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Unlocking the Potential of Biomass Fly Ash: Exploring Its Application in Geopolymeric Materials and a Comparative Case Study of BFA-Based Geopolymeric Concrete against Conventional Concrete

机译:释放生物质粉煤灰的潜力:探索其在地聚合物材料中的应用及博鳌亚洲论坛基地聚混凝土与传统混凝土的比较案例研究

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The production of conventional cement involves high energy consumption and the release of substantial amounts of carbon dioxide (CO2), exacerbating climate change. Additionally, the extraction of raw materials, such as limestone and clay, leads to habitat destruction and biodiversity loss. Geopolymer technology offers a promising alternative to conventional cement by utilizing industrial byproducts and significantly reducing carbon emissions. This paper analyzes the utilization of biomass fly ash (BFA) in the formation of geopolymer concrete and compares its carbon and cost impacts to those of conventional concrete. The previous analysis shows great potential for geopolymers to reduce the climate change impact of cement production. The results of this analysis indicate a significant disparity in the computed financial and sustainability costs associated with geopolymers. Researchers have shown that geopolymers may help mitigate the effects of cement manufacturing on the environment. These geopolymers are predicted to reduce green gas emissions by 40-80. They also show that those advantages can be realized with the best possible feedstock source and the cheapest possible conveyance. Furthermore, our case study on CO2 emission and cost calculation for BFA-based geopolymer and conventional concrete shows that geopolymer concrete preparation emits 56 less CO2 than conventional concrete while costing 32.4 less per ton.
机译:传统水泥的生产涉及高能耗和大量二氧化碳 (CO2) 的释放,加剧了气候变化。此外,石灰石和粘土等原材料的开采会导致栖息地破坏和生物多样性丧失。地质聚合物技术通过利用工业副产品并显着减少碳排放,为传统水泥提供了一种有前途的替代品。本文分析了生物质粉煤灰(BFA)在地聚物混凝土形成中的利用,并比较了其与传统混凝土的碳排放和成本影响。先前的分析表明,地质聚合物在减少水泥生产对气候变化的影响方面具有巨大潜力。该分析的结果表明,与地聚合物相关的计算财务和可持续性成本存在显着差异。研究表明,地质聚合物可能有助于减轻水泥制造对环境的影响。预计这些地质聚合物将减少40-80%的绿色气体排放。它们还表明,这些优势可以通过最佳的原料来源和最便宜的运输工具来实现。此外,我们对基于博鳌亚洲论坛的地聚合物和传统混凝土的二氧化碳排放和成本计算的案例研究表明,地聚物混凝土制备的二氧化碳排放量比传统混凝土少 56%,而每吨成本则低 32.4%。

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