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首页> 外文期刊>Journal of materials in civil engineering >Optimization of Switchgrass Combustion for Simultaneous Production of Energy and Pozzolan
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Optimization of Switchgrass Combustion for Simultaneous Production of Energy and Pozzolan

机译:同时生能源和火山灰的柳枝Com燃烧的优化

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摘要

Combustion of switchgrass, a low-carbon fuel, generates energy and ash that can be recycled as a pozzolan in cement. This study aimed to optimize switchgrass combustion to achieve high-energy conversion and ash recycling value for cement. Combustion factors under investigation included temperature (350℃, 450℃, 550℃, or 650℃) and retention time (1 h or 4 h). Energy release was quantified by thermogravimetric analysis-differential scanning calorimetry, and ash pozzolanic activity was assessed with the concrete strength test. A numeric simulation model of the pozzolanic reaction, based on unbiased experimental data from Ca(OH)_2-ash suspensions, provided insight into how combustion conditions affected the pozzolanic properties of switchgrass ash. Consequently, combustion at 550℃ for 4 h was recommended for concurrently optimizing the ash pozzolanic activity (114%) and energy output (4.21 kJ/g) from switchgrass.
机译:柳枝,(一种低碳燃料)的燃烧产生能量和灰分,可作为火山灰在水泥中循环再利用。这项研究旨在优化柳枝combustion燃烧,以实现水泥的高能转化和灰分回收利用价值。研究中的燃烧因素包括温度(350℃,450℃,550℃或650℃)和停留时间(1h或4h)。通过热重分析-差示扫描量热法对能量释放进行定量,并通过混凝土强度测试评估灰火山灰活性。基于Ca(OH)_2-灰分悬浮液的无偏实验数据,火山灰反应的数值模拟模型提供了对燃烧条件如何影响柳枝switch火山灰特性的深入了解。因此,建议同时在550℃下燃烧4 h,以同时优化柳枝po的灰火山灰活性(114%)和能量输出(4.21 kJ / g)。

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