更可持续的建筑工程。

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