Substitution of Sewage Sludge Ash for Sand in Concrete containing Sintered Coarse Aggregate: A Lightweight Concrete with Fully Solid Waste Aggregate

IF 9.7 1区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL
Xianliang Zhou, Xi Zhu, Zhipeng Xu, Changwu Liu, Ding Wang, Yingda Zhang, Fan Wu
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Abstract

The preparation of lightweight concrete by coarse aggregates of sintered sewage sludge ash (SSA) provides a new direction for the disposal of SSA. To further improve the disposal efficiency of SSA, this study explores the feasibility of replacing fine aggregates with SSA in lightweight concrete. The achievement of this objective provides a theoretical basis for the efficient utilization of SSA and conservation of natural building materials, thus promoting low-carbon, environmentally friendly, and sustainable development. Six substitution ratios of 0%, 15%, 30%, 45%, 60%, and 100% are designed to investigate the physical and mechanical properties, microstructural characteristics, pore features, chemical compositions, and heavy metal ion leaching rate of the concrete. Results indicate that with increasing SSA substitution ratios, the density, compressive strength, flexural strength, and freeze-thaw resistance of SSA sintered aggregate concrete gradually decrease, while the water absorption and long-term drying shrinkage increase. The porosity first decreases and then increases. In particular, the oven-dried density, water absorption, and compressive strength of the fully SSA aggregate concrete are 1483 kg/m³, 21.50%, and 19.29 MPa, respectively, meeting the density and strength requirements for structural lightweight concrete. To meet the strength grade of the concrete formulated (LC30), the replacement rate of SSA should not exceed 45%. The packing effect of SSA enhances the compactness of the concrete, reducing the heavy metal ion leaching rate and ensuring environmental safety. However, the porous and small-particle nature of SSA reduces the bonding of mortar and increases the water absorption of the concrete, leading to a decrease in concrete strength.

Abstract Image

在含有烧结粗骨料的混凝土中用污泥灰代替砂:含全固体废弃物骨料的轻质混凝土
用烧结污泥灰(SSA)粗骨料制备轻质混凝土为处置 SSA 提供了一个新方向。为进一步提高 SSA 的处置效率,本研究探讨了在轻质混凝土中用 SSA 替代细骨料的可行性。这一目标的实现为高效利用 SSA 和保护天然建筑材料提供了理论依据,从而促进低碳、环保和可持续发展。本文设计了 0%、15%、30%、45%、60% 和 100% 六种替代率,研究混凝土的物理力学性能、微观结构特征、孔隙特征、化学成分和重金属离子浸出率。结果表明,随着 SSA 替代率的增加,SSA 烧结骨料混凝土的密度、抗压强度、抗折强度和抗冻融性逐渐降低,而吸水率和长期干燥收缩率则逐渐增加。孔隙率先减小后增大。其中,全 SSA 骨料混凝土的烘干密度、吸水率和抗压强度分别为 1483 kg/m³、21.50% 和 19.29 MPa,满足结构轻质混凝土的密度和强度要求。为达到所配制混凝土的强度等级(LC30),SSA 的替代率不应超过 45%。SSA 的填料效应增强了混凝土的密实性,降低了重金属离子浸出率,确保了环境安全。但 SSA 的多孔性和小颗粒特性会降低砂浆的粘结力,增加混凝土的吸水率,导致混凝土强度下降。
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来源期刊
Journal of Cleaner Production
Journal of Cleaner Production 环境科学-工程:环境
CiteScore
20.40
自引率
9.00%
发文量
4720
审稿时长
111 days
期刊介绍: The Journal of Cleaner Production is an international, transdisciplinary journal that addresses and discusses theoretical and practical Cleaner Production, Environmental, and Sustainability issues. It aims to help societies become more sustainable by focusing on the concept of 'Cleaner Production', which aims at preventing waste production and increasing efficiencies in energy, water, resources, and human capital use. The journal serves as a platform for corporations, governments, education institutions, regions, and societies to engage in discussions and research related to Cleaner Production, environmental, and sustainability practices.
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