Lv Tong, Zhang Jinrui, Zhao Maoxi, Yang Jiapeng, Hou Dongshuai, Dong Biqin
State Key Laboratory of Hydraulic Engineering Intelligent Construction and Operation, Tianjin University, Tianjin 300072, China.
Department of Civil Engineering, Qingdao University of Technology, Qingdao 266000, China.
Materials (Basel). 2024 Aug 19;17(16):4101. doi: 10.3390/ma17164101.
The proposal of sintered sludge cement (SSC) paste aligns with the low-carbon development goals of building materials. However, there is a lack of scientific guidance for the preparation of sintered sludge ash (SSA). Herein, this study systematically investigates the influence mechanism of mechanical-thermal activation parameters of SSA on the mechanical properties and life cycle assessment (LCA) of SSC paste, and conducts a comprehensive evaluation using a radar chart and the TOPSIS method. The results show that with the increase in calcination temperature and duration, the compressive and flexural strengths of the SSC paste are improved, especially at 600 °C and above, increasing by 57.92% and 62.52%, respectively. The longer calcination time at 1000 °C results in a decrease in its mechanical properties. The addition of SSA significantly reduces the LCA indicators of cement paste. Specifically, 30% SSA only contributes 8.1% to the global warming potential. Compared to calcination, the LCA indicators have less sensitivity to ball milling, and prolonging the time hardly increases them. Based on performance and environmental impact, the optimal SSA is obtained by calcining at 800 °C for 2 h and ball milling for 10 min. This study can provide theoretical guidance for efficient building material utilization of dredged sludge.
烧结污泥水泥(SSC)浆体的提议符合建筑材料的低碳发展目标。然而,对于烧结污泥灰(SSA)的制备缺乏科学指导。在此,本研究系统地研究了SSA的机械-热活化参数对SSC浆体力学性能和生命周期评估(LCA)的影响机制,并使用雷达图和TOPSIS方法进行了综合评价。结果表明,随着煅烧温度和时间的增加,SSC浆体的抗压强度和抗折强度得到提高,尤其是在600℃及以上,分别提高了57.92%和62.52%。在1000℃下煅烧时间过长会导致其力学性能下降。SSA的添加显著降低了水泥浆体的LCA指标。具体而言,30%的SSA对全球变暖潜势的贡献仅为8.1%。与煅烧相比,LCA指标对球磨的敏感性较低,延长球磨时间几乎不会增加这些指标。基于性能和环境影响,通过在800℃下煅烧2小时和球磨10分钟获得了最佳的SSA。本研究可为疏浚污泥高效利用为建筑材料提供理论指导。